NAD+ Peptide research-grade
NAD+ Peptide
$48.00 $133.00Price range: $48.00 through $133.00 Select options

NAD+ Peptide

Price range: $48.00 through $133.00

Research-grade NAD+ Peptide for laboratory investigation. For Research Use Only. Not for human use.

For Research Use Only — Not for Human Consumption
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For Research Use Only. Not for human use.

NAD+ Peptide research-grade

Overview

NAD+ Peptide is supplied as a research-grade catalog material for controlled laboratory investigation.

Laboratories choose this item when protocols need clear identification, consistent labeling, and documentation suitable for reproducible experimental workflows.

Catalog packaging and research-use labeling help purchasing and bench teams keep procurement records aligned with the physical vial.

Research Context for NAD+ Peptide

Work involving NAD+ Peptide typically focuses on in vitro systems, assay development, and mechanistic model studies.

Teams confirm lot details before setup so conditions stay traceable across repeats and collaborative sites.

Published literature can inform starting ranges for related experimental designs. Each laboratory should still validate performance with its own instruments, plates, and detection chemistry.

Pilot runs are useful before committing larger plate sets, especially when detection chemistry or incubation windows are being optimized.

Documented Attributes

Key catalog attributes for this material include:

  • Research-grade material intended for laboratory investigation only
  • Catalog labeling aligned with research procurement channels
  • Suitable for method development and comparative assay workflows
  • Documentation packages available where provided for the listed lot

Laboratory Handling Notes

Receiving and Identity Checks

Before opening a vial of NAD+ Peptide, confirm the physical label against the purchase order and packing list.

Retain outer packaging until identity checks are complete, and report damaged seals to purchasing before experimental work continues.

Reconstitution and Aliquoting

Handle this material according to institutional SOPs for weighing, reconstitution, aliquoting, and storage.

Record lot identifiers in laboratory notebooks before reconstitution. Verify solvent compatibility and storage temperature against your validated process.

Prepare assay buffers and consumables before opening the vial to reduce hold time. Keep unused aliquots labeled with date, solvent, and concentration for later repeats.

Chain of Custody

Keep chain-of-custody notes with inventory checks when material moves between freezers or benches.

Use dedicated spatulas and clean balances to avoid cross-contamination between catalog items. Schedule thaw cycles intentionally rather than repeated freeze-thaw of the same aliquot.

Secondary containment trays reduce spill risk during multi-step reconstitution. Cold-chain interruptions should be noted even when the vial remains sealed.

Why Laboratories Source NAD+ Peptide

Procurement and research teams often select this catalog item because it supports:

  • Clear research-use labeling for compliance-aligned purchasing
  • Consistent product identification across multi-lot studies
  • Fit for reference, screening, and mechanistic laboratory models
  • Straightforward catalog support for planning and documentation

Study Planning and Quality Documentation

Before starting experimental work with NAD+ Peptide, review any COA or quality files provided with the shipment.

Align your protocol with institutional research requirements and keep use within the labeled research context.

File catalog documentation with the study records at receipt. These steps help keep experiments comparable over time when using NAD+ Peptide in sequential study phases.

Method Development Tips

Method development often begins with small pilot plates before larger screening panels.

Document buffer lots, incubation times, and detection settings alongside the material lot number.

If results diverge from historical baselines, re-check reconstitution volume and storage history first. Shared equipment logs help explain variance when multiple operators run the same protocol.

Inventory and Training

Update digital inventory immediately after opening a new lot of NAD+ Peptide.

Training new staff on labeling conventions reduces mix-ups across similar catalog SKUs. When transferring methods between sites, share both the written SOP and the lot metadata package.

Dispose of residual solutions according to institutional chemical hygiene rules. Do not repurpose research materials for any non-laboratory application.

Periodic inventory reconciliation keeps expired or depleted lots from entering active workflows. For related catalog options, browse adjacent research categories on this site after confirming your assay needs.

For Research Use Only. Not for human or animal use. Not intended to diagnose, treat, cure, or prevent any disease.

Peptide Research

For Research Use Only. Not for human use.

PubMed (NIH/NLM) records related to this compound for laboratory literature review. Inclusion does not imply suitability for any use beyond controlled research. Each note below is a research-framed summary using compliance-safe wording.

Showing 1000 PubMed records. Displaying 10 per page.

  1. Navas LE et al. (2021). NAD(+) metabolism, stemness, the immune response, and oncology research models [PMID: 33384409]

    Laboratory literature summary: NAD(+) metabolism, stemness, the immune response, and oncology research models. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  2. Migaud ME et al. (2024). Regulation of and challenges in targeting NAD(+) metabolism [PMID: 39026037]

    Laboratory literature summary: Regulation of and challenges in targeting NAD(+) metabolism. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  3. Xie N et al. (2020). NAD(+) metabolism: pathophysiologic mechanisms and investigational potential [PMID: 33028824]

    Laboratory literature summary: NAD(+) metabolism: pathophysiologic mechanisms and investigational potential. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  4. Yoshino J et al. (2018). NAD(+) Intermediates: The Biology and investigational Potential of NMN and NR [PMID: 29249689]

    Laboratory literature summary: NAD(+) Intermediates: The Biology and investigational Potential of NMN and NR. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  5. Lv H et al. (2021). NAD(+) Metabolism Maintains Inducible PD-L1 Expression to Drive oncology research… [PMID: 33171124]

    Laboratory literature summary: NAD(+) Metabolism Maintains Inducible PD-L1 Expression to Drive oncology research models Immune Evasion. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  6. Garten A et al. (2015). Physiological and pathophysiological roles of NAMPT and NAD metabolism [PMID: 26215259]

    Laboratory literature summary: Physiological and pathophysiological roles of NAMPT and NAD metabolism. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  7. Sundaram B et al. (2024). NLRC5 senses NAD(+) depletion, forming a PANoptosome and driving PANoptosis and… [PMID: 38878777]

    Laboratory literature summary: NLRC5 senses NAD(+) depletion, forming a PANoptosome and driving PANoptosis and inflammation. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  8. Wang C et al. (2024). Serine synthesis sustains macrophage IL-1β production via NAD(+)-dependent protein… [PMID: 38266638]

    Laboratory literature summary: Serine synthesis sustains macrophage IL-1β production via NAD(+)-dependent protein acetylation. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  9. Covarrubias AJ et al. (2020). Senescent cells promote tissue NAD(+) decline during ageing via the activation of… [PMID: 33199924]

    Laboratory literature summary: Senescent cells promote tissue NAD(+) decline during ageing via the activation of CD38(+) macrophages. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  10. Wang L et al. (2025). SARM1 senses dsDNA to promote NAD(+) degradation and cell death [PMID: 41138726]

    Laboratory literature summary: SARM1 senses dsDNA to promote NAD(+) degradation and cell death. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  11. Zhao Y et al. (2021). NAD(+) improves cognitive function and reduces neuroinflammation by ameliorating… [PMID: 34530866]

    Laboratory literature summary: NAD(+) improves cognitive function and reduces neuroinflammation by ameliorating mitochondrial damage and decreasing ROS production in…. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  12. Nacarelli T et al. (2019). NAD(+) metabolism governs the proinflammatory senescence-associated secretome [PMID: 30778219]

    Laboratory literature summary: NAD(+) metabolism governs the proinflammatory senescence-associated secretome. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  13. Doke T et al. (2023). NAD(+) precursor supplementation prevents mtRNA/RIG-I-dependent inflammation during… [PMID: 36914909]

    Laboratory literature summary: NAD(+) precursor supplementation prevents mtRNA/RIG-I-dependent inflammation during kidney injury. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  14. Song WS et al. (2025). Nicotinic acid riboside maintains NAD(+) homeostasis and ameliorates aging-associated… [PMID: 40315855]

    Laboratory literature summary: Nicotinic acid riboside maintains NAD(+) homeostasis and ameliorates aging-associated NAD(+) decline. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  15. Zhang J et al. (2025). Emerging strategies, applications and challenges of targeting NAD(+) in the clinic [PMID: 40926126]

    Laboratory literature summary: Emerging strategies, applications and challenges of targeting NAD(+) in the clinic. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  16. Yang L et al. (2023). Laboratory research record on NAD+ [PMID: 36797299]

    PubMed laboratory record discussing NAD+ in a research context. Review the full methods and limitations on PubMed; research use only.

  17. Du J et al. (2011). Sirt5 is a NAD-dependent protein lysine demalonylase and desuccinylase [PMID: 22076378]

    Laboratory literature summary: Sirt5 is a NAD-dependent protein lysine demalonylase and desuccinylase. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  18. Cantó C et al. (2009). AMPK regulates energy expenditure by modulating NAD+ metabolism and SIRT1 activity [PMID: 19262508]

    Laboratory literature summary: AMPK regulates energy expenditure by modulating NAD+ metabolism and SIRT1 activity. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  19. Das A et al. (2018). Impairment of an Endothelial NAD(+)-H(2)S Signaling Network Is a Reversible Cause of… [PMID: 29570999]

    Laboratory literature summary: Impairment of an Endothelial NAD(+)-H(2)S Signaling Network Is a Reversible Cause of Vascular Aging. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  20. Gomes AP et al. (2013). Declining NAD(+) induces a pseudohypoxic state disrupting nuclear-mitochondrial… [PMID: 24360282]

    Laboratory literature summary: Declining NAD(+) induces a pseudohypoxic state disrupting nuclear-mitochondrial communication during aging. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  21. Yaku K et al. (2025). Nicotinamide riboside and nicotinamide mononucleotide facilitate NAD(+) synthesis via… [PMID: 40117359]

    Laboratory literature summary: Nicotinamide riboside and nicotinamide mononucleotide facilitate NAD(+) synthesis via enterohepatic circulation. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  22. Elhassan YS et al. (2019). Nicotinamide Riboside Augments the Aged research subjects Skeletal Muscle NAD(+)… [PMID: 31412242]

    Laboratory literature summary: Nicotinamide Riboside Augments the Aged research subjects Skeletal Muscle NAD(+) Metabolome and Induces Transcriptomic and…. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  23. Chubanava S et al. (2025). NAD depletion in skeletal muscle does not compromise muscle function or accelerate aging [PMID: 40311622]

    Laboratory literature summary: NAD depletion in skeletal muscle does not compromise muscle function or accelerate aging. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  24. Tong D et al. (2021). NAD(+) Repletion Reverses Heart Failure With Preserved Ejection Fraction [PMID: 33882692]

    Laboratory literature summary: NAD(+) Repletion Reverses Heart Failure With Preserved Ejection Fraction. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  25. Lee J et al. (2025). REV-ERBα regulates brain NAD(+) levels and tauopathy via an NFIL3-CD38 axis [PMID: 40890338]

    Laboratory literature summary: REV-ERBα regulates brain NAD(+) levels and tauopathy via an NFIL3-CD38 axis. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  26. Yu H et al. (2024). Α-Ketoglutarate improves cardiac insufficiency through NAD(+)-SIRT1 signaling-mediated… [PMID: 38254035]

    Laboratory literature summary: α-Ketoglutarate improves cardiac insufficiency through NAD(+)-SIRT1 signaling-mediated mitophagy and ferroptosis in pressure…. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  27. Yoshino J et al. (2011). Laboratory research record on NAD+ [PMID: 21982712]

    PubMed laboratory record discussing NAD+ in a research context. Review the full methods and limitations on PubMed; research use only.

  28. Xie X et al. (2025). Period3 modulates the NAD(+)-SIRT3 axis to alleviate depression-like behaviour by… [PMID: 39894345]

    Laboratory literature summary: Period3 modulates the NAD(+)-SIRT3 axis to alleviate depression-like behaviour by enhancing NAMPT activity in mice. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  29. Lawal TA et al. (2025). NAD(+) dyshomeostasis in RYR1-related myopathies [PMID: 40846977]

    Laboratory literature summary: NAD(+) dyshomeostasis in RYR1-related myopathies. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  30. Christen S et al. (2026). The differential impact of three different NAD(+) boosters on circulatory NAD and… [PMID: 41540253]

    Laboratory literature summary: The differential impact of three different NAD(+) boosters on circulatory NAD and microbial metabolism in research subjects. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  31. Jia Y et al. (2025). Succinate-GPR91 signaling promotes cardiomyocyte metabolic reprogramming and NAD(+)… [PMID: 41353145]

    Laboratory literature summary: Succinate-GPR91 signaling promotes cardiomyocyte metabolic reprogramming and NAD(+) production to alleviate HFpEF. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  32. Lan T et al. (2026). Mitochondrial NAD(+)-mediated mitophagy alleviates type I interferon response to the… [PMID: 41231107]

    Laboratory literature summary: Mitochondrial NAD(+)-mediated mitophagy alleviates type I interferon response to the cytosolic mitochondrial DNA. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  33. McGuinness ET et al. (1985). NAD+ kinase–a review [PMID: 2987053]

    Laboratory literature summary: NAD+ kinase–a review. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  34. Zheng M et al. (2022). NAD(+) in COVID-19 and viral infections [PMID: 35221228]

    Laboratory literature summary: NAD(+) in COVID-19 and viral infections. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  35. Gasparrini M et al. (2021). Enzymology of extracellular NAD metabolism [PMID: 33755743]

    Laboratory literature summary: Enzymology of extracellular NAD metabolism. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  36. Song J et al. (2025). NAD(+) Enhanced Mesenchymal Stromal Cells Effect on Muscle Atrophy by Improving… [PMID: 41383117]

    Laboratory literature summary: NAD(+) Enhanced Mesenchymal Stromal Cells Effect on Muscle Atrophy by Improving SIRT1-Mediated Mitochondrial Function via NAMPT. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  37. Basse AL et al. (2023). NAMPT-dependent NAD(+) biosynthesis controls circadian metabolism in a tissue-specific… [PMID: 36996103]

    Laboratory literature summary: NAMPT-dependent NAD(+) biosynthesis controls circadian metabolism in a tissue-specific manner. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  38. Abdellatif M et al. (2025). NAD(+) repletion restores cardioprotective autophagy and mitophagy in metabolic… [PMID: 40556426]

    Laboratory literature summary: NAD(+) repletion restores cardioprotective autophagy and mitophagy in metabolic research models-associated heart failure by suppressing…. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  39. Doan KV et al. (2024). Cardiac NAD(+) depletion in mice promotes hypertrophic cardiomyopathy and arrhythmias… [PMID: 39294272]

    Laboratory literature summary: Cardiac NAD(+) depletion in mice promotes hypertrophic cardiomyopathy and arrhythmias prior to impaired bioenergetics. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  40. Borradaile NM et al. (2009). NAD(+), sirtuins, and cardiovascular disease [PMID: 19149606]

    Laboratory literature summary: NAD(+), sirtuins, and cardiovascular disease. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  41. Chu X et al. (2022). Regulation of NAD(+) metabolism in aging and disease [PMID: 34743990]

    Laboratory literature summary: Regulation of NAD(+) metabolism in aging and disease. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  42. Lei J et al. (2025). The Gut Microbiota Affects Anti-TNF Responsiveness by Activating the NAD(+) Salvage… [PMID: 39739648]

    Laboratory literature summary: The Gut Microbiota Affects Anti-TNF Responsiveness by Activating the NAD(+) Salvage Pathway in Ulcerative Colitis. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  43. Dierickx P et al. (2022). Circadian REV-ERBs repress E4bp4 to activate NAMPT-dependent NAD(+) biosynthesis and… [PMID: 35036997]

    Laboratory literature summary: Circadian REV-ERBs repress E4bp4 to activate NAMPT-dependent NAD(+) biosynthesis and sustain cardiac function. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  44. Garrido A et al. (2017). NAD(+) Deficits in Age-Related Diseases and oncology research models [PMID: 28780936]

    Laboratory literature summary: NAD(+) Deficits in Age-Related Diseases and oncology research models. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  45. Zhang Q et al. (2024). Control of NAD(+) homeostasis by autophagic flux modulates mitochondrial and cardiac… [PMID: 38212381]

    Laboratory literature summary: Control of NAD(+) homeostasis by autophagic flux modulates mitochondrial and cardiac function. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  46. Wang YJ et al. (2025). NAD(+) boosting increases atherosclerotic plaques and inflammation in Apoe knockout mice [PMID: 40215896]

    Laboratory literature summary: NAD(+) boosting increases atherosclerotic plaques and inflammation in Apoe knockout mice. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  47. Reiten OK et al. (2021). Preclinical and laboratory evidence of NAD(+) precursors in health, disease, and ageing [PMID: 34517020]

    Laboratory literature summary: Preclinical and laboratory evidence of NAD(+) precursors in health, disease, and ageing. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  48. Fan G et al. (2025). Recharging aged-CAR with NAD(+) to boost immunotherapy [PMID: 40571557]

    Laboratory literature summary: Recharging aged-CAR with NAD(+) to boost immunotherapy. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  49. Kosugi S et al. (2025). Vascular Endothelial NAMPT-Mediated NAD(+) Biosynthesis Regulates Angiogenesis and… [PMID: 41021357]

    Laboratory literature summary: Vascular Endothelial NAMPT-Mediated NAD(+) Biosynthesis Regulates Angiogenesis and Cardiometabolic Functions in research models Mice. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  50. Bock KW (2019). Aryl hydrocarbon receptor (AHR) functions in NAD(+) metabolism, myelopoiesis and… [PMID: 30779909]

    Laboratory literature summary: Aryl hydrocarbon receptor (AHR) functions in NAD(+) metabolism, myelopoiesis and metabolic research models. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  51. Hipkiss AR (2009). NAD+ availability and proteotoxicity [PMID: 19554482]

    Laboratory literature summary: NAD+ availability and proteotoxicity. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  52. Chiang YF et al. (2024). Regulatory roles of NAMPT and NAD(+) metabolism in uterine leiomyoma progression:… [PMID: 39486360]

    Laboratory literature summary: Regulatory roles of NAMPT and NAD(+) metabolism in uterine leiomyoma progression: Implications for ECM accumulation, stemness, and…. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  53. Boyle E et al. (2026). Enzymatic Synthesis of NAD() [PMID: 42258046]

    Laboratory literature summary: Enzymatic Synthesis of NAD(). Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  54. Launay JM et al. (2023). Impact of IDO activation and alterations in the kynurenine pathway on… [PMID: 38071324]

    Laboratory literature summary: Impact of IDO activation and alterations in the kynurenine pathway on hyperserotonemia, NAD(+) production, and AhR activation in autism…. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  55. Yao J et al. (2024). TRAF2 inhibits senescence in hepatocellular carcinoma cells via regulating the ROMO1/… [PMID: 38043870]

    Laboratory literature summary: TRAF2 inhibits senescence in hepatocellular carcinoma cells via regulating the ROMO1/ NAD(+)/SIRT3/SOD2 axis. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  56. Fukuzumi S et al. (2025). Catalytic reduction of NAD(P)(+) to NAD(P)H [PMID: 39866135]

    Laboratory literature summary: Catalytic reduction of NAD(P)(+) to NAD(P)H. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  57. Wang P et al. (2016). NAMPT and NAMPT-controlled NAD Metabolism in Vascular Repair [PMID: 26485210]

    Laboratory literature summary: NAMPT and NAMPT-controlled NAD Metabolism in Vascular Repair. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  58. Pan W et al. (2024). The PP2A regulatory subunit PPP2R2A controls NAD(+) biosynthesis to regulate T cell… [PMID: 38889006]

    Laboratory literature summary: The PP2A regulatory subunit PPP2R2A controls NAD(+) biosynthesis to regulate T cell subset differentiation in systemic autoimmunity. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  59. Nagahisa T et al. (2023). Interactions between Intestinal Homeostasis and NAD(+) Biology in Regulating Incretin… [PMID: 36986224]

    Laboratory literature summary: Interactions between Intestinal Homeostasis and NAD(+) Biology in Regulating Incretin Production and Postprandial Glucose Metabolism. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  60. Lesk AM (1995). NAD-binding domains of dehydrogenases [PMID: 8749365]

    Laboratory literature summary: NAD-binding domains of dehydrogenases. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  61. Ghanem MS et al. (2021). Advances in NAD-Lowering Agents for oncology research models investigation [PMID: 34068917]

    Laboratory literature summary: Advances in NAD-Lowering Agents for oncology research models investigation. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  62. Zhao Y et al. (2025). NAD(+) Metabolism Maintains the Homeostasis of Decidual Macrophages in Early… [PMID: 40471104]

    Laboratory literature summary: NAD(+) Metabolism Maintains the Homeostasis of Decidual Macrophages in Early developmental research context. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  63. Friedrich F et al. (2025). From Pharmacophore to Warhead: NAD(+)-Targeting Triazoles as Mechanism-Based Sirtuin… [PMID: 41165483]

    Laboratory literature summary: From Pharmacophore to Warhead: NAD(+)-Targeting Triazoles as Mechanism-Based Sirtuin Inhibitors. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  64. Schultz MB et al. (2018). Assays for NAD(+)-Dependent Reactions and NAD(+) Metabolites [PMID: 30097862]

    Laboratory literature summary: Assays for NAD(+)-Dependent Reactions and NAD(+) Metabolites. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  65. Fang EF (2019). Mitophagy and NAD(+) inhibit neurodegeneration research models disease [PMID: 30922179]

    Laboratory literature summary: Mitophagy and NAD(+) inhibit neurodegeneration research models disease. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  66. Luo Q et al. (2025). Self-association activates ThsB NAD(+) hydrolase for defense against phage infection [PMID: 40540948]

    Laboratory literature summary: Self-association activates ThsB NAD(+) hydrolase for defense against phage infection. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  67. Carpenter BJ et al. (2026). NAD(+) controls circadian rhythmicity during cardiac aging [PMID: 41813966]

    Laboratory literature summary: NAD(+) controls circadian rhythmicity during cardiac aging. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  68. Cercillieux A et al. (2022). Balancing NAD(+) deficits with nicotinamide riboside: investigational possibilities… [PMID: 35918544]

    Laboratory literature summary: Balancing NAD(+) deficits with nicotinamide riboside: investigational possibilities and limitations. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  69. Yao D et al. (2023). A Clickable NAD(+) Analog-Based Assay of Poly(ADP-Ribosyl)ated Proteins [PMID: 36515835]

    Laboratory literature summary: A Clickable NAD(+) Analog-Based Assay of Poly(ADP-Ribosyl)ated Proteins. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  70. Kang BE et al. (2020). Implications of NAD(+) boosters in translational medicine [PMID: 32594513]

    Laboratory literature summary: Implications of NAD(+) boosters in translational medicine. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  71. Sekiya M et al. (2024). Decreased plasma nicotinamide and altered NAD(+) metabolism in glial cells surrounding… [PMID: 39374707]

    Laboratory literature summary: Decreased plasma nicotinamide and altered NAD(+) metabolism in glial cells surrounding Aβ plaques in a mouse model of neurodegeneration…. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  72. Neves D et al. (2022). The role of NAD metabolism in neuronal differentiation [PMID: 35843422]

    Laboratory literature summary: The role of NAD metabolism in neuronal differentiation. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  73. Gilmour BC et al. (2020). Targeting NAD(+) in translational research to relieve diseases and conditions of… [PMID: 31953124]

    Laboratory literature summary: Targeting NAD(+) in translational research to relieve diseases and conditions of metabolic stress and ageing. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  74. Griffiths HBS et al. (2020). Nicotinamide adenine dinucleotide (NAD+): essential redox metabolite, co-substrate and… [PMID: 32573651]

    Laboratory literature summary: Nicotinamide adenine dinucleotide (NAD+): essential redox metabolite, co-substrate and an anti-oncology research models and anti-ageing…. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  75. Hasegawa K et al. (2024). Ability of NAD and Sirt1 to epigenetically suppress albuminuria [PMID: 38587753]

    Laboratory literature summary: Ability of NAD and Sirt1 to epigenetically suppress albuminuria. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  76. Yang X et al. (2025). NAD(+) rescues Phosphatidylinositol-induced granulosa cell Pyroptosis to restore… [PMID: 40945625]

    Laboratory literature summary: NAD(+) rescues Phosphatidylinositol-induced granulosa cell Pyroptosis to restore follicular development in PCOS. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  77. Malique A et al. (2024). NAD(+) precursors and bile acid sequestration treat preclinical refractory… [PMID: 38170788]

    Laboratory literature summary: NAD(+) precursors and bile acid sequestration treat preclinical refractory environmental enteric dysfunction. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  78. Imai S (2010). Toward productive aging: SIRT1, systemic NAD biosynthesis, and the NAD world [PMID: 20935547]

    Laboratory literature summary: Toward productive aging: SIRT1, systemic NAD biosynthesis, and the NAD world. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  79. Iqbal J et al. (2006). Extracellular NAD+ metabolism modulates osteoclastogenesis [PMID: 16956582]

    Laboratory literature summary: Extracellular NAD+ metabolism modulates osteoclastogenesis. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  80. Hopp AK et al. (2021). Mitochondrial NAD(+) Controls Nuclear ARTD1-Induced ADP-Ribosylation [PMID: 33450210]

    Laboratory literature summary: Mitochondrial NAD(+) Controls Nuclear ARTD1-Induced ADP-Ribosylation. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  81. Habeichi NJ et al. (2022). Insights into the modulation of the interferon response and NAD(+) in the context of… [PMID: 34378474]

    Laboratory literature summary: Insights into the modulation of the interferon response and NAD(+) in the context of COVID-19. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  82. Jiang Y et al. (2020). The NAD(+)-mediated self-inhibition mechanism of pro-neurodegenerative SARM1 [PMID: 33053563]

    Laboratory literature summary: The NAD(+)-mediated self-inhibition mechanism of pro-neurodegenerative SARM1. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  83. Ying YY et al. (2026). Circadian rhythm disruption impairs ovarian follicular development via NAD(+)… [PMID: 41797048]

    Laboratory literature summary: Circadian rhythm disruption impairs ovarian follicular development via NAD(+) metabolic reprogramming. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  84. Popov VO et al. (1994). NAD(+)-dependent formate dehydrogenase [PMID: 8053888]

    Laboratory literature summary: NAD(+)-dependent formate dehydrogenase. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  85. Chandrasekaran K et al. (2019). Laboratory research record on NAD+ [PMID: 31208524]

    PubMed laboratory record discussing NAD+ in a research context. Review the full methods and limitations on PubMed; research use only.

  86. Koh JH et al. (2021). Role of PGC-1α in the Mitochondrial NAD(+) Pool in Metabolic Diseases [PMID: 33925372]

    Laboratory literature summary: Role of PGC-1α in the Mitochondrial NAD(+) Pool in Metabolic Diseases. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  87. Watanabe S et al. (2023). Genistein enhances NAD(+) biosynthesis by upregulating nicotinamide… [PMID: 37648097]

    Laboratory literature summary: Genistein enhances NAD(+) biosynthesis by upregulating nicotinamide phosphoribosyltransferase in adipocytes. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  88. Jiang Y et al. (2023). NAD(+) supplementation limits triple-negative breast oncology research models… [PMID: 36690678]

    Laboratory literature summary: NAD(+) supplementation limits triple-negative breast oncology research models metastasis via SIRT1-P66Shc signaling. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  89. Ghanem MS et al. (2024). Inhibitors of NAD(+) Production in oncology research models investigation: State of… [PMID: 38396769]

    Laboratory literature summary: Inhibitors of NAD(+) Production in oncology research models investigation: State of the Art and Perspectives. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  90. Zhang J et al. (2025). Mitochondrial NAD(+) deficiency in vascular smooth muscle impairs collagen III… [PMID: 39843801]

    Laboratory literature summary: Mitochondrial NAD(+) deficiency in vascular smooth muscle impairs collagen III turnover to trigger thoracic and abdominal aortic aneurysm. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  91. Gambini J et al. (2011). Free [NADH]/[NAD(+)] regulates sirtuin expression [PMID: 21575591]

    Laboratory literature summary: Free [NADH]/[NAD(+)] regulates sirtuin expression. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  92. Yu P et al. (2020). Roles of NAD(+) and Its Metabolites Regulated Calcium Channels in oncology research models [PMID: 33092205]

    Laboratory literature summary: Roles of NAD(+) and Its Metabolites Regulated Calcium Channels in oncology research models. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  93. Walzik D et al. (2025). Acute exercise boosts NAD(+) metabolism of research subjects peripheral blood… [PMID: 39500416]

    Laboratory literature summary: Acute exercise boosts NAD(+) metabolism of research subjects peripheral blood mononuclear cells. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  94. Shanahan KA et al. (2024). SARM1 regulates NAD(+)-linked metabolism and select immune genes in macrophages [PMID: 38176648]

    Laboratory literature summary: SARM1 regulates NAD(+)-linked metabolism and select immune genes in macrophages. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  95. Pan W et al. (2025). A metabolic cell death program downstream of SARM1 couples NAD(+) depletion to BAX… [PMID: 41364765]

    Laboratory literature summary: A metabolic cell death program downstream of SARM1 couples NAD(+) depletion to BAX activation and APAF1 degradation. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  96. Manickam R et al. (2025). Nampt: a new investigational target for modulating NAD(+) levels in metabolic,… [PMID: 40203459]

    Laboratory literature summary: Nampt: a new investigational target for modulating NAD(+) levels in metabolic, cardiovascular, and neurodegenerative diseases. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  97. Eastman S et al. (2022). A phytobacterial TIR domain effector manipulates NAD(+) to promote virulence [PMID: 34657283]

    Laboratory literature summary: A phytobacterial TIR domain effector manipulates NAD(+) to promote virulence. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  98. Yoshida T et al. (2024). NAD deficiency contributes to progressive kidney disease in HIV-nephropathy mice [PMID: 38961841]

    Laboratory literature summary: NAD deficiency contributes to progressive kidney disease in HIV-nephropathy mice. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  99. Luo QH et al. (2026). Endothelial NAD(+) depletion drives vascular senescence and neuroinflammation via… [PMID: 42033099]

    Laboratory literature summary: Endothelial NAD(+) depletion drives vascular senescence and neuroinflammation via mtDNA-cGAS/STING-CD38 signaling in neurodegeneration…. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  100. Imai S (2010). "Clocks" in the NAD World: NAD as a metabolic oscillator for the regulation of… [PMID: 19897060]

    Laboratory literature summary: "Clocks" in the NAD World: NAD as a metabolic oscillator for the regulation of metabolism and aging. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  101. Brenner C (2014). Boosting NAD to spare hearing [PMID: 25470539]

    Laboratory literature summary: Boosting NAD to spare hearing. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  102. Yang X et al. (2023). DNMT3A mutation promotes leukemia development through NAM-NAD metabolic reprogramming [PMID: 37464424]

    Laboratory literature summary: DNMT3A mutation promotes leukemia development through NAM-NAD metabolic reprogramming. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  103. Lam AT et al. (2021). A Bifunctional NAD(+) for Profiling Poly-ADP-Ribosylation-Dependent Interacting Proteins [PMID: 33524253]

    Laboratory literature summary: A Bifunctional NAD(+) for Profiling Poly-ADP-Ribosylation-Dependent Interacting Proteins. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  104. Owens K et al. (2013). Mitochondrial dysfunction and NAD(+) metabolism alterations in the pathophysiology of… [PMID: 24323416]

    Laboratory literature summary: Mitochondrial dysfunction and NAD(+) metabolism alterations in the pathophysiology of acute brain injury. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  105. Cabrera M et al. (2025). Laboratory research record on NAD+ [PMID: 41299539]

    PubMed laboratory record discussing NAD+ in a research context. Review the full methods and limitations on PubMed; research use only.

  106. Ciarlo E et al. (2022). Nicotinamide Riboside and Dihydronicotinic Acid Riboside Synergistically Increase… [PMID: 35807932]

    Laboratory literature summary: Nicotinamide Riboside and Dihydronicotinic Acid Riboside Synergistically Increase Intracellular NAD(+) by Generating Dihydronicotinamide…. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  107. Aggarwal S et al. (2024). Palmitic acid causes hepatocyte inflammation by suppressing the BMAL1-NAD(+)-SIRT2 axis [PMID: 39289323]

    Laboratory literature summary: Palmitic acid causes hepatocyte inflammation by suppressing the BMAL1-NAD(+)-SIRT2 axis. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  108. Crisol BM et al. (2020). NAD(+) precursor increases aerobic performance in mice [PMID: 31494696]

    Laboratory literature summary: NAD(+) precursor increases aerobic performance in mice. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  109. Fang J et al. (2023). NAD(+) salvage governs the immunosuppressive capacity of mesenchymal stem cells [PMID: 37580400]

    Laboratory literature summary: NAD(+) salvage governs the immunosuppressive capacity of mesenchymal stem cells. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  110. Novak EA et al. (2023). Epithelial NAD(+) depletion drives mitochondrial dysfunction and contributes to… [PMID: 37744380]

    Laboratory literature summary: Epithelial NAD(+) depletion drives mitochondrial dysfunction and contributes to intestinal inflammation. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  111. Lemeshko VV (2002). Biphasic oxidation of mitochondrial NAD(P)H [PMID: 11829479]

    Laboratory literature summary: Biphasic oxidation of mitochondrial NAD(P)H. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  112. Della Torre S et al. (2024). Discovery and characterization of a new class of NAD(+)-independent SIRT1 activators [PMID: 38971269]

    Laboratory literature summary: Discovery and characterization of a new class of NAD(+)-independent SIRT1 activators. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  113. Bailey EC et al. (2019). NAD+ improves neuromuscular development in a zebrafish model of FKRP-associated… [PMID: 31391079]

    Laboratory literature summary: NAD+ improves neuromuscular development in a zebrafish model of FKRP-associated dystroglycanopathy. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  114. Qu W et al. (2023). NAD(+) precursor nutritional supplements sensitize the brain to future ischemic events [PMID: 37434361]

    Laboratory literature summary: NAD(+) precursor nutritional supplements sensitize the brain to future ischemic events. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  115. Klabunde B et al. (2023). NAD(+) metabolism is a key modulator of bacterial respiratory epithelial infections [PMID: 37783679]

    Laboratory literature summary: NAD(+) metabolism is a key modulator of bacterial respiratory epithelial infections. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  116. Landry J et al. (2003). Enzymatic assays for NAD-dependent deacetylase activities [PMID: 12893171]

    Laboratory literature summary: Enzymatic assays for NAD-dependent deacetylase activities. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  117. Pliyev BK et al. (2014). Extracellular NAD(+) inhibits research subjects neutrophil apoptosis [PMID: 24292505]

    Laboratory literature summary: Extracellular NAD(+) inhibits research subjects neutrophil apoptosis. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  118. Li D et al. (2026). Synthesis, Characterization, and Fluorescence Application of Indole-Based… [PMID: 42503180]

    Laboratory literature summary: Synthesis, Characterization, and Fluorescence Application of Indole-Based Isofunctional NAD(+) Analogs. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  119. Ratia KM et al. (2023). Mechanism of Allosteric Modulation of Nicotinamide Phosphoribosyltransferase to… [PMID: 36746631]

    Laboratory literature summary: Mechanism of Allosteric Modulation of Nicotinamide Phosphoribosyltransferase to Elevate Cellular NAD(). Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  120. Burgos ES (2011). NAMPT in regulated NAD biosynthesis and its pivotal role in research subjects metabolism [PMID: 21517777]

    Laboratory literature summary: NAMPT in regulated NAD biosynthesis and its pivotal role in research subjects metabolism. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  121. Igarashi M et al. (2019). NAD(+) supplementation rejuvenates aged gut adult stem cells [PMID: 30917412]

    Laboratory literature summary: NAD(+) supplementation rejuvenates aged gut adult stem cells. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  122. Chini CCS et al. (2022). Dihydronicotinamide Riboside Is a Potent NAD(+) Precursor Promoting a Pro-Inflammatory… [PMID: 35281060]

    Laboratory literature summary: Dihydronicotinamide Riboside Is a Potent NAD(+) Precursor Promoting a Pro-Inflammatory Phenotype in Macrophages. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  123. Barnes JL et al. (2011). Myofibroblast differentiation during fibrosis: role of NAD(P)H oxidases [PMID: 21307839]

    Laboratory literature summary: Myofibroblast differentiation during fibrosis: role of NAD(P)H oxidases. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  124. Subburaju S et al. (2020). NAD(+)-mediated rescue of prenatal forebrain angiogenesis restores postnatal behavior [PMID: 33036972]

    Laboratory literature summary: NAD(+)-mediated rescue of prenatal forebrain angiogenesis restores postnatal behavior. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  125. López Rivera M et al. (2026). Phage RyR-domain proteins degrade ADPR-based immune signals and fuel NAD(+) synthesis [PMID: 42244614]

    Laboratory literature summary: Phage RyR-domain proteins degrade ADPR-based immune signals and fuel NAD(+) synthesis. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  126. Poljsak B et al. (2020). Healthy Lifestyle Recommendations: Do the Beneficial Effects Originate from NAD(+)… [PMID: 33414897]

    Laboratory literature summary: Healthy Lifestyle Recommendations: Do the Beneficial Effects Originate from NAD(+) Amount at the Cellular Level?. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  127. Vinten KT et al. (2026). Reduced Versus Oxidized NAD(+) Precursors Drive Distinct Transcriptomic, Proteomic,… [PMID: 41701114]

    Laboratory literature summary: Reduced Versus Oxidized NAD(+) Precursors Drive Distinct Transcriptomic, Proteomic, and Metabolic Profiles in Hepatocytes. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  128. Fang EF et al. (2019). NAD(+) augmentation restores mitophagy and limits accelerated aging in Werner syndrome [PMID: 31754102]

    Laboratory literature summary: NAD(+) augmentation restores mitophagy and limits accelerated aging in Werner syndrome. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  129. You Y et al. (2025). Chemical O-ADP-Ribosylations: Synthesis and Bioconjugation of ADPr-Peptides/Proteins… [PMID: 39757859]

    Laboratory literature summary: Chemical O-ADP-Ribosylations: Synthesis and Bioconjugation of ADPr-Peptides/Proteins from NAD(). Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  130. Hulin MT et al. (2023). Pangenomic analysis reveals plant NAD(+) manipulation as an important virulence… [PMID: 36753463]

    Laboratory literature summary: Pangenomic analysis reveals plant NAD(+) manipulation as an important virulence activity of bacterial pathogen effectors. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  131. Liao X et al. (2022). AMPK phosphorylates NAMPT to regulate NAD(+) homeostasis under ionizing radiation [PMID: 36196536]

    Laboratory literature summary: AMPK phosphorylates NAMPT to regulate NAD(+) homeostasis under ionizing radiation. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  132. Franczyk MP et al. (2021). Importance of Adipose Tissue NAD+ Biology in Regulating Metabolic Flexibility [PMID: 33543238]

    Laboratory literature summary: Importance of Adipose Tissue NAD+ Biology in Regulating Metabolic Flexibility. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  133. Gardell SJ et al. (2019). Boosting NAD(+) with a small molecule that activates NAMPT [PMID: 31324777]

    Laboratory literature summary: Boosting NAD(+) with a small molecule that activates NAMPT. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  134. Ding Y et al. (2021). Construction of an Alternative NAD(+) De Novo Biosynthesis Pathway [PMID: 33977072]

    Laboratory literature summary: Construction of an Alternative NAD(+) De Novo Biosynthesis Pathway. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  135. Gao N et al. (2026). SERPINE1 drives ferroptosis in acute respiratory distress syndrome by disrupting… [PMID: 42190562]

    Laboratory literature summary: SERPINE1 drives ferroptosis in acute respiratory distress syndrome by disrupting mitochondrial NAD(+) homeostasis and suppressing Sirt3…. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  136. Li Y et al. (2019). Corneal Denervation Causes Epithelial Apoptosis Through Inhibiting NAD+ Biosynthesis [PMID: 31415077]

    Laboratory literature summary: Corneal Denervation Causes Epithelial Apoptosis Through Inhibiting NAD+ Biosynthesis. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  137. Shipman L (2016). Metabolism: Totally addicted to NAD(.) [PMID: 26743031]

    Laboratory literature summary: Metabolism: Totally addicted to NAD(.). Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  138. Lee JH et al. (2023). NAD(+) supplementation improves mAb productivity in CHO cells via a glucose metabolic… [PMID: 36717516]

    Laboratory literature summary: NAD(+) supplementation improves mAb productivity in CHO cells via a glucose metabolic shift. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  139. Benzi A et al. (2021). CD38 downregulation modulates NAD(+) and NADP(H) levels in thermogenic adipose tissues [PMID: 33010451]

    Laboratory literature summary: CD38 downregulation modulates NAD(+) and NADP(H) levels in thermogenic adipose tissues. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  140. Zwickenpflug W et al. (2024). Biosynthesis of vitamin B(3) and NAD(+): incubating HepG2 cells with the alkaloid myosmine [PMID: 38578648]

    Laboratory literature summary: Biosynthesis of vitamin B(3) and NAD(+): incubating HepG2 cells with the alkaloid myosmine. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  141. Jahan F et al. (2024). NAD(+) depletion is central to placental dysfunction in an inflammatory subclass of… [PMID: 39389781]

    Laboratory literature summary: NAD(+) depletion is central to placental dysfunction in an inflammatory subclass of preeclampsia. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  142. Zhang XN et al. (2022). Discovery of an NAD(+) analogue with enhanced specificity for PARP1 [PMID: 35308855]

    Laboratory literature summary: Discovery of an NAD(+) analogue with enhanced specificity for PARP1. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  143. Klontz E et al. (2023). The structure of NAD(+) consuming protein Acinetobacter baumannii TIR domain shows… [PMID: 37758001]

    Laboratory literature summary: The structure of NAD(+) consuming protein Acinetobacter baumannii TIR domain shows unique kinetics and conformations. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  144. McCann KJ et al. (2022). IFNγ regulates NAD+ metabolism to promote the respiratory burst in research subjects… [PMID: 35500221]

    Laboratory literature summary: IFNγ regulates NAD+ metabolism to promote the respiratory burst in research subjects monocytes. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  145. Di Emidio G et al. (2024). NAD(+) Metabolism and Mitochondrial Activity in the Aged Oocyte: Focus on the Effects… [PMID: 39325941]

    Laboratory literature summary: NAD(+) Metabolism and Mitochondrial Activity in the Aged Oocyte: Focus on the Effects of NAMPT Stimulation. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  146. Peng QY et al. (2016). Blocking NAD(+)/CD38/cADPR/Ca(2+) pathway in sepsis prevents organ damage [PMID: 27020835]

    Laboratory literature summary: Blocking NAD(+)/CD38/cADPR/Ca(2+) pathway in sepsis prevents organ damage. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  147. Billington RA et al. (2008). NAD depletion by FK866 induces autophagy [PMID: 18227641]

    Laboratory literature summary: NAD depletion by FK866 induces autophagy. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  148. Murphy JP et al. (2018). The NAD(+) Salvage Pathway Supports PHGDH-Driven Serine Biosynthesis [PMID: 30157431]

    Laboratory literature summary: The NAD(+) Salvage Pathway Supports PHGDH-Driven Serine Biosynthesis. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  149. Cao K et al. (2025). Inhibition of CD38 by 78c Enhanced NAD(+), Alleviated Inflammation, and Decreased… [PMID: 40649955]

    Laboratory literature summary: Inhibition of CD38 by 78c Enhanced NAD(+), Alleviated Inflammation, and Decreased Oxidative Stress in Old Murine Macrophages Induced by…. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  150. Li C et al. (2024). Gastrointestinal jumbo phages possess independent synthesis and utilization systems of… [PMID: 39707494]

    Laboratory literature summary: Gastrointestinal jumbo phages possess independent synthesis and utilization systems of NAD(). Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  151. Masgras I et al. (2022). Oncology research models growth of neurofibromin-deficient cells is driven by… [PMID: 35393510]

    Laboratory literature summary: oncology research models growth of neurofibromin-deficient cells is driven by decreased respiration and hampered by NAD(+) and SIRT3. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  152. Levine DC et al. (2020). NAD(+) Controls Circadian Reprogramming through PER2 Nuclear Translocation to Counter… [PMID: 32369735]

    Laboratory literature summary: NAD(+) Controls Circadian Reprogramming through PER2 Nuclear Translocation to Counter Aging. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  153. Felczak K et al. (2014). NAD-based inhibitors with anticancer potential [PMID: 24269162]

    Laboratory literature summary: NAD-based inhibitors with anticancer potential. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  154. Poljsak B (2018). NAMPT-Mediated NAD Biosynthesis as the Internal Timing Mechanism: In NAD+ World, Time… [PMID: 28756747]

    Laboratory literature summary: NAMPT-Mediated NAD Biosynthesis as the Internal Timing Mechanism: In NAD+ World, Time Is Running in Its Own Way. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  155. Fan L et al. (2020). Laboratory research record on NAD+ [PMID: 32428995]

    PubMed laboratory record discussing NAD+ in a research context. Review the full methods and limitations on PubMed; research use only.

  156. Weber JM et al. (2022). Testing Abiotic Reduction of NAD(+) Directly Mediated by Iron/Sulfur Minerals [PMID: 34591607]

    Laboratory literature summary: Testing Abiotic Reduction of NAD(+) Directly Mediated by Iron/Sulfur Minerals. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  157. Ting KY et al. (2016). Porcine CD38 exhibits prominent secondary NAD(+) cyclase activity [PMID: 26660500]

    Laboratory literature summary: Porcine CD38 exhibits prominent secondary NAD(+) cyclase activity. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  158. Tong J et al. (2024). CD38 and extracellular NAD(+) regulate the development and maintenance of Hp… [PMID: 38960319]

    Laboratory literature summary: CD38 and extracellular NAD(+) regulate the development and maintenance of Hp vaccine-induced CD4(+) T(RM) in the gastric epithelium. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  159. Shim DW et al. (2021). Intracellular NAD(+) Depletion Confers a Priming Signal for NLRP3 Inflammasome Activation [PMID: 34987507]

    Laboratory literature summary: Intracellular NAD(+) Depletion Confers a Priming Signal for NLRP3 Inflammasome Activation. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  160. Wang X et al. (2019). Subcellular NAMPT-mediated NAD(+) salvage pathways and their roles in bioenergetics… [PMID: 31553812]

    Laboratory literature summary: Subcellular NAMPT-mediated NAD(+) salvage pathways and their roles in bioenergetics and neuronal protection after ischemic injury. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  161. Lee JY et al. (2021). Salvaging the endothelium in acute respiratory distress syndrome: a druggable… [PMID: 33958376]

    Laboratory literature summary: Salvaging the endothelium in acute respiratory distress syndrome: a druggable intersection between TLR4 and NAD(+) signalling. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  162. Manna D et al. (2018). An NAD(+)-dependent novel transcription factor controls stage conversion in Entamoeba [PMID: 30375973]

    Laboratory literature summary: An NAD(+)-dependent novel transcription factor controls stage conversion in Entamoeba. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  163. Srivastava Y et al. (2023). Full-Length NAD(+)-I Riboswitches Bind a Single Cofactor but Cannot Discriminate… [PMID: 37947391]

    Laboratory literature summary: Full-Length NAD(+)-I Riboswitches Bind a Single Cofactor but Cannot Discriminate against Adenosine Triphosphate. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  164. Carneiro J et al. (2013). The evolutionary portrait of metazoan NAD salvage [PMID: 23724078]

    Laboratory literature summary: The evolutionary portrait of metazoan NAD salvage. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  165. Shats I et al. (2020). Bacteria Boost Mammalian Host NAD Metabolism by Engaging the Deamidated Biosynthesis… [PMID: 32130883]

    Laboratory literature summary: Bacteria Boost Mammalian Host NAD Metabolism by Engaging the Deamidated Biosynthesis Pathway. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  166. Ma B et al. (2007). Assimilation of NAD(+) precursors in Candida glabrata [PMID: 17725566]

    Laboratory literature summary: Assimilation of NAD(+) precursors in Candida glabrata. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  167. Yang H et al. (2007). Nutrient-sensitive mitochondrial NAD+ levels dictate cell survival [PMID: 17889652]

    Laboratory literature summary: Nutrient-sensitive mitochondrial NAD+ levels dictate cell survival. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  168. Kim W et al. (2019). Polyunsaturated Fatty Acid Desaturation Is a Mechanism for Glycolytic NAD(+) Recycling [PMID: 30686744]

    Laboratory literature summary: Polyunsaturated Fatty Acid Desaturation Is a Mechanism for Glycolytic NAD(+) Recycling. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  169. Yang Y et al. (2020). NRH salvage and conversion to NAD(+) requires NRH kinase activity by adenosine kinase [PMID: 32694608]

    Laboratory literature summary: NRH salvage and conversion to NAD(+) requires NRH kinase activity by adenosine kinase. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  170. Kassegn TA et al. (2026). NAD(+) Homeostasis Attenuates Japanese Encephalitis Virus Infection Progression [PMID: 41693302]

    Laboratory literature summary: NAD(+) Homeostasis Attenuates Japanese Encephalitis Virus Infection Progression. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  171. Lin JB et al. (2016). NAMPT-Mediated NAD(+) Biosynthesis Is Essential for Vision In Mice [PMID: 27681422]

    Laboratory literature summary: NAMPT-Mediated NAD(+) Biosynthesis Is Essential for Vision In Mice. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  172. Lauritzen KH et al. (2021). Instability in NAD(+) metabolism leads to impaired cardiac mitochondrial function and… [PMID: 34343089]

    Laboratory literature summary: Instability in NAD(+) metabolism leads to impaired cardiac mitochondrial function and communication. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  173. Roboon J et al. (2021). Inhibition of CD38 and supplementation of nicotinamide riboside ameliorate… [PMID: 33871064]

    Laboratory literature summary: Inhibition of CD38 and supplementation of nicotinamide riboside ameliorate lipopolysaccharide-induced microglial and astrocytic…. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  174. Willingham K et al. (2025). Inhibition of TRAF3IP2 Modulates NAMPT and NAD Metabolism in Glioblastoma [PMID: 41123804]

    Laboratory literature summary: Inhibition of TRAF3IP2 Modulates NAMPT and NAD Metabolism in Glioblastoma. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  175. Petin K et al. (2019). NAD metabolites interfere with proliferation and functional properties of THP-1 cells [PMID: 31053044]

    Laboratory literature summary: NAD metabolites interfere with proliferation and functional properties of THP-1 cells. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  176. Hulmi JJ et al. (2020). Muscle NAD(+) depletion and Serpina3n as molecular determinants of murine oncology… [PMID: 32599075]

    Laboratory literature summary: Muscle NAD(+) depletion and Serpina3n as molecular determinants of murine oncology research models cachexia-the effects of blocking…. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  177. Shen A et al. (2017). NAD(+) augmentation ameliorates acute pancreatitis through regulation of inflammasome… [PMID: 28592850]

    Laboratory literature summary: NAD(+) augmentation ameliorates acute pancreatitis through regulation of inflammasome signalling. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  178. Tran MT et al. (2016). PGC1α drives NAD biosynthesis linking oxidative metabolism to renal protection [PMID: 26982719]

    Laboratory literature summary: PGC1α drives NAD biosynthesis linking oxidative metabolism to renal protection. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  179. Nanga RPR et al. (2024). Acute nicotinamide riboside supplementation increases research subjects cerebral… [PMID: 39044608]

    Laboratory literature summary: Acute nicotinamide riboside supplementation increases research subjects cerebral NAD(+) levels in vivo. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  180. Jiao L et al. (2022). Laboratory research record on NAD+ [PMID: 36351515]

    PubMed laboratory record discussing NAD+ in a research context. Review the full methods and limitations on PubMed; research use only.

  181. Yang B et al. (2021). NAD(+) supplementation prevents STING-induced senescence in ataxia telangiectasia by… [PMID: 33734555]

    Laboratory literature summary: NAD(+) supplementation prevents STING-induced senescence in ataxia telangiectasia by improving mitophagy. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  182. Chuenchor W et al. (2020). Different ways to transport ammonia in research subjects and Mycobacterium… [PMID: 31911602]

    Laboratory literature summary: Different ways to transport ammonia in research subjects and Mycobacterium tuberculosis NAD(+) synthetases. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  183. Martínez-Morcillo FJ et al. (2021). NAMPT-derived NAD+ fuels PARP1 to promote skin inflammation through parthanatos cell death [PMID: 34748530]

    Laboratory literature summary: NAMPT-derived NAD+ fuels PARP1 to promote skin inflammation through parthanatos cell death. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  184. Han HJ et al. (2024). Evaluation of NAD(+) precursors for improved metabolism and productivity of… [PMID: 39167557]

    Laboratory literature summary: Evaluation of NAD(+) precursors for improved metabolism and productivity of antibody-producing CHO cell. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  185. Wang Y et al. (2019). NAD(+)-capped RNAs are widespread in the Arabidopsis transcriptome and can probably be… [PMID: 31142655]

    Laboratory literature summary: NAD(+)-capped RNAs are widespread in the Arabidopsis transcriptome and can probably be translated. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  186. Madern JM et al. (2020). Synthesis of Stable NAD(+) Mimics as Inhibitors for the Legionella pneumophila… [PMID: 32421893]

    Laboratory literature summary: Synthesis of Stable NAD(+) Mimics as Inhibitors for the Legionella pneumophila Phosphoribosyl Ubiquitylating Enzyme SdeC. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  187. Romani M et al. (2019). Niacin: an old lipid drug in a new NAD(+) dress [PMID: 30782960]

    Laboratory literature summary: Niacin: an old lipid drug in a new NAD(+) dress. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  188. Zhu J et al. (2020). Cell Type-Specific Roles of CD38 in the Interactions of Isoniazid with NAD(+) in the Liver [PMID: 33020065]

    Laboratory literature summary: Cell Type-Specific Roles of CD38 in the Interactions of Isoniazid with NAD(+) in the Liver. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  189. Rahimova R et al. (2023). Structure-based design, synthesis and biological evaluation of a NAD(+) analogue… [PMID: 36036789]

    Laboratory literature summary: Structure-based design, synthesis and biological evaluation of a NAD(+) analogue targeting Pseudomonas aeruginosa NAD kinase. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  190. Dall M et al. (2021). Hepatocyte-specific perturbation of NAD(+) biosynthetic pathways in mice induces… [PMID: 34762911]

    Laboratory literature summary: Hepatocyte-specific perturbation of NAD(+) biosynthetic pathways in mice induces reversible nonalcoholic steatohepatitis-like phenotypes. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  191. Tak U et al. (2019). The tuberculosis necrotizing toxin is an NAD(+) and NADP(+) glycohydrolase with… [PMID: 30593509]

    Laboratory literature summary: The tuberculosis necrotizing toxin is an NAD(+) and NADP(+) glycohydrolase with distinct enzymatic properties. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  192. Tang J et al. (2024). Disruption of glucose homeostasis by bacterial infection orchestrates host innate… [PMID: 39167491]

    Laboratory literature summary: Disruption of glucose homeostasis by bacterial infection orchestrates host innate immunity through NAD(+)/NADH balance. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  193. Li F et al. (2004). Navigating novel mechanisms of cellular plasticity with the NAD+ precursor and… [PMID: 15353303]

    Laboratory literature summary: Navigating novel mechanisms of cellular plasticity with the NAD+ precursor and nutrient nicotinamide. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  194. Zhang Z et al. (2026). Emerging chemical strategies for CD38 inhibition: restoring NAD(+) metabolism and… [PMID: 42033923]

    Laboratory literature summary: Emerging chemical strategies for CD38 inhibition: restoring NAD(+) metabolism and disease control. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  195. Ryu D et al. (2016). NAD+ repletion improves muscle function in muscular dystrophy and counters global… [PMID: 27798264]

    Laboratory literature summary: NAD+ repletion improves muscle function in muscular dystrophy and counters global PARylation. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  196. Iqbal J et al. (2006). TNF regulates cellular NAD+ metabolism in primary macrophages [PMID: 16516847]

    Laboratory literature summary: TNF regulates cellular NAD+ metabolism in primary macrophages. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  197. Kourtzidis IA et al. (2016). The NAD(+) precursor nicotinamide riboside decreases exercise performance in rats [PMID: 27489522]

    Laboratory literature summary: The NAD(+) precursor nicotinamide riboside decreases exercise performance in rats. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  198. Li T et al. (2024). The NAD(+) precursor nicotinamide riboside protects against postovulatory aging in vitro [PMID: 39460833]

    Laboratory literature summary: The NAD(+) precursor nicotinamide riboside protects against postovulatory aging in vitro. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  199. Pinkerton M et al. (2021). Salvage NAD+ biosynthetic pathway enzymes moonlight as molecular chaperones to protect… [PMID: 33749726]

    Laboratory literature summary: Salvage NAD+ biosynthetic pathway enzymes moonlight as molecular chaperones to protect against proteotoxicity. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  200. Frederick DW et al. (2020). Complementary NAD(+) replacement strategies fail to functionally protect… [PMID: 33092650]

    Laboratory literature summary: Complementary NAD(+) replacement strategies fail to functionally protect dystrophin-deficient muscle. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  201. Zhang N et al. (2025). Structural basis of SIRT2 pre-catalysis NAD(+) binding dynamics and mechanism [PMID: 40963517]

    Laboratory literature summary: Structural basis of SIRT2 pre-catalysis NAD(+) binding dynamics and mechanism. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  202. Sanajou D et al. (2019). Β-Lapachone protects against doxorubicin-induced nephrotoxicity via NAD(+)/AMPK/NF-kB… [PMID: 30671613]

    Laboratory literature summary: β-Lapachone protects against doxorubicin-induced nephrotoxicity via NAD(+)/AMPK/NF-kB in mice. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  203. Moore AM et al. (2021). NAD(+) depletion by type I interferon signaling sensitizes pancreatic oncology… [PMID: 33597293]

    Laboratory literature summary: NAD(+) depletion by type I interferon signaling sensitizes pancreatic oncology research models cells to NAMPT inhibition. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  204. Chmielewski JP et al. (2018). CD38 Inhibits Prostate oncology research models Metabolism and Proliferation by… [PMID: 30076241]

    Laboratory literature summary: CD38 Inhibits Prostate oncology research models Metabolism and Proliferation by Reducing Cellular NAD(+) Pools. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  205. Kontani K et al. (1997). Signal transduction via the CD38/NAD+ glycohydrolase [PMID: 9193684]

    Laboratory literature summary: Signal transduction via the CD38/NAD+ glycohydrolase. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  206. Metcalfe M et al. (2023). Elevation of NAD(+) by nicotinamide riboside spares spinal cord tissue from injury and… [PMID: 37454712]

    Laboratory literature summary: Elevation of NAD(+) by nicotinamide riboside spares spinal cord tissue from injury and promotes locomotor recovery. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  207. French JB et al. (2008). Plasmodium falciparum Sir2 is an NAD+-dependent deacetylase and an… [PMID: 18729382]

    Laboratory literature summary: Plasmodium falciparum Sir2 is an NAD+-dependent deacetylase and an acetyllysine-dependent and acetyllysine-independent NAD+ glycohydrolase. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  208. Zhang L et al. (2017). Using Clickable NAD(+) Analogs to Label Substrate Proteins of PARPs [PMID: 28695506]

    Laboratory literature summary: Using Clickable NAD(+) Analogs to Label Substrate Proteins of PARPs. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  209. Beaudoin AR (1976). NAD precursors as antiteratogens against aminothiadiazole [PMID: 176745]

    Laboratory literature summary: NAD precursors as antiteratogens against aminothiadiazole. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  210. Oganesyan V et al. (2005). Structure of a NAD kinase from Thermotoga maritima at 2.3 A resolution [PMID: 16511117]

    Laboratory literature summary: Structure of a NAD kinase from Thermotoga maritima at 2.3 A resolution. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  211. Dai Z et al. (2018). Facile chemoenzymatic synthesis of a novel stable mimic of NAD() [PMID: 30568770]

    Laboratory literature summary: Facile chemoenzymatic synthesis of a novel stable mimic of NAD(). Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  212. Micheli V et al. (1997). Determining NAD synthesis in erythrocytes [PMID: 9211316]

    Laboratory literature summary: Determining NAD synthesis in erythrocytes. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  213. Meyer T et al. (1984). NAD[S], an NAD analogue with reduced susceptibility to phosphodiesterase. Chemical… [PMID: 6144544]

    Laboratory literature summary: NAD[S], an NAD analogue with reduced susceptibility to phosphodiesterase. Chemical synthesis and enzymic properties. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  214. Panchapakesan SSS et al. (2021). A second riboswitch class for the enzyme cofactor NAD() [PMID: 33087526]

    Laboratory literature summary: A second riboswitch class for the enzyme cofactor NAD(). Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  215. Chen M et al. (2020). Flexible NAD(+) Binding in Deoxyhypusine Synthase Reflects the Dynamic Hypusine… [PMID: 32752130]

    Laboratory literature summary: Flexible NAD(+) Binding in Deoxyhypusine Synthase Reflects the Dynamic Hypusine Modification of Translation Factor IF5A. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  216. Venter G et al. (2014). NAMPT-mediated salvage synthesis of NAD+ controls morphofunctional changes of macrophages [PMID: 24824795]

    Laboratory literature summary: NAMPT-mediated salvage synthesis of NAD+ controls morphofunctional changes of macrophages. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  217. Cahová H et al. (2015). NAD captureSeq indicates NAD as a bacterial cap for a subset of regulatory RNAs [PMID: 25533955]

    Laboratory literature summary: NAD captureSeq indicates NAD as a bacterial cap for a subset of regulatory RNAs. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  218. Agerholm M et al. (2018). Perturbations of NAD(+) salvage systems impact mitochondrial function and energy… [PMID: 29208611]

    Laboratory literature summary: Perturbations of NAD(+) salvage systems impact mitochondrial function and energy homeostasis in mouse myoblasts and intact skeletal muscle. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  219. Meng W et al. (2025). NAD+ Metabolism Reprogramming Mediates Irradiation-Induced Immunosuppressive… [PMID: 39127084]

    Laboratory literature summary: NAD+ Metabolism Reprogramming Mediates Irradiation-Induced Immunosuppressive Polarization of Macrophages. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  220. Du J et al. (2009). Investigating the ADP-ribosyltransferase activity of sirtuins with NAD analogues and… [PMID: 19220062]

    Laboratory literature summary: Investigating the ADP-ribosyltransferase activity of sirtuins with NAD analogues and 32P-NAD. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  221. Wang H et al. (2021). Laboratory research record on NAD+ [PMID: 34662475]

    PubMed laboratory record discussing NAD+ in a research context. Review the full methods and limitations on PubMed; research use only.

  222. Li J et al. (2017). A conserved NAD(+) binding pocket that regulates protein-protein interactions during aging [PMID: 28336669]

    Laboratory literature summary: A conserved NAD(+) binding pocket that regulates protein-protein interactions during aging. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  223. Kim HJ et al. (2016). Dunnione ameliorates cisplatin ototoxicity through modulation of NAD(+) metabolism [PMID: 26341473]

    Laboratory literature summary: Dunnione ameliorates cisplatin ototoxicity through modulation of NAD(+) metabolism. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  224. Ghosh N et al. (2020). Urolithin A augments angiogenic pathways in skeletal muscle by bolstering NAD(+) and SIRT1 [PMID: 33214614]

    Laboratory literature summary: Urolithin A augments angiogenic pathways in skeletal muscle by bolstering NAD(+) and SIRT1. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  225. Wan L et al. (2019). TIR domains of plant immune receptors are NAD(+)-cleaving enzymes that promote cell death [PMID: 31439793]

    Laboratory literature summary: TIR domains of plant immune receptors are NAD(+)-cleaving enzymes that promote cell death. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  226. Yano M et al. (2015). Monocyte-derived extracellular Nampt-dependent biosynthesis of NAD(+) protects the… [PMID: 26522369]

    Laboratory literature summary: Monocyte-derived extracellular Nampt-dependent biosynthesis of NAD(+) protects the heart against pressure overload. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  227. Giroud-Gerbetant J et al. (2019). A reduced form of nicotinamide riboside defines a new path for NAD(+) biosynthesis and… [PMID: 31767171]

    Laboratory literature summary: A reduced form of nicotinamide riboside defines a new path for NAD(+) biosynthesis and acts as an orally bioavailable NAD(+) precursor. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  228. Galloway TS et al. (1987). Binding of NAD+ by cholera toxin [PMID: 2821999]

    Laboratory literature summary: Binding of NAD+ by cholera toxin. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  229. Ding Q et al. (2023). CD38 deficiency promotes skeletal muscle and brown adipose tissue energy expenditure… [PMID: 37192549]

    Laboratory literature summary: CD38 deficiency promotes skeletal muscle and brown adipose tissue energy expenditure through activating NAD(+)-Sirt1-PGC1α signaling pathway. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  230. Ciaglia E et al. (2022). Transfer of the longevity-associated variant of BPIFB4 gene rejuvenates immune system… [PMID: 35087020]

    Laboratory literature summary: Transfer of the longevity-associated variant of BPIFB4 gene rejuvenates immune system and vasculature by a reduction of CD38(+)…. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  231. Yamato M et al. (2016). Laboratory research record on NAD+ [PMID: 26942863]

    PubMed laboratory record discussing NAD+ in a research context. Review the full methods and limitations on PubMed; research use only.

  232. Huang YC et al. (1990). Subunit location and sequences of the cysteinyl peptides of pig heart NAD-dependent… [PMID: 2252888]

    Laboratory literature summary: Subunit location and sequences of the cysteinyl peptides of pig heart NAD-dependent isocitrate dehydrogenase. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  233. Stabb EV et al. (2001). Vibrio fischeri genes hvnA and hvnB encode secreted NAD(+)-glycohydrolases [PMID: 11114931]

    Laboratory literature summary: Vibrio fischeri genes hvnA and hvnB encode secreted NAD(+)-glycohydrolases. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  234. Williams MB et al. (1985). Calmodulin-dependent NAD kinase of research subjects neutrophils [PMID: 2982330]

    Laboratory literature summary: Calmodulin-dependent NAD kinase of research subjects neutrophils. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  235. Zhang J et al. (1995). Identification and purification of a bovine liver mitochondrial NAD(+)-glycohydrolase [PMID: 8549791]

    Laboratory literature summary: Identification and purification of a bovine liver mitochondrial NAD(+)-glycohydrolase. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  236. Cameron AM et al. (2019). Inflammatory macrophage dependence on NAD(+) salvage is a consequence of reactive… [PMID: 30858618]

    Laboratory literature summary: Inflammatory macrophage dependence on NAD(+) salvage is a consequence of reactive oxygen species-mediated DNA damage. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  237. Essuman K et al. (2018). TIR Domain Proteins Are an Ancient Family of NAD(+)-Consuming Enzymes [PMID: 29395922]

    Laboratory literature summary: TIR Domain Proteins Are an Ancient Family of NAD(+)-Consuming Enzymes. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  238. Wang Y et al. (2021). NAD(+) supplement potentiates oncology research models-killing function by rescuing… [PMID: 34380043]

    Laboratory literature summary: NAD(+) supplement potentiates oncology research models-killing function by rescuing defective TUB-mediated NAMPT transcription in…. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  239. Li S et al. (2024). Tubular insulin-induced gene 1 deficiency promotes NAD(+) consumption and exacerbates… [PMID: 38806641]

    Laboratory literature summary: Tubular insulin-induced gene 1 deficiency promotes NAD(+) consumption and exacerbates kidney fibrosis. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  240. Wallrodt S et al. (2016). Bioorthogonally Functionalized NAD(+) Analogues for In-Cell Visualization of… [PMID: 27080423]

    Laboratory literature summary: Bioorthogonally Functionalized NAD(+) Analogues for In-Cell Visualization of Poly(ADP-Ribose) Formation. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  241. Mardinoglu A et al. (2017). Personal model-assisted identification of NAD(+) and glutathione metabolism as… [PMID: 28254760]

    Laboratory literature summary: Personal model-assisted identification of NAD(+) and glutathione metabolism as intervention target in NAFLD. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  242. Xia W et al. (2009). Roles of NAD(+) / NADH and NADP(+) / NADPH in cell death [PMID: 19149598]

    Laboratory literature summary: Roles of NAD(+) / NADH and NADP(+) / NADPH in cell death. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  243. Pollard CL et al. (2021). Supplementing media with NAD(+) precursors enhances the in vitro maturation of porcine… [PMID: 34408103]

    Laboratory literature summary: Supplementing media with NAD(+) precursors enhances the in vitro maturation of porcine oocytes. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  244. Okuda H et al. (2013). NAD(+) influx through connexin hemichannels prevents poly(ADP-ribose)… [PMID: 23454167]

    Laboratory literature summary: NAD(+) influx through connexin hemichannels prevents poly(ADP-ribose) polymerase-mediated astrocyte death. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  245. Rovira AR et al. (2017). Emissive Synthetic Cofactors: An Isomorphic, Isofunctional, and Responsive NAD(+) Analogue [PMID: 29043790]

    Laboratory literature summary: Emissive Synthetic Cofactors: An Isomorphic, Isofunctional, and Responsive NAD(+) Analogue. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  246. Theodoropoulos PC et al. (2024). Thiophenyl Derivatives of Nicotinamide Are Metabolized by the NAD Salvage Pathway into… [PMID: 38829020]

    Laboratory literature summary: Thiophenyl Derivatives of Nicotinamide Are Metabolized by the NAD Salvage Pathway into Unnatural NAD Derivatives That Inhibit IMPDH and…. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  247. Iske J et al. (2024). NAD(+) prevents septic shock-induced death by non-canonical inflammasome blockade and… [PMID: 38372712]

    Laboratory literature summary: NAD(+) prevents septic shock-induced death by non-canonical inflammasome blockade and IL-10 cytokine production in macrophages. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  248. Saiki I et al. (1981). Adjuvant and mitogenic activities of niacine derivatives and their NAD-analogs [PMID: 6797979]

    Laboratory literature summary: Adjuvant and mitogenic activities of niacine derivatives and their NAD-analogs. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  249. Pajuelo D et al. (2018). NAD(+) Depletion Triggers Macrophage Necroptosis, a Cell Death Pathway Exploited by… [PMID: 29996103]

    Laboratory literature summary: NAD(+) Depletion Triggers Macrophage Necroptosis, a Cell Death Pathway Exploited by Mycobacterium tuberculosis. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  250. Liu HW et al. (2018). Pharmacological bypass of NAD(+) salvage pathway protects neurons from… [PMID: 30257945]

    Laboratory literature summary: Pharmacological bypass of NAD(+) salvage pathway protects neurons from chemotherapy-induced degeneration. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  251. Tannous C et al. (2021). NMRK2 Gene Is Upregulated in Dilated Cardiomyopathy and Required for Cardiac Function… [PMID: 33805532]

    Laboratory literature summary: NMRK2 Gene Is Upregulated in Dilated Cardiomyopathy and Required for Cardiac Function and NAD Levels during Aging. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  252. Diani-Moore S et al. (2017). NAD(+) loss, a new player in AhR biology: prevention of thymus atrophy and… [PMID: 28536482]

    Laboratory literature summary: NAD(+) loss, a new player in AhR biology: prevention of thymus atrophy and hepatosteatosis by NAD(+) repletion. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  253. Feldmann J et al. (2019). Emissive Synthetic Cofactors: A Highly Responsive NAD(+) Analogue Reveals Biomolecular… [PMID: 30648291]

    Laboratory literature summary: Emissive Synthetic Cofactors: A Highly Responsive NAD(+) Analogue Reveals Biomolecular Recognition Features. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  254. Liu D et al. (2009). Nicotinamide prevents NAD+ depletion and protects neurons against excitotoxicity and… [PMID: 19288225]

    Laboratory literature summary: Nicotinamide prevents NAD+ depletion and protects neurons against excitotoxicity and cerebral ischemia: NAD+ consumption by SIRT1 may…. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  255. He S et al. (2022). Heme oxygenase-1 protects against endotoxin-induced acute lung injury depends on… [PMID: 35816227]

    Laboratory literature summary: Heme oxygenase-1 protects against endotoxin-induced acute lung injury depends on NAD(+)-mediated mitonuclear communication through…. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  256. Obrador E et al. (2023). Combination of natural polyphenols with a precursor of NAD(+) and a TLR2/6 ligand… [PMID: 35599107]

    Laboratory literature summary: Combination of natural polyphenols with a precursor of NAD(+) and a TLR2/6 ligand lipopeptide protects mice against lethal γ radiation. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  257. Koberstein R (1976). 8-Azidoacenine analogs of NAD+ and FAD. Synthesis and coenzyme properties with… [PMID: 9276]

    Laboratory literature summary: 8-Azidoacenine analogs of NAD+ and FAD. Synthesis and coenzyme properties with NAD+-dependent and FAD-dependent enzymes. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  258. Hachisuka SI et al. (2017). Metabolism Dealing with Thermal Degradation of NAD(+) in the Hyperthermophilic… [PMID: 28652302]

    Laboratory literature summary: Metabolism Dealing with Thermal Degradation of NAD(+) in the Hyperthermophilic Archaeon Thermococcus kodakarensis. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  259. Liu TF et al. (2011). NAD+-dependent SIRT1 deacetylase participates in epigenetic reprogramming during… [PMID: 21245135]

    Laboratory literature summary: NAD+-dependent SIRT1 deacetylase participates in epigenetic reprogramming during endotoxin tolerance. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  260. Peek CB et al. (2013). Circadian clock NAD+ cycle drives mitochondrial oxidative metabolism in mice [PMID: 24051248]

    Laboratory literature summary: Circadian clock NAD+ cycle drives mitochondrial oxidative metabolism in mice. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  261. Sharif T et al. (2016). The NAD(+) salvage pathway modulates oncology research models cell viability via p73 [PMID: 26586573]

    Laboratory literature summary: The NAD(+) salvage pathway modulates oncology research models cell viability via p73. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  262. Wallrodt S et al. (2017). Investigation of the action of poly(ADP-ribose)-synthesising enzymes on NAD(+) analogues [PMID: 28382184]

    Laboratory literature summary: Investigation of the action of poly(ADP-ribose)-synthesising enzymes on NAD(+) analogues. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  263. Lou J et al. (2025). Fusarium oxysporum NAD(+) hydrolase FonNADase1 is essential for pathogenicity and… [PMID: 39955986]

    Laboratory literature summary: Fusarium oxysporum NAD(+) hydrolase FonNADase1 is essential for pathogenicity and inhibits plant immune responses. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  264. Kumar V et al. (2002). Transcription corepressor CtBP is an NAD(+)-regulated dehydrogenase [PMID: 12419229]

    Laboratory literature summary: Transcription corepressor CtBP is an NAD(+)-regulated dehydrogenase. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  265. Tateishi K et al. (2015). Extreme Vulnerability of IDH1 Mutant Cancers to NAD+ Depletion [PMID: 26678339]

    Laboratory literature summary: Extreme Vulnerability of IDH1 Mutant Cancers to NAD+ Depletion. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  266. Fickenscher K et al. (1987). Amino acid sequence similarity between malate dehydrogenases (NAD) and pea chloroplast… [PMID: 3665938]

    Laboratory literature summary: Amino acid sequence similarity between malate dehydrogenases (NAD) and pea chloroplast malate dehydrogenase (NADP). Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  267. Ponnuraj RK et al. (2005). NAD-, NMN-, and NADP-dependent modification of dinitrogenase reductases from… [PMID: 16225869]

    Laboratory literature summary: NAD-, NMN-, and NADP-dependent modification of dinitrogenase reductases from Rhodospirillum rubrum and Azotobacter vinelandii. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  268. Munir A et al. (2019). NAD(+)-dependent RNA terminal 2' and 3' phosphomonoesterase activity of a subset of… [PMID: 31019096]

    Laboratory literature summary: NAD(+)-dependent RNA terminal 2' and 3' phosphomonoesterase activity of a subset of Tpt1 enzymes. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  269. Zhang R et al. (2009). Isoforms and functions of NAD(P)H oxidase at the macula densa [PMID: 19204183]

    Laboratory literature summary: Isoforms and functions of NAD(P)H oxidase at the macula densa. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  270. Djouder N (2015). Boosting NAD(+) for the prevention and investigation of liver oncology research models [PMID: 27308492]

    Laboratory literature summary: Boosting NAD(+) for the prevention and investigation of liver oncology research models. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  271. Zhang C et al. (2024). Intestinal lysozyme1 deficiency alters microbiota composition and impacts host… [PMID: 38364095]

    Laboratory literature summary: Intestinal lysozyme1 deficiency alters microbiota composition and impacts host metabolism through the emergence of NAD(+)-secreting ASTB…. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  272. Diem Nghi T et al. (2026). Ligand-independent EPHA2 signaling sustains neural progenitors via ECSIT and NAD() [PMID: 42432363]

    Laboratory literature summary: Ligand-independent EPHA2 signaling sustains neural progenitors via ECSIT and NAD(). Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  273. Gibson BA et al. (2017). Identification of Protein Substrates of Specific PARP Enzymes Using Analog-Sensitive… [PMID: 28695507]

    Laboratory literature summary: Identification of Protein Substrates of Specific PARP Enzymes Using Analog-Sensitive PARP Mutants and a "Clickable" NAD(+) Analog. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  274. Liu Y et al. (2026). Enzymatic and Chemical Synthesis for ADP-Ribosylation Using NAD(+) as Building Blocks:… [PMID: 41816858]

    Laboratory literature summary: Enzymatic and Chemical Synthesis for ADP-Ribosylation Using NAD(+) as Building Blocks: New Concerns in Reaction Discovery and Design. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  275. Karsten WE et al. (2002). Tartrate dehydrogenase catalyzes the stepwise oxidative decarboxylation of D-malate… [PMID: 12356321]

    Laboratory literature summary: Tartrate dehydrogenase catalyzes the stepwise oxidative decarboxylation of D-malate with both NAD and thio-NAD. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  276. Luczak MW et al. (2021). NAD(+) metabolism controls growth inhibition by HIF1 in normoxia and determines… [PMID: 34382917]

    Laboratory literature summary: NAD(+) metabolism controls growth inhibition by HIF1 in normoxia and determines differential sensitivity of normal and oncology research…. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  277. Madsen AS et al. (2016). Investigating the Sensitivity of NAD+-dependent Sirtuin Deacylation Activities to NADH [PMID: 26861872]

    Laboratory literature summary: Investigating the Sensitivity of NAD+-dependent Sirtuin Deacylation Activities to NADH. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  278. Hsu CP et al. (2009). Nicotinamide phosphoribosyltransferase regulates cell survival through NAD+ synthesis… [PMID: 19661458]

    Laboratory literature summary: Nicotinamide phosphoribosyltransferase regulates cell survival through NAD+ synthesis in cardiac myocytes. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  279. Zhu P et al. (2022). BMAL1 drives muscle repair through control of hypoxic NAD(+) regeneration in satellite… [PMID: 35115380]

    Laboratory literature summary: BMAL1 drives muscle repair through control of hypoxic NAD(+) regeneration in satellite cells. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  280. Yamaguchi S et al. (2019). Adipose tissue NAD(+) biosynthesis is required for regulating adaptive thermogenesis… [PMID: 31694884]

    Laboratory literature summary: Adipose tissue NAD(+) biosynthesis is required for regulating adaptive thermogenesis and whole-body energy homeostasis in mice. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  281. Razzaque A et al. (1978). NAD- and FAD-3'-pyrophosphates–enzymic synthesis and inertness [PMID: 30649]

    Laboratory literature summary: NAD- and FAD-3'-pyrophosphates–enzymic synthesis and inertness. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  282. Luo G et al. (2021). Resveratrol attenuates excessive ethanol exposure-induced β-cell senescence in rats: A… [PMID: 33326842]

    Laboratory literature summary: Resveratrol attenuates excessive ethanol exposure-induced β-cell senescence in rats: A critical role for the NAD(+)/SIRT1-p38MAPK/p16…. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  283. Goody MF et al. (2012). NAD+ biosynthesis ameliorates a zebrafish model of muscular dystrophy [PMID: 23109907]

    Laboratory literature summary: NAD+ biosynthesis ameliorates a zebrafish model of muscular dystrophy. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  284. Lee CH et al. (2000). Research subjects deoxyhypusine synthase: interrelationship between binding of NAD and… [PMID: 11104695]

    Laboratory literature summary: research subjects deoxyhypusine synthase: interrelationship between binding of NAD and substrates. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  285. Wang YH et al. (2016). Giardia duodenalis GlSir2.2, homolog of SIRT1, is a nuclear-located and… [PMID: 27423969]

    Laboratory literature summary: Giardia duodenalis GlSir2.2, homolog of SIRT1, is a nuclear-located and NAD(+)-dependent deacethylase. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  286. Landry J et al. (2000). Role of NAD(+) in the deacetylase activity of the SIR2-like proteins [PMID: 11095969]

    Laboratory literature summary: Role of NAD(+) in the deacetylase activity of the SIR2-like proteins. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  287. Takao S et al. (2018). Targeting the vulnerability to NAD(+) depletion in B-cell acute lymphoblastic leukemia [PMID: 28904384]

    Laboratory literature summary: Targeting the vulnerability to NAD(+) depletion in B-cell acute lymphoblastic leukemia. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  288. Smith JS et al. (2002). SIR2 family of NAD(+)-dependent protein deacetylases [PMID: 12078503]

    Laboratory literature summary: SIR2 family of NAD(+)-dependent protein deacetylases. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  289. Rizzi M et al. (1998). A novel deamido-NAD+-binding site revealed by the trapped NAD-adenylate intermediate… [PMID: 9753692]

    Laboratory literature summary: A novel deamido-NAD+-binding site revealed by the trapped NAD-adenylate intermediate in the NAD+ synthetase structure. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  290. Qi N et al. (2024). Adipocyte-specific inactivation of NAMPT, a key NAD(+) biosynthetic enzyme, causes a… [PMID: 38809511]

    Laboratory literature summary: Adipocyte-specific inactivation of NAMPT, a key NAD(+) biosynthetic enzyme, causes a metabolically unhealthy lean phenotype in research…. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  291. Vaziri H et al. (2001). HSIR2(SIRT1) functions as an NAD-dependent p53 deacetylase [PMID: 11672523]

    Laboratory literature summary: hSIR2(SIRT1) functions as an NAD-dependent p53 deacetylase. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  292. Nata K (2026). [Function, Regeneration, and Proliferation of Pancreatic β-Cells Centered on NAD] [PMID: 42091541]

    Laboratory literature summary: [Function, Regeneration, and Proliferation of Pancreatic β-Cells Centered on NAD]. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  293. de Guia RM et al. (2019). Aerobic and resistance exercise training reverses age-dependent decline in NAD(+)… [PMID: 31207144]

    Laboratory literature summary: Aerobic and resistance exercise training reverses age-dependent decline in NAD(+) salvage capacity in research subjects skeletal muscle. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  294. Hong S et al. (2025). Crystal structure of Bacillus dafuensis Thoeris B1 protein in complex with NAD() [PMID: 41270486]

    Laboratory literature summary: Crystal structure of Bacillus dafuensis Thoeris B1 protein in complex with NAD(). Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  295. Wu Z et al. (2020). Novel multifunctional iron chelators of the aroyl nicotinoyl hydrazone class that… [PMID: 31895471]

    Laboratory literature summary: Novel multifunctional iron chelators of the aroyl nicotinoyl hydrazone class that markedly enhance cellular NAD(+) /NADH ratios. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  296. Skokowa J et al. (2009). NAMPT is essential for the G-CSF-induced myeloid differentiation via a… [PMID: 19182797]

    Laboratory literature summary: NAMPT is essential for the G-CSF-induced myeloid differentiation via a NAD(+)-sirtuin-1-dependent pathway. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  297. Chong MC et al. (2022). Exercise increases the release of NAMPT in extracellular vesicles and alters NAD(+)… [PMID: 35661560]

    Laboratory literature summary: Exercise increases the release of NAMPT in extracellular vesicles and alters NAD(+) activity in recipient cells. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  298. Yoshino J (2013). [Importance of NAMPT-mediated NAD-biosynthesis and NAD-dependent deacetylase SIRT1 in… [PMID: 24437277]

    Laboratory literature summary: [Importance of NAMPT-mediated NAD-biosynthesis and NAD-dependent deacetylase SIRT1 in the crosstalk between circadian rhythm and metabolism]. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  299. Beijer NA et al. (1990). NAD+ and NAD+ analogues in horse liver alcohol dehydrogenase. Relationship between… [PMID: 2364095]

    Laboratory literature summary: NAD+ and NAD+ analogues in horse liver alcohol dehydrogenase. Relationship between reactivity and conformation simulated with molecular…. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  300. Takeuchi M et al. (2015). Apoptosis induced by NAD depletion is inhibited by KN-93 in a CaMKII-independent manner [PMID: 26024774]

    Laboratory literature summary: Apoptosis induced by NAD depletion is inhibited by KN-93 in a CaMKII-independent manner. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  301. Jadeja RN et al. (2018). Loss of NAMPT in aging retinal pigment epithelium reduces NAD(+) availability and… [PMID: 29905535]

    Laboratory literature summary: Loss of NAMPT in aging retinal pigment epithelium reduces NAD(+) availability and promotes cellular senescence. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  302. Park JW et al. (2024). Hypothalamic astrocyte NAD(+) salvage pathway mediates the coupling of dietary fat… [PMID: 38453901]

    Laboratory literature summary: Hypothalamic astrocyte NAD(+) salvage pathway mediates the coupling of dietary fat overconsumption in a mouse model of metabolic…. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  303. Dell'Aglio E et al. (2019). Identification of the Arabidopsis Calmodulin-Dependent NAD(+) Kinase That Sustains the… [PMID: 31554701]

    Laboratory literature summary: Identification of the Arabidopsis Calmodulin-Dependent NAD(+) Kinase That Sustains the Elicitor-Induced Oxidative Burst. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  304. Wall KA et al. (1998). Inhibition of the intrinsic NAD+ glycohydrolase activity of CD38 by carbocyclic NAD… [PMID: 9794804]

    Laboratory literature summary: Inhibition of the intrinsic NAD+ glycohydrolase activity of CD38 by carbocyclic NAD analogues. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  305. Wei X et al. (2020). Depot-specific regulation of NAD(+)/SIRTs metabolism identified in adipose tissue of… [PMID: 32278117]

    Laboratory literature summary: Depot-specific regulation of NAD(+)/SIRTs metabolism identified in adipose tissue of mice in response to high-fat diet feeding or…. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  306. Hoff KG et al. (2006). Insights into the sirtuin mechanism from ternary complexes containing NAD+ and… [PMID: 16905097]

    Laboratory literature summary: Insights into the sirtuin mechanism from ternary complexes containing NAD+ and acetylated peptide. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  307. Zhu N et al. (2022). Bioactive Oligopeptides from Ginseng (Panax ginseng Meyer) Suppress Oxidative… [PMID: 36558448]

    Laboratory literature summary: Bioactive Oligopeptides from Ginseng (Panax ginseng Meyer) Suppress Oxidative Stress-Induced Senescence in Fibroblasts via…. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  308. Nishino T et al. (1989). The nicotinamide adenine dinucleotide-binding site of chicken liver xanthine… [PMID: 2925614]

    Laboratory literature summary: The nicotinamide adenine dinucleotide-binding site of chicken liver xanthine dehydrogenase. Evidence for alteration of the redox…. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  309. Kumar H et al. (2023). Changing the Electron Acceptor Specificity of Rhodobacter capsulatus Formate… [PMID: 38003259]

    Laboratory literature summary: Changing the Electron Acceptor Specificity of Rhodobacter capsulatus Formate Dehydrogenase from NAD(+) to NADP(). Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  310. Dasgupta BR et al. (2005). Botulinum neurotoxin types A, B, and E: fragmentations by autoproteolysis and other… [PMID: 16323041]

    Laboratory literature summary: Botulinum neurotoxin types A, B, and E: fragmentations by autoproteolysis and other mechanisms including by…. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  311. Nielsen KN et al. (2018). NAMPT-mediated NAD(+) biosynthesis is indispensable for adipose tissue plasticity and… [PMID: 29551635]

    Laboratory literature summary: NAMPT-mediated NAD(+) biosynthesis is indispensable for adipose tissue plasticity and development of metabolic research models. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  312. Stromsdorfer KL et al. (2016). NAMPT-Mediated NAD(+) Biosynthesis in Adipocytes Regulates Adipose Tissue Function and… [PMID: 27498863]

    Laboratory literature summary: NAMPT-Mediated NAD(+) Biosynthesis in Adipocytes Regulates Adipose Tissue Function and Multi-organ Insulin Sensitivity in Mice. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  313. Hoxhaj G et al. (2019). Direct stimulation of NADP(+) synthesis through Akt-mediated phosphorylation of NAD kinase [PMID: 30846598]

    Laboratory literature summary: Direct stimulation of NADP(+) synthesis through Akt-mediated phosphorylation of NAD kinase. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  314. Loring HS et al. (2021). A phase transition enhances the catalytic activity of SARM1, an NAD(+) glycohydrolase… [PMID: 34184985]

    Laboratory literature summary: A phase transition enhances the catalytic activity of SARM1, an NAD(+) glycohydrolase involved in neurodegeneration. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  315. Yates SP et al. (2005). Characterization of oxidized nicotinamide adenine dinucleotide (NAD(+)) analogues… [PMID: 15802128]

    Laboratory literature summary: Characterization of oxidized nicotinamide adenine dinucleotide (NAD(+)) analogues using a high-pressure-liquid-chromatography-based…. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  316. D'Angelo I et al. (2000). Structure of nicotinamide mononucleotide adenylyltransferase: a key enzyme in NAD(+)… [PMID: 10986466]

    Laboratory literature summary: Structure of nicotinamide mononucleotide adenylyltransferase: a key enzyme in NAD(+) biosynthesis. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  317. Matsuo M et al. (1998). Properties of the respiratory NAD(P)H dehydrogenase isolated from the cyanobacterium… [PMID: 9588024]

    Laboratory literature summary: Properties of the respiratory NAD(P)H dehydrogenase isolated from the cyanobacterium Synechocystis PCC6803. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  318. Sriskanda V et al. (2001). A second NAD(+)-dependent DNA ligase (LigB) in Escherichia coli [PMID: 11812821]

    Laboratory literature summary: A second NAD(+)-dependent DNA ligase (LigB) in Escherichia coli. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  319. Li M et al. (2020). Local Targeting of NAD(+) Salvage Pathway Alters the Immune oncology research models… [PMID: 32998997]

    Laboratory literature summary: Local Targeting of NAD(+) Salvage Pathway Alters the Immune oncology research models Microenvironment and Enhances Checkpoint…. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  320. Resto M et al. (2009). An ancestral glutamine-dependent NAD(+) synthetase revealed by poor kinetic synergism [PMID: 19647806]

    Laboratory literature summary: An ancestral glutamine-dependent NAD(+) synthetase revealed by poor kinetic synergism. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  321. Hegazy R et al. (2025). Enzyme Architecture: Activation of Phosphite Dehydrogenase-Catalyzed Hydride Transfer… [PMID: 41220039]

    Laboratory literature summary: Enzyme Architecture: Activation of Phosphite Dehydrogenase-Catalyzed Hydride Transfer by NAD(+) Cofactor Fragments. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  322. Kennedy BE et al. (2020). Targeting NAD(+) Synthesis to Potentiate CD38-Based Immunotherapy of Multiple Myeloma [PMID: 31952784]

    Laboratory literature summary: Targeting NAD(+) Synthesis to Potentiate CD38-Based Immunotherapy of Multiple Myeloma. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  323. Pandit A et al. (2015). Dunnione ameliorates cisplatin-induced small intestinal damage by modulating NAD(+)… [PMID: 26498527]

    Laboratory literature summary: Dunnione ameliorates cisplatin-induced small intestinal damage by modulating NAD(+) metabolism. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  324. Ventura C et al. (1988). Opioids stimulate sarcolemmal NAD(P)H-vanadate dehydrogenase activity [PMID: 2903734]

    Laboratory literature summary: Opioids stimulate sarcolemmal NAD(P)H-vanadate dehydrogenase activity. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  325. Rappou E et al. (2016). Body-composition research Is Associated With Increased NAD(+)/SIRT1 Expression But… [PMID: 26760174]

    Laboratory literature summary: body-composition research Is Associated With Increased NAD(+)/SIRT1 Expression But Reduced PARP Activity in White Adipose Tissue. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  326. Rangel-Porras RA et al. (2005). Molecular analysis of an NAD-dependent alcohol dehydrogenase from the zygomycete Mucor… [PMID: 16179992]

    Laboratory literature summary: Molecular analysis of an NAD-dependent alcohol dehydrogenase from the zygomycete Mucor circinelloides. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  327. Tummala KS et al. (2014). Inhibition of de novo NAD(+) synthesis by oncogenic URI causes liver tumorigenesis… [PMID: 25453901]

    Laboratory literature summary: Inhibition of de novo NAD(+) synthesis by oncogenic URI causes liver tumorigenesis through DNA damage. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  328. Suda Y et al. (2003). Saccharomyces cerevisiae QNS1 codes for NAD(+) synthetase that is functionally… [PMID: 12898714]

    Laboratory literature summary: Saccharomyces cerevisiae QNS1 codes for NAD(+) synthetase that is functionally conserved in mammals. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  329. Satoh MS et al. (1993). NAD(+)-dependent repair of damaged DNA by research subjects cell extracts [PMID: 7680646]

    Laboratory literature summary: NAD(+)-dependent repair of damaged DNA by research subjects cell extracts. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  330. Geiszt M et al. (2000). Identification of renox, an NAD(P)H oxidase in kidney [PMID: 10869423]

    Laboratory literature summary: Identification of renox, an NAD(P)H oxidase in kidney. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  331. Zdanovskaia MV et al. (2000). Diphtheria toxin NAD affinity and ADP ribosyltransferase activity are reduced at… [PMID: 11037133]

    Laboratory literature summary: Diphtheria toxin NAD affinity and ADP ribosyltransferase activity are reduced at tryptophan 153 substitutions for alanine or phenylalanine. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  332. Kaczmarek FS et al. (2001). Cloning and functional characterization of an NAD(+)-dependent DNA ligase from… [PMID: 11325928]

    Laboratory literature summary: Cloning and functional characterization of an NAD(+)-dependent DNA ligase from Staphylococcus aureus. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  333. Ye C et al. (2020). Targeting the NAD(+) salvage pathway suppresses APC mutation-driven colorectal… [PMID: 32005247]

    Laboratory literature summary: Targeting the NAD(+) salvage pathway suppresses APC mutation-driven colorectal oncology research models growth and Wnt/β-catenin…. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  334. Wang T et al. (2006). Structure of Nampt/PBEF/visfatin, a mammalian NAD+ biosynthetic enzyme [PMID: 16783373]

    Laboratory literature summary: Structure of Nampt/PBEF/visfatin, a mammalian NAD+ biosynthetic enzyme. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  335. Goody MF et al. (2010). Nrk2b-mediated NAD+ production regulates cell adhesion and is required for muscle… [PMID: 20566368]

    Laboratory literature summary: Nrk2b-mediated NAD+ production regulates cell adhesion and is required for muscle morphogenesis in vivo: Nrk2b and NAD+ in muscle…. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  336. Chakrabarty SP et al. (2008). Biochemical characterization of Plasmodium falciparum Sir2, a NAD+-dependent deacetylase [PMID: 18221799]

    Laboratory literature summary: Biochemical characterization of Plasmodium falciparum Sir2, a NAD+-dependent deacetylase. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  337. Zhang B et al. (2018). Silybin inhibits NLRP3 inflammasome assembly through the NAD(+)/SIRT2 pathway in mice… [PMID: 28970254]

    Laboratory literature summary: Silybin inhibits NLRP3 inflammasome assembly through the NAD(+)/SIRT2 pathway in mice with nonalcoholic fatty liver disease. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  338. Hancz D et al. (2017). Inhibition of Inflammasome-Dependent Interleukin 1β Production by Streptococcal… [PMID: 28720729]

    Laboratory literature summary: Inhibition of Inflammasome-Dependent Interleukin 1β Production by Streptococcal NAD(+)-Glycohydrolase: Evidence for Extracellular Activity. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  339. Guo J et al. (2017). Identification of novel resistance mechanisms to NAMPT inhibition via the de novo… [PMID: 28756225]

    Laboratory literature summary: Identification of novel resistance mechanisms to NAMPT inhibition via the de novo NAD(+) biosynthesis pathway and NAMPT mutation. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  340. Khan AU et al. (2002). Liposomal NAD(+) prevents diminished O(2) consumption by immunostimulated Caco-2 cells [PMID: 11943674]

    Laboratory literature summary: Liposomal NAD(+) prevents diminished O(2) consumption by immunostimulated Caco-2 cells. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  341. Huang YC et al. (1997). Identification of the subunits and target peptides of pig heart NAD-specific… [PMID: 9390193]

    Laboratory literature summary: Identification of the subunits and target peptides of pig heart NAD-specific isocitrate dehydrogenase modified by the affinity label…. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  342. Guo F et al. (2024). Amifostine ameliorates bleomycin-induced murine pulmonary fibrosis via… [PMID: 38245795]

    Laboratory literature summary: Amifostine ameliorates bleomycin-induced murine pulmonary fibrosis via NAD(+)/SIRT1/AMPK pathway-mediated effects on mitochondrial…. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  343. Zhao K et al. (2004). Structural basis for nicotinamide cleavage and ADP-ribose transfer by NAD(+)-dependent… [PMID: 15150415]

    Laboratory literature summary: Structural basis for nicotinamide cleavage and ADP-ribose transfer by NAD(+)-dependent Sir2 histone/protein deacetylases. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  344. Avalos JL et al. (2005). Mechanism of sirtuin inhibition by nicotinamide: altering the NAD(+) cosubstrate… [PMID: 15780941]

    Laboratory literature summary: Mechanism of sirtuin inhibition by nicotinamide: altering the NAD(+) cosubstrate specificity of a Sir2 enzyme. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  345. Miyamoto K et al. (1992). Possible physiological roles of aspartase, NAD- and NADP-requiring glutamate… [PMID: 1331036]

    Laboratory literature summary: Possible physiological roles of aspartase, NAD- and NADP-requiring glutamate dehydrogenases of Pseudomonas fluorescens. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  346. Kim H et al. (1991). Identification of peptides in the adenine ring binding domain of glutamate and lactate… [PMID: 1681910]

    Laboratory literature summary: Identification of peptides in the adenine ring binding domain of glutamate and lactate dehydrogenase using 2-azido-NAD+. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  347. Alano CC et al. (2007). Differences among cell types in NAD(+) compartmentalization: a comparison of neurons,… [PMID: 17853438]

    Laboratory literature summary: Differences among cell types in NAD(+) compartmentalization: a comparison of neurons, astrocytes, and cardiac myocytes. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  348. Mellott DM et al. (2026). Substrate Specificity and Kinetic Mechanism of the NAD(+)-Dependent Deacylase from… [PMID: 42441379]

    Laboratory literature summary: Substrate Specificity and Kinetic Mechanism of the NAD(+)-Dependent Deacylase from Mycobacterium tuberculosis, Rv1151c (Mt-Sirt). Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  349. Wang J et al. (2026). NMN Can Restore Ovarian Reserve in Aged Mice by Upregulating NAD(+)/SIRT1/PGC-1α… [PMID: 41951910]

    Laboratory literature summary: NMN Can Restore Ovarian Reserve in Aged Mice by Upregulating NAD(+)/SIRT1/PGC-1α Signaling Pathway and TOMM20 Expression, and Improve in…. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  350. Muller-Steffner HM et al. (1992). Slow-binding inhibition of NAD+ glycohydrolase by arabino analogues of beta-NAD [PMID: 1315761]

    Laboratory literature summary: Slow-binding inhibition of NAD+ glycohydrolase by arabino analogues of beta-NAD. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  351. Ruszkowski M et al. (2017). Structures of Medicago truncatula L-Histidinol Dehydrogenase Show Rearrangements… [PMID: 28874718]

    Laboratory literature summary: Structures of Medicago truncatula L-Histidinol Dehydrogenase Show Rearrangements Required for NAD(+) Binding and the Cofactor Positioned…. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  352. Papavasiliou SS et al. (1977). Thyroid hormonelike actions of 3,3',5'-L-triiodothyronine nad 3,3'-diiodothyronine [PMID: 199617]

    Laboratory literature summary: Thyroid hormonelike actions of 3,3',5'-L-triiodothyronine nad 3,3'-diiodothyronine. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  353. Suaste V et al. (2026). Transcriptional Profiling Shows Dampening of Interferon Gene Signatures by NAD(+)… [PMID: 42449929]

    Laboratory literature summary: Transcriptional Profiling Shows Dampening of Interferon Gene Signatures by NAD(+) Augmentation in Ataxia-Telangiectasia. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  354. Barber MJ et al. (1997). Direct electrochemistry of the flavin domain of assimilatory nitrate reductase:… [PMID: 9281315]

    Laboratory literature summary: Direct electrochemistry of the flavin domain of assimilatory nitrate reductase: effects of NAD+ and NAD+ analogs. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  355. Finazzi-Agrò A et al. (1981). Evidence for binding of NAD dimers to NAD-dependent dehydrogenases [PMID: 7028119]

    Laboratory literature summary: Evidence for binding of NAD dimers to NAD-dependent dehydrogenases. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  356. Huwaimel B et al. (2025). Laboratory research record on NAD+ [PMID: 41470091]

    PubMed laboratory record discussing NAD+ in a research context. Review the full methods and limitations on PubMed; research use only.

  357. Symersky J et al. (2002). NH3-dependent NAD+ synthetase from Bacillus subtilis at 1 A resolution [PMID: 12077433]

    Laboratory literature summary: NH3-dependent NAD+ synthetase from Bacillus subtilis at 1 A resolution. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  358. Hipkiss AR (2010). NAD(+) and metabolic regulation of age-related proteoxicity: A possible role for… [PMID: 20226237]

    Laboratory literature summary: NAD(+) and metabolic regulation of age-related proteoxicity: A possible role for methylglyoxal?. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  359. Chen C et al. (2026). Nicotinamide Ameliorates Deoxynivalenol-Induced Injury in Renal Cells via Inhibiting… [PMID: 42188629]

    Laboratory literature summary: Nicotinamide Ameliorates Deoxynivalenol-Induced Injury in Renal Cells via Inhibiting PARP1 Hyperactivation and Restoring NAD(+) Homeostasis. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  360. Zappelli P et al. (1975). Synthesis of coenzymically active soluble and insoluble macromolecularized NAD+… [PMID: 170091]

    Laboratory literature summary: Synthesis of coenzymically active soluble and insoluble macromolecularized NAD+ derivatives. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  361. Phadke M et al. (2015). Disruption of NAD(+) binding site in glyceraldehyde 3-phosphate dehydrogenase affects… [PMID: 26629320]

    Laboratory literature summary: Disruption of NAD(+) binding site in glyceraldehyde 3-phosphate dehydrogenase affects its intranuclear interactions. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  362. Anderson JM et al. (1978). Calcium-dependent regulation of NAD kinase [PMID: 214081]

    Laboratory literature summary: Calcium-dependent regulation of NAD kinase. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  363. Jing R et al. (2018). A Screen Using iPSC-Derived Hepatocytes Reveals NAD(+) as a Potential investigation… [PMID: 30404003]

    Laboratory literature summary: A Screen Using iPSC-Derived Hepatocytes Reveals NAD(+) as a Potential investigation for mtDNA Depletion Syndrome. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  364. Galloway TS et al. (1987). Photolabelling of cholera toxin by NAD+ [PMID: 3593286]

    Laboratory literature summary: Photolabelling of cholera toxin by NAD+. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  365. Khadka D et al. (2018). Augmentation of NAD(+) levels by enzymatic action of NAD(P)H quinone oxidoreductase 1… [PMID: 30291911]

    Laboratory literature summary: Augmentation of NAD(+) levels by enzymatic action of NAD(P)H quinone oxidoreductase 1 attenuates adriamycin-induced cardiac dysfunction…. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  366. Sorrentino L et al. (2015). Key Role of the Adenylate Moiety and Integrity of the Adenylate-Binding Site for the… [PMID: 26535916]

    Laboratory literature summary: Key Role of the Adenylate Moiety and Integrity of the Adenylate-Binding Site for the NAD(+)/H Binding to Mitochondrial…. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  367. Kang TS et al. (2024). YZL-51N functions as a selective inhibitor of SIRT7 by NAD(+) competition to impede… [PMID: 38947512]

    Laboratory literature summary: YZL-51N functions as a selective inhibitor of SIRT7 by NAD(+) competition to impede DNA damage repair. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  368. Ondracek CR et al. (2017). Mutations that Allow SIR2 Orthologs to Function in a NAD(+)-Depleted Environment [PMID: 28273448]

    Laboratory literature summary: Mutations that Allow SIR2 Orthologs to Function in a NAD(+)-Depleted Environment. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  369. Weng B et al. (1999). Modification of the ADP-ribosyltransferase and NAD glycohydrolase activities of a… [PMID: 10542202]

    Laboratory literature summary: Modification of the ADP-ribosyltransferase and NAD glycohydrolase activities of a mammalian transferase (ADP-ribosyltransferase 5) by…. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  370. Qin K et al. (2017). NAD(+) dependent deacetylase Sirtuin 5 rescues the innate inflammatory response of… [PMID: 28461090]

    Laboratory literature summary: NAD(+) dependent deacetylase Sirtuin 5 rescues the innate inflammatory response of endotoxin tolerant macrophages by promoting…. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  371. Woehle DL et al. (1990). ATP-dependent and NAD-dependent modification of glutamine synthetase from… [PMID: 1974253]

    Laboratory literature summary: ATP-dependent and NAD-dependent modification of glutamine synthetase from Rhodospirillum rubrum in vitro. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  372. Khodaverdian S et al. (2021). CD38 and MGluR1 as possible signaling molecules involved in epileptogenesis: A… [PMID: 33930374]

    Laboratory literature summary: CD38 and MGluR1 as possible signaling molecules involved in epileptogenesis: A potential role for NAD(+) homeostasis. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  373. Mumford PW et al. (2020). A Theacrine-Based Supplement Increases Cellular NAD(+) Levels and Affects Biomarkers… [PMID: 33287129]

    Laboratory literature summary: A Theacrine-Based Supplement Increases Cellular NAD(+) Levels and Affects Biomarkers Related to Sirtuin Activity in C2C12 Muscle Cells…. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  374. Song TY et al. (2015). A Nampt inhibitor FK866 mimics vitamin B3 deficiency by causing senescence of research… [PMID: 26330291]

    Laboratory literature summary: A Nampt inhibitor FK866 mimics vitamin B3 deficiency by causing senescence of research subjects fibroblastic Hs68 cells via attenuation…. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  375. Rafaeloff-Phail R et al. (2004). Biochemical regulation of mammalian AMP-activated protein kinase activity by NAD and NADH [PMID: 15465812]

    Laboratory literature summary: Biochemical regulation of mammalian AMP-activated protein kinase activity by NAD and NADH. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  376. Cea M et al. (2016). Exploiting oncology research models vulnerabilities: NAD(+)-depleting agents combined… [PMID: 27433930]

    Laboratory literature summary: Exploiting oncology research models vulnerabilities: NAD(+)-depleting agents combined with anti-oncology research models drugs as…. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  377. Bonnac L et al. (2007). Probing binding requirements of NAD kinase with modified substrate (NAD) analogues [PMID: 17258457]

    Laboratory literature summary: Probing binding requirements of NAD kinase with modified substrate (NAD) analogues. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  378. Pang J et al. (2013). Relative quantitative comparison between lipotoxicity and glucotoxicity affecting the… [PMID: 24080825]

    Laboratory literature summary: Relative quantitative comparison between lipotoxicity and glucotoxicity affecting the PARP-NAD-SIRT1 pathway in hepatocytes. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  379. Li H et al. (2025). CircABHD2 Inhibits Malignant Progression of Endometrial oncology research models by… [PMID: 38951482]

    Laboratory literature summary: CircABHD2 Inhibits Malignant Progression of Endometrial oncology research models by Regulating NAD(+)/NAMPT Metabolism Axis. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  380. Nakahata Y et al. (2009). Circadian control of the NAD+ salvage pathway by CLOCK-SIRT1 [PMID: 19286518]

    Laboratory literature summary: Circadian control of the NAD+ salvage pathway by CLOCK-SIRT1. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  381. Yang Y et al. (2010). NAD+-dependent deacetylase SIRT3 regulates mitochondrial protein synthesis by… [PMID: 20042612]

    Laboratory literature summary: NAD+-dependent deacetylase SIRT3 regulates mitochondrial protein synthesis by deacetylation of the ribosomal protein MRPL10. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  382. Luna A et al. (2015). Predicted Role of NAD Utilization in the Control of Circadian Rhythms during DNA… [PMID: 26020938]

    Laboratory literature summary: Predicted Role of NAD Utilization in the Control of Circadian Rhythms during DNA Damage Response. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  383. Schibler U (2020). Senescence of Timing Reverted: NAD(+) Rejuvenates the Circadian Clock [PMID: 32502419]

    Laboratory literature summary: Senescence of Timing Reverted: NAD(+) Rejuvenates the Circadian Clock. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  384. Lin AP et al. (2003). Homologous binding sites in yeast isocitrate dehydrogenase for cofactor (NAD+) and… [PMID: 12562755]

    Laboratory literature summary: Homologous binding sites in yeast isocitrate dehydrogenase for cofactor (NAD+) and allosteric activator (AMP). Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  385. Chen H et al. (2016). Coenzyme Engineering of a Hyperthermophilic 6-Phosphogluconate Dehydrogenase from… [PMID: 27805055]

    Laboratory literature summary: Coenzyme Engineering of a Hyperthermophilic 6-Phosphogluconate Dehydrogenase from NADP(+) to NAD(+) with Its Application to Biobatteries. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  386. Çakar MM et al. (2018). Discovery of a new metal and NAD(+)-dependent formate dehydrogenase from Clostridium… [PMID: 29504829]

    Laboratory literature summary: Discovery of a new metal and NAD(+)-dependent formate dehydrogenase from Clostridium ljungdahlii. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  387. Papini E et al. (1989). Histidine 21 is at the NAD+ binding site of diphtheria toxin [PMID: 2526125]

    Laboratory literature summary: Histidine 21 is at the NAD+ binding site of diphtheria toxin. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  388. Zhang S et al. (2025). Novel Carbamate-Based o-aminobenzamide Derivatives as Potent Antigastric Carcinoma… [PMID: 40448666]

    Laboratory literature summary: Novel Carbamate-Based o-aminobenzamide Derivatives as Potent Antigastric Carcinoma Agents via Disrupting NAD(+) Salvage Synthesis. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  389. Neuburger M et al. (1985). Transport of NAD in Percoll-Purified Potato Tuber Mitochondria: Inhibition of NAD… [PMID: 16664254]

    Laboratory literature summary: Transport of NAD in Percoll-Purified Potato Tuber Mitochondria: Inhibition of NAD Influx and Efflux by…. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  390. Poncet-Montange G et al. (2007). NAD kinases use substrate-assisted catalysis for specific recognition of NAD [PMID: 17686780]

    Laboratory literature summary: NAD kinases use substrate-assisted catalysis for specific recognition of NAD. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  391. Harmon AC et al. (1984). An enzymatic assay for calmodulins based on plant NAD kinase activity [PMID: 6093619]

    Laboratory literature summary: An enzymatic assay for calmodulins based on plant NAD kinase activity. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  392. Romanello M et al. (2001). Extracellular NAD(+) induces calcium signaling and apoptosis in research subjects… [PMID: 11478787]

    Laboratory literature summary: Extracellular NAD(+) induces calcium signaling and apoptosis in research subjects osteoblastic cells. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  393. Wolff EC et al. (1990). Cleavage of spermidine as the first step in deoxyhypusine synthesis. The role of NAD [PMID: 2108161]

    Laboratory literature summary: Cleavage of spermidine as the first step in deoxyhypusine synthesis. The role of NAD. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  394. Mei SC et al. (2013). NAD as a genotype-specific drug target [PMID: 24267273]

    Laboratory literature summary: NAD as a genotype-specific drug target. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  395. Rutter J et al. (2001). Regulation of clock and NPAS2 DNA binding by the redox state of NAD cofactors [PMID: 11441146]

    Laboratory literature summary: Regulation of clock and NPAS2 DNA binding by the redox state of NAD cofactors. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  396. Gerhart-Hines Z et al. (2011). The cAMP/PKA pathway rapidly activates SIRT1 to promote fatty acid oxidation… [PMID: 22195961]

    Laboratory literature summary: The cAMP/PKA pathway rapidly activates SIRT1 to promote fatty acid oxidation independently of changes in NAD(+). Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  397. Patel H et al. (2005). NAD- and NADP-dependent mitochondrially targeted methylenetetrahydrofolate… [PMID: 16150419]

    Laboratory literature summary: NAD- and NADP-dependent mitochondrially targeted methylenetetrahydrofolate dehydrogenase-cyclohydrolases can rescue mthfd2 null fibroblasts. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  398. Higurashi M et al. (2025). Respiratory complex I-mediated NAD(+) regeneration regulates oncology research models… [PMID: 39873399]

    Laboratory literature summary: Respiratory complex I-mediated NAD(+) regeneration regulates oncology research models cell proliferation through the transcriptional and…. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  399. Plapp BV et al. (2012). Atomic-resolution structures of horse liver alcohol dehydrogenase with NAD(+) and… [PMID: 22531044]

    Laboratory literature summary: Atomic-resolution structures of horse liver alcohol dehydrogenase with NAD(+) and fluoroalcohols define strained Michaelis complexes. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  400. Jung M et al. (1993). NAD-binding site of the C3-like ADP-ribosyltransferase from Clostridium limosum [PMID: 8226842]

    Laboratory literature summary: NAD-binding site of the C3-like ADP-ribosyltransferase from Clostridium limosum. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  401. Zhao FL et al. (2025). Tan I modulates astrocyte inflammatory responses through enhanced NAD(+)-Sirt1… [PMID: 40024217]

    Laboratory literature summary: Tan I modulates astrocyte inflammatory responses through enhanced NAD(+)-Sirt1 pathway: Insights from metabolomics studies. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  402. Barbieri JT et al. (1989). Photolabeling of Glu-129 of the S-1 subunit of pertussis toxin with NAD [PMID: 2807535]

    Laboratory literature summary: Photolabeling of Glu-129 of the S-1 subunit of pertussis toxin with NAD. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  403. Marin P et al. (1995). Oxygen free radicals enhance the nitric oxide-induced covalent NAD(+)-linkage to… [PMID: 7639707]

    Laboratory literature summary: Oxygen free radicals enhance the nitric oxide-induced covalent NAD(+)-linkage to neuronal glyceraldehyde-3-phosphate dehydrogenase. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  404. Trepel JB et al. (1977). Transfer of ADP-ribose from NAD to choleragen: a subunit acts as catalyst and acceptor… [PMID: 202956]

    Laboratory literature summary: Transfer of ADP-ribose from NAD to choleragen: a subunit acts as catalyst and acceptor protein. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  405. Broetto-Biazon AC et al. (2008). Transformation products of extracellular NAD(+) in the rat liver: kinetics of… [PMID: 17846864]

    Laboratory literature summary: Transformation products of extracellular NAD(+) in the rat liver: kinetics of formation and metabolic action. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  406. Son MJ et al. (2016). Restoration of Mitochondrial NAD(+) Levels Delays Stem Cell Senescence and Facilitates… [PMID: 27428041]

    Laboratory literature summary: Restoration of Mitochondrial NAD(+) Levels Delays Stem Cell Senescence and Facilitates Reprogramming of Aged Somatic Cells. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  407. Silveira SC et al. (2020). A decrease in NAMPT activity impairs basal PARP-1 activity in cytidine deaminase… [PMID: 32807821]

    Laboratory literature summary: A decrease in NAMPT activity impairs basal PARP-1 activity in cytidine deaminase deficient-cells, independently of NAD(). Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  408. Harasim-Krawcewicz G et al. (2026). NAD(+) Enhancer Nicotinamide Riboside Alters Extracellular Purine Metabolism in… [PMID: 41977445]

    Laboratory literature summary: NAD(+) Enhancer Nicotinamide Riboside Alters Extracellular Purine Metabolism in research subjects Endothelial Cells. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  409. Holley EA et al. (1985). Regulation of NAD biosynthesis in Salmonella typhimurium: expression of nad-lac gene… [PMID: 3934331]

    Laboratory literature summary: Regulation of NAD biosynthesis in Salmonella typhimurium: expression of nad-lac gene fusions and identification of a nad regulatory locus. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  410. Mederacke I et al. (2014). NAD(+) supplementation as a novel approach to cURIng HCC? [PMID: 25490440]

    Laboratory literature summary: NAD(+) supplementation as a novel approach to cURIng HCC?. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  411. Malver O et al. (2014). Alteration in substrate specificity of horse liver alcohol dehydrogenase by an acyclic… [PMID: 25280628]

    Laboratory literature summary: Alteration in substrate specificity of horse liver alcohol dehydrogenase by an acyclic nicotinamide analog of NAD(+). Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  412. Kwak MK et al. (2014). NAD(+)-linked alcohol dehydrogenase 1 regulates methylglyoxal concentration in Candida… [PMID: 24607541]

    Laboratory literature summary: NAD(+)-linked alcohol dehydrogenase 1 regulates methylglyoxal concentration in Candida albicans. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  413. Elzinga SD et al. (1993). Yeast mitochondrial NAD(+)-dependent isocitrate dehydrogenase is an RNA-binding protein [PMID: 7505425]

    Laboratory literature summary: Yeast mitochondrial NAD(+)-dependent isocitrate dehydrogenase is an RNA-binding protein. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  414. Ghosh J et al. (2006). Specificity of Streptococcus pyogenes NAD(+) glycohydrolase in cytolysin-mediated… [PMID: 17042787]

    Laboratory literature summary: Specificity of Streptococcus pyogenes NAD(+) glycohydrolase in cytolysin-mediated translocation. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  415. Veigl ML et al. (1980). Investigation of calmodulin-regulated NAD kinase in proliferating fibroblasts [PMID: 6263162]

    Laboratory literature summary: Investigation of calmodulin-regulated NAD kinase in proliferating fibroblasts. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  416. Dou QP et al. (1990). Characterization and reconstitution of a cell free system for NAD(+)-dependent… [PMID: 2121277]

    Laboratory literature summary: Characterization and reconstitution of a cell free system for NAD(+)-dependent deoxyhypusine formation on the 18 kDa eIF-4D precursor. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  417. Chen S et al. (1977). Arylazido-beta-alanine NAD+, and NAD+ photoaffinity analogue. Preparation and properties [PMID: 200624]

    Laboratory literature summary: Arylazido-beta-alanine NAD+, and NAD+ photoaffinity analogue. Preparation and properties. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  418. Chen PL et al. (1994). An 125I-labeled N6-substituted azido analog of NAD+ for the photoaffinity labeling of… [PMID: 7800717]

    Laboratory literature summary: An 125I-labeled N6-substituted azido analog of NAD+ for the photoaffinity labeling of NAD(+)-linked enzymes. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  419. Fang Y et al. (2026). Disinfectant quaternary ammonium compounds hijack the NAMPT-NAD⁺ axis to impair… [PMID: 42258953]

    Laboratory literature summary: Disinfectant quaternary ammonium compounds hijack the NAMPT-NAD⁺ axis to impair trophoblast function. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  420. Wang T et al. (2008). Polyubiquitylation of PARP-1 through ubiquitin K48 is modulated by activated DNA,… [PMID: 18041763]

    Laboratory literature summary: Polyubiquitylation of PARP-1 through ubiquitin K48 is modulated by activated DNA, NAD+, and dipeptides. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  421. Hasegawa T et al. (2019). Homologous role of CovRS two-component regulatory system in NAD(+) -glycohydrolase… [PMID: 30698306]

    Laboratory literature summary: Homologous role of CovRS two-component regulatory system in NAD(+) -glycohydrolase activity in Streptococcus dysgalactiae subsp.…. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  422. Zhang M et al. (2019). NAD(+) repletion inhibits the endothelial-to-mesenchymal transition induced by TGF-β… [PMID: 31626975]

    Laboratory literature summary: NAD(+) repletion inhibits the endothelial-to-mesenchymal transition induced by TGF-β in endothelial cells through improving…. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  423. Zhang Q et al. (2000). Research subjects lymphocyte-specific protein 1, the protein overexpressed in… [PMID: 10925289]

    Laboratory literature summary: research subjects lymphocyte-specific protein 1, the protein overexpressed in neutrophil actin dysfunction with 47-kDa and 89-kDa…. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  424. Lightowlers RN et al. (2014). Salvaging hope: Is increasing NAD(+) a key to investigating mitochondrial myopathy? [PMID: 24838280]

    Laboratory literature summary: Salvaging hope: Is increasing NAD(+) a key to investigating mitochondrial myopathy?. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  425. Chavan AJ et al. (1993). Photoaffinity labeling of research subjects placental NAD(+)-linked… [PMID: 8344929]

    Laboratory literature summary: Photoaffinity labeling of research subjects placental NAD(+)-linked 15-hydroxyprostaglandin dehydrogenase with [alpha-32P]2N3NAD+.…. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  426. Ehrlich RS et al. (1992). Selectivity in the binding of NAD(P)+ analogues to NAD- and NADP-dependent pig heart… [PMID: 1463739]

    Laboratory literature summary: Selectivity in the binding of NAD(P)+ analogues to NAD- and NADP-dependent pig heart isocitrate dehydrogenases. A nuclear magnetic…. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  427. Stephan C et al. (2000). Evidence for the existence of two soluble NAD(+) kinase isoenzymes in Euglena gracilis Z [PMID: 10940642]

    Laboratory literature summary: Evidence for the existence of two soluble NAD(+) kinase isoenzymes in Euglena gracilis Z. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  428. Carroll SF et al. (1984). NAD binding site of diphtheria toxin: identification of a residue within the… [PMID: 6145155]

    Laboratory literature summary: NAD binding site of diphtheria toxin: identification of a residue within the nicotinamide subsite by photochemical modification with NAD. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  429. Mosbach K (1974). AMP and NAD as "General Ligands" [PMID: 4375744]

    Laboratory literature summary: AMP and NAD as "General Ligands". Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  430. Guérin MC et al. (1982). [Affinity chromatography of NAD(P)+ dehydrogenases dependent on the concentration of… [PMID: 7126686]

    Laboratory literature summary: [Affinity chromatography of NAD(P)+ dehydrogenases dependent on the concentration of NAD(P)+ bound to ketones or aldehydes]. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  431. Han K et al. (2026). NAD+ augmentation by nicotinamide riboside engages SLIT2/ROBO1 signaling to attenuate… [PMID: 42048163]

    Laboratory literature summary: NAD+ augmentation by nicotinamide riboside engages SLIT2/ROBO1 signaling to attenuate Th17 inflammation in psoriasis. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  432. Roberts DM et al. (1986). Trimethyllysine and protein function. Effect of methylation and mutagenesis of lysine… [PMID: 3003072]

    Laboratory literature summary: Trimethyllysine and protein function. Effect of methylation and mutagenesis of lysine 115 of calmodulin on NAD kinase activation. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  433. Becker S et al. (1996). Photoaffinity labelling of lactate dehydrogenase from pig heart with a bifunctional… [PMID: 8620041]

    Laboratory literature summary: Photoaffinity labelling of lactate dehydrogenase from pig heart with a bifunctional NAD(+)-analogue. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  434. Trad CH et al. (1993). Identification and characterization of a nucleotide binding site of ovine prolactin… [PMID: 8323298]

    Laboratory literature summary: Identification and characterization of a nucleotide binding site of ovine prolactin with 2-azido-NAD. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  435. Woenckhaus C et al. (1990). Photoaffinity labeling of lactate dehydrogenase by the bis-azido analog of… [PMID: 2291768]

    Laboratory literature summary: Photoaffinity labeling of lactate dehydrogenase by the bis-azido analog of…. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  436. Lehn C et al. (1992). Stabilization of NAD(+)-dependent dehydrogenases and diaphorase by bilayer encagement [PMID: 1368807]

    Laboratory literature summary: Stabilization of NAD(+)-dependent dehydrogenases and diaphorase by bilayer encagement. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  437. Meyer-Gauen G et al. (1994). Molecular characterization of a novel, nuclear-encoded, NAD(+)-dependent… [PMID: 7811973]

    Laboratory literature summary: Molecular characterization of a novel, nuclear-encoded, NAD(+)-dependent glyceraldehyde-3-phosphate dehydrogenase in plastids of the…. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  438. Bell CE et al. (1997). Unusual conformation of nicotinamide adenine dinucleotide (NAD) bound to diphtheria… [PMID: 9336832]

    Laboratory literature summary: Unusual conformation of nicotinamide adenine dinucleotide (NAD) bound to diphtheria toxin: a comparison with NAD bound to the…. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  439. Kim UH et al. (1993). Function of NAD glycohydrolase in ADP-ribose uptake from NAD by research subjects… [PMID: 8394137]

    Laboratory literature summary: Function of NAD glycohydrolase in ADP-ribose uptake from NAD by research subjects erythrocytes. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  440. Umland TC et al. (2004). A new crystal structure of deoxyhypusine synthase reveals the configuration of the… [PMID: 15100216]

    Laboratory literature summary: A new crystal structure of deoxyhypusine synthase reveals the configuration of the active enzyme and of an enzyme.NAD.inhibitor ternary…. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  441. Cho H et al. (2002). Threonine 11 of research subjects NAD(+)-dependent 15-hydroxyprostaglandin… [PMID: 12144871]

    Laboratory literature summary: Threonine 11 of research subjects NAD(+)-dependent 15-hydroxyprostaglandin dehydrogenase may interact with NAD(+) during catalysis. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  442. Okada H et al. (1987). Polymerizable NAD derivative and model enzyme reactor with recycling of polyethylene… [PMID: 3683195]

    Laboratory literature summary: Polymerizable NAD derivative and model enzyme reactor with recycling of polyethylene glycol-bound NAD. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  443. Pareja-Galeano H et al. (2014). P16INK4a, NAD(+), and sestrins: new targets for combating aging-related chronic illness? [PMID: 24664908]

    Laboratory literature summary: p16INK4a, NAD(+), and sestrins: new targets for combating aging-related chronic illness?. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  444. Huang YC et al. (2000). Affinity cleavage at the divalent metal site of porcine NAD-specific isocitrate… [PMID: 10739252]

    Laboratory literature summary: Affinity cleavage at the divalent metal site of porcine NAD-specific isocitrate dehydrogenase. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  445. Meijer L et al. (1982). Activation of calmodulin-dependent NAD+ kinase by trypsin [PMID: 6279162]

    Laboratory literature summary: Activation of calmodulin-dependent NAD+ kinase by trypsin. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  446. Norin A et al. (2003). Nicotinoprotein (NAD+ -containing) alcohol dehydrogenase: structural relationships and… [PMID: 12827287]

    Laboratory literature summary: Nicotinoprotein (NAD+ -containing) alcohol dehydrogenase: structural relationships and functional interpretations. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  447. Asanagi M et al. (2016). Tributyltin induces G2/M cell cycle arrest via NAD(+)-dependent isocitrate… [PMID: 26961604]

    Laboratory literature summary: Tributyltin induces G2/M cell cycle arrest via NAD(+)-dependent isocitrate dehydrogenase in research subjects embryonic carcinoma cells. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  448. Nango E et al. (2009). Crystal structure of 3-isopropylmalate dehydrogenase in complex with NAD(+) and a… [PMID: 19833522]

    Laboratory literature summary: Crystal structure of 3-isopropylmalate dehydrogenase in complex with NAD(+) and a designed inhibitor. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  449. Carroll SF et al. (1985). Photoaffinity labeling of diphtheria toxin fragment A with NAD: structure of the… [PMID: 3864158]

    Laboratory literature summary: Photoaffinity labeling of diphtheria toxin fragment A with NAD: structure of the photoproduct at position 148. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  450. Pankiewicz KW et al. (2002). The chemistry of nicotinamide adenine dinucleotide (NAD) analogues containing… [PMID: 11966436]

    Laboratory literature summary: The chemistry of nicotinamide adenine dinucleotide (NAD) analogues containing C-nucleosides related to nicotinamide riboside. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  451. Hallé F et al. (2018). Emissive Synthetic Cofactors: Enzymatic Interconversions of (tz) A Analogues of ATP,… [PMID: 29228460]

    Laboratory literature summary: Emissive Synthetic Cofactors: Enzymatic Interconversions of (tz) A Analogues of ATP, NAD(+), NADH, NADP(+), and NADPH. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  452. Lesot P et al. (2012). Analytical contribution of NAD 2D-NMR spectroscopy in polypeptide mesophases to the… [PMID: 23280656]

    Laboratory literature summary: Analytical contribution of NAD 2D-NMR spectroscopy in polypeptide mesophases to the investigation of triglycerides. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  453. Iseki S (1987). Incorporation of NAD into fixed cell nuclei [PMID: 2439213]

    Laboratory literature summary: Incorporation of NAD into fixed cell nuclei. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  454. Karasawa T et al. (1995). NAD(+)-glycohydrolase from Streptococcus pyogenes shows cyclic ADP-ribose forming activity [PMID: 7649441]

    Laboratory literature summary: NAD(+)-glycohydrolase from Streptococcus pyogenes shows cyclic ADP-ribose forming activity. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  455. Papini E et al. (1991). Tyrosine 65 is photolabeled by 8-azidoadenine and 8-azidoadenosine at the NAD binding… [PMID: 1990001]

    Laboratory literature summary: Tyrosine 65 is photolabeled by 8-azidoadenine and 8-azidoadenosine at the NAD binding site of diphtheria toxin. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  456. Katada T et al. (1995). [Novel NAD(+)-cleavage enzymes possibly involved in signal transduction system] [PMID: 8524995]

    Laboratory literature summary: [Novel NAD(+)-cleavage enzymes possibly involved in signal transduction system]. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  457. Schwartz JP et al. (1974). The effect of growth conditions on NAD+ and NADH concentrations and the NAD+:NADH… [PMID: 4369293]

    Laboratory literature summary: The effect of growth conditions on NAD+ and NADH concentrations and the NAD+:NADH ratio in normal and transformed fibroblasts. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  458. Cocomazzi P et al. (2021). Ligand Binding in Allosteric Flavoproteins: Part 1. Quantitative Analysis of the… [PMID: 33751435]

    Laboratory literature summary: Ligand Binding in Allosteric Flavoproteins: Part 1. Quantitative Analysis of the Interaction with NAD(+) of the Apoptosis Inducing…. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  459. Otani T et al. (2006). Levels of NAD(+)-dependent 15-hydroxyprostaglandin dehydrogenase are reduced in… [PMID: 16195422]

    Laboratory literature summary: Levels of NAD(+)-dependent 15-hydroxyprostaglandin dehydrogenase are reduced in inflammatory bowel disease: evidence for involvement of…. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  460. Furukawa S et al. (1981). Inhibition of lactate dehydrogenase activity by polymeric NAD derivatives with… [PMID: 7011800]

    Laboratory literature summary: Inhibition of lactate dehydrogenase activity by polymeric NAD derivatives with different NAD densities. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  461. Ho C et al. (2009). SIRT1 markedly extends replicative lifespan if the NAD+ salvage pathway is enhanced [PMID: 19716821]

    Laboratory literature summary: SIRT1 markedly extends replicative lifespan if the NAD+ salvage pathway is enhanced. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  462. O'Carra P et al. (1996). Further studies on the bioaffinity chromatography of NAD(+)-dependent dehydrogenases… [PMID: 8917627]

    Laboratory literature summary: Further studies on the bioaffinity chromatography of NAD(+)-dependent dehydrogenases using the locking-on effect. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  463. Kun E et al. (1976). Covalent modification of proteins by metabolites of NAD+ [PMID: 184462]

    Laboratory literature summary: Covalent modification of proteins by metabolites of NAD+. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  464. Strickland WN et al. (1971). The amino acid composition and some properties of the NAD + -specific glutamate… [PMID: 4399934]

    Laboratory literature summary: The amino acid composition and some properties of the NAD + -specific glutamate dehydrogenase from Neurospora crassa. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  465. Okita JR et al. (1992). Changes in ovarian NAD(+)-dependent 15-hydroxyprostaglandin dehydrogenase activity in… [PMID: 1502256]

    Laboratory literature summary: Changes in ovarian NAD(+)-dependent 15-hydroxyprostaglandin dehydrogenase activity in developmental research context and pseudopregnant…. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  466. Rissiek B et al. (2018). Monitoring the Sensitivity of T Cell Populations Towards NAD(+) Released During Cell… [PMID: 30097878]

    Laboratory literature summary: Monitoring the Sensitivity of T Cell Populations Towards NAD(+) Released During Cell Preparation. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  467. Woenckhaus C et al. (1979). Affinity labelling of yeast and liver alcohol dehydrogenases with the NAD analogue… [PMID: 220046]

    Laboratory literature summary: Affinity labelling of yeast and liver alcohol dehydrogenases with the NAD analogue 4-(3-bromoacetylpyridinio)butyldiphosphoadenosine. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  468. Lyn D et al. (1993). The polymorphic ADP-ribosyltransferase (NAD+) pseudogene 1 in research subjects… [PMID: 7904581]

    Laboratory literature summary: The polymorphic ADP-ribosyltransferase (NAD+) pseudogene 1 in research subjects interrupts an endogenous pol-like element on 13q34. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  469. Bogdanova AV et al. (1990). Mapping of the immunodominant regions of the NAD-dependent formate dehydrogenase [PMID: 1688814]

    Laboratory literature summary: Mapping of the immunodominant regions of the NAD-dependent formate dehydrogenase. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  470. Chen F et al. (1998). Purification and characterization of an NAD-malic enzyme from Bradyrhizobium japonicum… [PMID: 9758846]

    Laboratory literature summary: Purification and characterization of an NAD-malic enzyme from Bradyrhizobium japonicum A1017. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  471. Marques-da-Silva AC et al. (1997). Ca2+ dependence of gluconeogenesis stimulation by glucagon at different cytosolic… [PMID: 9361705]

    Laboratory literature summary: Ca2+ dependence of gluconeogenesis stimulation by glucagon at different cytosolic NAD(+)-NADH redox potentials. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  472. Plaut GW et al. (1979). Cosubstrate and allosteric modifier activities of structural analogues of NAD and ADP… [PMID: 223632]

    Laboratory literature summary: Cosubstrate and allosteric modifier activities of structural analogues of NAD and ADP for NAD-specific isocitrate dehydrogenase from…. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  473. Khan AN et al. (2005). Unstructured conformations are a substrate requirement for the Sir2 family of… [PMID: 16131486]

    Laboratory literature summary: Unstructured conformations are a substrate requirement for the Sir2 family of NAD-dependent protein deacetylases. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  474. Gill DM et al. (1974). Modification of diphtheria toxin by NAD [PMID: 4371004]

    Laboratory literature summary: Modification of diphtheria toxin by NAD. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  475. Jarrett HW et al. (1980). Plant calmodulin and the regulation of NAD kinase [PMID: 6263144]

    Laboratory literature summary: Plant calmodulin and the regulation of NAD kinase. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  476. Panza JL et al. (2002). Fluorinated NAD as an affinity surfactant [PMID: 12123052]

    Laboratory literature summary: Fluorinated NAD as an affinity surfactant. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  477. Ishidoh K et al. (2010). Quinolinate phosphoribosyl transferase, a key enzyme in de novo NAD(+) synthesis,… [PMID: 20206212]

    Laboratory literature summary: Quinolinate phosphoribosyl transferase, a key enzyme in de novo NAD(+) synthesis, suppresses spontaneous cell death by inhibiting…. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  478. Ohno A et al. (2000). NAD(P)+-NAD(P)H models. 90. Stereoselection controlled by electronic effect of a… [PMID: 11052079]

    Laboratory literature summary: NAD(P)+-NAD(P)H models. 90. Stereoselection controlled by electronic effect of a carbonyl group in oxidation of NAD(P)H analog. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  479. Goor RS et al. (1967). Studies on the mode of action of diphtheria toxin. IV. Specificity of the cofactor… [PMID: 4294108]

    Laboratory literature summary: Studies on the mode of action of diphtheria toxin. IV. Specificity of the cofactor (NAD) requirement for toxin action in cell-free systems. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  480. Ohno A et al. (2001). Nad(p)(+)-nad(p)h models. 90. stereoselection controlled by electronic effect of a… [PMID: 11262149]

    Laboratory literature summary: Nad(p)(+)-nad(p)h models. 90. stereoselection controlled by electronic effect of a carbonyl group in oxidation of nad(p)h analog. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  481. Crétin C et al. (1990). Primary structure of sorghum malate dehydrogenase (NADP) deduced from cDNA sequence.… [PMID: 2209586]

    Laboratory literature summary: Primary structure of sorghum malate dehydrogenase (NADP) deduced from cDNA sequence. Homology with malate dehydrogenase (NAD). Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  482. Shinohara Y et al. (2001). Expression of NAD(+)-dependent isocitrate dehydrogenase in brown adipose tissue [PMID: 11237704]

    Laboratory literature summary: Expression of NAD(+)-dependent isocitrate dehydrogenase in brown adipose tissue. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  483. Kato T (1992). [Microdetermination methods for deoxyglucose and beta-NGF using NADP and NAD enzymatic… [PMID: 1295007]

    Laboratory literature summary: [Microdetermination methods for deoxyglucose and beta-NGF using NADP and NAD enzymatic cyclings]. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  484. Busch D et al. (1969). [NAD-NADH, NADP-NADPH and GSSG-GSH in research subjects erythrocytes] [PMID: 4392610]

    Laboratory literature summary: [NAD-NADH, NADP-NADPH and GSSG-GSH in research subjects erythrocytes]. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  485. Vaillancourt RR et al. (1994). Synthesis and use of radioactive photoactivatable NAD+ derivatives as probes for… [PMID: 7935026]

    Laboratory literature summary: Synthesis and use of radioactive photoactivatable NAD+ derivatives as probes for G-protein structure. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  486. Warren WA (1970). Stereochemistry of glyoxylate oxidation by NAD and mammalian lactate dehydrogenase [PMID: 4318596]

    Laboratory literature summary: Stereochemistry of glyoxylate oxidation by NAD and mammalian lactate dehydrogenase. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  487. Binogradov VV et al. (1978). [On corticosteroid control of NAD splitting in rat liver] [PMID: 214918]

    Laboratory literature summary: [On corticosteroid control of NAD splitting in rat liver]. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  488. Serhan Z et al. (2016). Investigation of Solute-Fiber Affinity and Orientational Ordering of Norbornadiene… [PMID: 27383731]

    Laboratory literature summary: Investigation of Solute-Fiber Affinity and Orientational Ordering of Norbornadiene Interacting with Two-Polypeptide Chiral Liquid…. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  489. Kil HJ et al. (2009). Primary kinetic isotope effects on hydride transfer from heterocyclic compounds to… [PMID: 19746950]

    Laboratory literature summary: Primary kinetic isotope effects on hydride transfer from heterocyclic compounds to NAD(+) analogues. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  490. Valiakina TI et al. (1972). [Biological activity of peptide and depsipeptide analogs of ophthalmic and… [PMID: 4634303]

    Laboratory literature summary: [Biological activity of peptide and depsipeptide analogs of ophthalmic and norophthalmic acids in glyoxalase I and…. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  491. Hayman S et al. (1982). Activity associated with individual subunits of pig heart NAD-specific isocitrate… [PMID: 7159097]

    Laboratory literature summary: Activity associated with individual subunits of pig heart NAD-specific isocitrate dehydrogenase. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  492. Bulygina ER et al. (1993). [Effect of calmodulin on the activity of NAD-kinase from rabbit liver] [PMID: 8389607]

    Laboratory literature summary: [Effect of calmodulin on the activity of NAD-kinase from rabbit liver]. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  493. Biellmann JF et al. (1970). Preparation and properties of 3-cyano pyridine ad(+), a new analogue of nad(+) [PMID: 11947468]

    Laboratory literature summary: Preparation and properties of 3-cyano pyridine ad(+), a new analogue of nad(+). Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  494. Pace M et al. (1990). Immobilized pig brain NAD glycohydrolase for the preparation of NAD analogues [PMID: 2162652]

    Laboratory literature summary: Immobilized pig brain NAD glycohydrolase for the preparation of NAD analogues. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  495. WESTPHAL H et al. (1964). [SYNTHESIS OF NAD-DEPENDENT GLUTAMATE DEHYDROGENASE IN PROTOPLASTS OF SACCHAROMYCES… [PMID: 14213011]

    Laboratory literature summary: [SYNTHESIS OF NAD-DEPENDENT GLUTAMATE DEHYDROGENASE IN PROTOPLASTS OF SACCHAROMYCES CARLSBERGENSIS]. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  496. Pompucci G et al. (1966). [Studies of the regulation of NAD synthesis in the rat liver] [PMID: 4291262]

    Laboratory literature summary: [Studies of the regulation of NAD synthesis in the rat liver]. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  497. Apps DK (1971). Inhibition of pigeon liver NAD kinase by a non-phosphorylatible analogue of NAD [PMID: 11945863]

    Laboratory literature summary: Inhibition of pigeon liver NAD kinase by a non-phosphorylatible analogue of NAD. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  498. Jörnvall H et al. (1975). Modification of alcohol dehydrogenases with two NAD-+-analogues containing reactive… [PMID: 165980]

    Laboratory literature summary: Modification of alcohol dehydrogenases with two NAD-+-analogues containing reactive substituents on the functional side of the molecule. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  499. Yadav RN et al. (1980). Effect of adrenalectomy, hydrocortisone & actinomycin D on activity of NAD- &… [PMID: 7216283]

    Laboratory literature summary: Effect of adrenalectomy, hydrocortisone & actinomycin D on activity of NAD- & NAD-linked isocitrate dehydrogenase of liver of rats of…. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  500. VON BRUCHHAUSEN (1964). [INHIBITION OF PHOSPHOKINASES BY THE 6-AMINONICOTINAMIDE ANALOG (6 ANAD) OF… [PMID: 14217548]

    Laboratory literature summary: [INHIBITION OF PHOSPHOKINASES BY THE 6-AMINONICOTINAMIDE ANALOG (6 ANAD) OF NICOTINE-ADENINE-DINUCLEOTIDE (NAD)]. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  501. Zha S et al. (2018). PARP1 inhibitor (PJ34) improves the function of aging-induced endothelial progenitor… [PMID: 30139380]

    Laboratory literature summary: PARP1 inhibitor (PJ34) improves the function of aging-induced endothelial progenitor cells by preserving intracellular NAD(+) levels and…. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  502. Muller-Steffner H et al. (1996). Photodependent inhibition of bovine spleen NAD+ glycohydrolase by 8-azido carbocyclic… [PMID: 8912647]

    Laboratory literature summary: Photodependent inhibition of bovine spleen NAD+ glycohydrolase by 8-azido carbocyclic analogs of NAD+. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  503. Comas-Ghierra R et al. (2024). A Minimal Kynurenine Pathway Was Preserved for Rhodoquinone but Not for De Novo NAD(+)… [PMID: 37639366]

    Laboratory literature summary: A Minimal Kynurenine Pathway Was Preserved for Rhodoquinone but Not for De Novo NAD(+) Biosynthesis in Parasitic Worms: The Essential…. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  504. Han S et al. (2009). Structure of the adenylation domain of NAD(+)-dependent DNA ligase from Staphylococcus… [PMID: 19923722]

    Laboratory literature summary: Structure of the adenylation domain of NAD(+)-dependent DNA ligase from Staphylococcus aureus. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  505. Liu J et al. (2005). Crystal structures of an NAD kinase from Archaeoglobus fulgidus in complex with ATP,… [PMID: 16242716]

    Laboratory literature summary: Crystal structures of an NAD kinase from Archaeoglobus fulgidus in complex with ATP, NAD, or NADP. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  506. Newbold CJ et al. (2005). An NAD(+)-dependent glutamate dehydrogenase cloned from the ruminal ciliate protozoan,… [PMID: 15921862]

    Laboratory literature summary: An NAD(+)-dependent glutamate dehydrogenase cloned from the ruminal ciliate protozoan, Entodinium caudatum. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  507. Terao R et al. (2024). LXR/CD38 activation drives cholesterol-induced macrophage senescence and… [PMID: 38636518]

    Laboratory literature summary: LXR/CD38 activation drives cholesterol-induced macrophage senescence and neurodegeneration via NAD(+) depletion. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  508. Lagartos-Donate MJ et al. (2026). Loss of REST associated with neurodegeneration research models's disease pathology is… [PMID: 41709697]

    Laboratory literature summary: Loss of REST associated with neurodegeneration research models's disease pathology is ameliorated by NAD. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  509. Bieganowski P et al. (2004). Discoveries of nicotinamide riboside as a nutrient and conserved NRK genes establish a… [PMID: 15137942]

    Laboratory literature summary: Discoveries of nicotinamide riboside as a nutrient and conserved NRK genes establish a Preiss-Handler independent route to NAD+ in fungi…. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  510. Speranza ML et al. (1978). Purification and properties of NAD+-dependent glyceraldehyde-3-phosphate dehydrogenase… [PMID: 202324]

    Laboratory literature summary: Purification and properties of NAD+-dependent glyceraldehyde-3-phosphate dehydrogenase from spinach leaves. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  511. Myakala K et al. (2023). Laboratory research record on NAD+ [PMID: 37429506]

    PubMed laboratory record discussing NAD+ in a research context. Review the full methods and limitations on PubMed; research use only.

  512. Warren A et al. (2023). The NAD salvage pathway in mesenchymal cells is indispensable for skeletal development… [PMID: 37330524]

    Laboratory literature summary: The NAD salvage pathway in mesenchymal cells is indispensable for skeletal development in mice. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  513. Chowdhry S et al. (2019). NAD metabolic dependency in oncology research models is shaped by gene amplification… [PMID: 31019297]

    Laboratory literature summary: NAD metabolic dependency in oncology research models is shaped by gene amplification and enhancer remodelling. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  514. Ramsey KM et al. (2009). Circadian clock feedback cycle through NAMPT-mediated NAD+ biosynthesis [PMID: 19299583]

    Laboratory literature summary: Circadian clock feedback cycle through NAMPT-mediated NAD+ biosynthesis. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  515. Coper H et al. (1968). [Induction of NAD (P)-glycohydrolase in the DS carcinosarcoma in the rat using… [PMID: 4174978]

    Laboratory literature summary: [Induction of NAD (P)-glycohydrolase in the DS carcinosarcoma in the rat using cyclophosphamide]. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  516. Fakouri NB et al. (2017). Rev1 contributes to proper mitochondrial function via the PARP-NAD(+)-SIRT1-PGC1α axis [PMID: 28970491]

    Laboratory literature summary: Rev1 contributes to proper mitochondrial function via the PARP-NAD(+)-SIRT1-PGC1α axis. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  517. Olesen SV et al. (2018). An NAD(+)-Dependent Sirtuin Depropionylase and Deacetylase (Sir2La) from the Probiotic… [PMID: 29863862]

    Laboratory literature summary: An NAD(+)-Dependent Sirtuin Depropionylase and Deacetylase (Sir2La) from the Probiotic Bacterium Lactobacillus acidophilus NCFM. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  518. Grahnert A et al. (2009). Involvement of P2X receptors in the NAD(+)-induced rise in [Ca (2+)] (i) in research… [PMID: 19221895]

    Laboratory literature summary: Involvement of P2X receptors in the NAD(+)-induced rise in [Ca (2+)] (i) in research subjects monocytes. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  519. Bortell R et al. (2001). Nicotinamide adenine dinucleotide (NAD) and its metabolites inhibit T lymphocyte… [PMID: 11489987]

    Laboratory literature summary: Nicotinamide adenine dinucleotide (NAD) and its metabolites inhibit T lymphocyte proliferation: role of cell surface NAD glycohydrolase…. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  520. Yokoyama T et al. (2024). SIRT5 mutants reveal the role of conserved asparagine and glutamine residues in the… [PMID: 39031546]

    Laboratory literature summary: SIRT5 mutants reveal the role of conserved asparagine and glutamine residues in the NAD(+)-binding pocket. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  521. Trętowicz MM et al. (2026). Research subjects whole-blood NAD(+) levels do not vary with age or lifestyle… [PMID: 42135539]

    Laboratory literature summary: research subjects whole-blood NAD(+) levels do not vary with age or lifestyle interventions. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  522. Furukawa S et al. (1980). Macromolecular derivatives of NAD and their application [PMID: 6998512]

    Laboratory literature summary: Macromolecular derivatives of NAD and their application. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  523. Ziegler M et al. (1996). Characterization of detergent-solubilized beef liver mitochondrial NAD+ glycohydrolase… [PMID: 8611505]

    Laboratory literature summary: Characterization of detergent-solubilized beef liver mitochondrial NAD+ glycohydrolase and its truncated hydrosoluble form. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  524. Ka D et al. (2020). Structural and functional evidence of bacterial antiphage protection by Thoeris… [PMID: 32499527]

    Laboratory literature summary: Structural and functional evidence of bacterial antiphage protection by Thoeris defense system via NAD(+) degradation. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  525. Yang Y et al. (2019). Dihydronicotinamide riboside is a potent NAD(+) concentration enhancer in vitro and in… [PMID: 30948509]

    Laboratory literature summary: Dihydronicotinamide riboside is a potent NAD(+) concentration enhancer in vitro and in vivo. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  526. Wang J et al. (1996). Regulation of CTL by ecto-nictinamide adenine dinucleotide (NAD) involves… [PMID: 8609401]

    Laboratory literature summary: Regulation of CTL by ecto-nictinamide adenine dinucleotide (NAD) involves ADP-ribosylation of a p56lck-associated protein. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  527. Holbrook J et al. (1976). The binding by an NAD-affinity matrix of contaminating dehydrogenases in cytochrome c… [PMID: 184026]

    Laboratory literature summary: The binding by an NAD-affinity matrix of contaminating dehydrogenases in cytochrome c oxidase preparations. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  528. Wu MF et al. (2014). NAD attenuates oxidative DNA damages induced by amyloid beta-peptide in primary rat… [PMID: 24678962]

    Laboratory literature summary: NAD attenuates oxidative DNA damages induced by amyloid beta-peptide in primary rat cortical neurons. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  529. Gazzaniga F et al. (2009). Microbial NAD metabolism: lessons from comparative genomics [PMID: 19721089]

    Laboratory literature summary: Microbial NAD metabolism: lessons from comparative genomics. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  530. Hachisuka SI et al. (2018). Hyperthermophilic Archaeon Thermococcus kodakarensis Utilizes a Four-Step Pathway for… [PMID: 29555696]

    Laboratory literature summary: Hyperthermophilic Archaeon Thermococcus kodakarensis Utilizes a Four-Step Pathway for NAD(+) Salvage through Nicotinamide Deamination. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  531. Lee JY et al. (2000). Crystal structure of NAD(+)-dependent DNA ligase: modular architecture and functional… [PMID: 10698952]

    Laboratory literature summary: Crystal structure of NAD(+)-dependent DNA ligase: modular architecture and functional implications. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  532. Hosaki S et al. (1986). Simultaneous determination of multiple forms of lactate dehydrogenase based on NAD and… [PMID: 3731495]

    Laboratory literature summary: Simultaneous determination of multiple forms of lactate dehydrogenase based on NAD and thio-NAD. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  533. Sakari M et al. (2022). Crystal structures of pertussis toxin with NAD(+) and analogs provide structural… [PMID: 35378130]

    Laboratory literature summary: Crystal structures of pertussis toxin with NAD(+) and analogs provide structural insights into the mechanism of its cytosolic…. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  534. Feldman JL et al. (2015). Kinetic and Structural Basis for Acyl-Group Selectivity and NAD(+) Dependence in… [PMID: 25897714]

    Laboratory literature summary: Kinetic and Structural Basis for Acyl-Group Selectivity and NAD(+) Dependence in Sirtuin-Catalyzed Deacylation. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  535. Serhan Z et al. (2012). Analysis of NAD 2D-NMR spectra of saturated fatty acids in polypeptide aligning media… [PMID: 22162274]

    Laboratory literature summary: Analysis of NAD 2D-NMR spectra of saturated fatty acids in polypeptide aligning media by experimental and modeling approaches. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  536. Horsefield S et al. (2019). NAD(+) cleavage activity by animal and plant TIR domains in cell death pathways [PMID: 31439792]

    Laboratory literature summary: NAD(+) cleavage activity by animal and plant TIR domains in cell death pathways. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  537. Chen Y et al. (2023). LncRNA like NMRK2 mRNA functions as a key molecular scaffold to enhance mitochondrial… [PMID: 37770905]

    Laboratory literature summary: LncRNA like NMRK2 mRNA functions as a key molecular scaffold to enhance mitochondrial respiration of NONO-TFE3 rearranged renal cell…. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  538. Croft T et al. (2018). A functional link between NAD(+) homeostasis and N-terminal protein acetylation in… [PMID: 29317496]

    Laboratory literature summary: A functional link between NAD(+) homeostasis and N-terminal protein acetylation in Saccharomyces cerevisiae. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  539. Woenckhaus C (1974). Synthesis and properties of some new NAD analogues [PMID: 4376282]

    Laboratory literature summary: Synthesis and properties of some new NAD analogues. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  540. ElMokh O et al. (2022). Gut microbiota severely hampers the observed endpoints of NAD-lowering research… [PMID: 35396381]

    Laboratory literature summary: Gut microbiota severely hampers the observed endpoints of NAD-lowering research protocol in leukemia. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  541. Omran HM et al. (2020). Influence of NAD+ as an ageing-related immunomodulator on COVID 19 infection: A hypothesis [PMID: 32534944]

    Laboratory literature summary: Influence of NAD+ as an ageing-related immunomodulator on COVID 19 infection: A hypothesis. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  542. Koltai E et al. (2010). Exercise alters SIRT1, SIRT6, NAD and NAMPT levels in skeletal muscle of aged rats [PMID: 19913571]

    Laboratory literature summary: Exercise alters SIRT1, SIRT6, NAD and NAMPT levels in skeletal muscle of aged rats. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  543. Lee SH et al. (1997). Differential activation of NAD kinase by plant calmodulin isoforms. The critical role… [PMID: 9083059]

    Laboratory literature summary: Differential activation of NAD kinase by plant calmodulin isoforms. The critical role of domain I. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  544. Sauve AA (2008). Laboratory research record on NAD+ [PMID: 18165311]

    PubMed laboratory record discussing NAD+ in a research context. Review the full methods and limitations on PubMed; research use only.

  545. Liu L et al. (2019). Qualitative and Quantitative NAD(+) Metabolomics Lead to Discovery of Multiple… [PMID: 31611893]

    Laboratory literature summary: Qualitative and Quantitative NAD(+) Metabolomics Lead to Discovery of Multiple Functional Nicotinate N-Glycosyltransferase in Arabidopsis. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  546. Peterse EFP et al. (2017). NAD Synthesis Pathway Interference Is a Viable investigational Strategy for Chondrosarcoma [PMID: 28860121]

    Laboratory literature summary: NAD Synthesis Pathway Interference Is a Viable investigational Strategy for Chondrosarcoma. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  547. Ribas-Latre A et al. (2015). Dietary proanthocyanidins modulate BMAL1 acetylation, Nampt expression and NAD levels… [PMID: 26051626]

    Laboratory literature summary: Dietary proanthocyanidins modulate BMAL1 acetylation, Nampt expression and NAD levels in rat liver. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  548. Hoyt DG et al. (1993). NAD depletion after in vitro exposure of murine lung slices to bleomycin [PMID: 7504488]

    Laboratory literature summary: NAD depletion after in vitro exposure of murine lung slices to bleomycin. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  549. Sarkar R et al. (2026). NAD+ depletion links metabolic stress to drive innate immune priming and selectively… [PMID: 42506907]

    Laboratory literature summary: NAD+ depletion links metabolic stress to drive innate immune priming and selectively control PANoptosis. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  550. Jayaram HN et al. (2011). NMNAT expression and its relation to NAD metabolism [PMID: 21517776]

    Laboratory literature summary: NMNAT expression and its relation to NAD metabolism. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  551. Saha A et al. (1989). Cysteinyl peptide labeled by 3-bromo-2-ketoglutarate in the active site of pig heart… [PMID: 2605193]

    Laboratory literature summary: Cysteinyl peptide labeled by 3-bromo-2-ketoglutarate in the active site of pig heart NAD+-dependent isocitrate dehydrogenase. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  552. Sandmeier JJ et al. (2002). Telomeric and rDNA silencing in Saccharomyces cerevisiae are dependent on a nuclear… [PMID: 11901108]

    Laboratory literature summary: Telomeric and rDNA silencing in Saccharomyces cerevisiae are dependent on a nuclear NAD(+) salvage pathway. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  553. Fukamichi T et al. (2015). Conformational Change Near the Redox Center of Dihydrolipoamide Dehydrogenase Induced… [PMID: 25757537]

    Laboratory literature summary: Conformational Change Near the Redox Center of Dihydrolipoamide Dehydrogenase Induced by NAD(+) to Regulate the Enzyme Activity. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  554. Sun S et al. (2024). Design and preparation of NMN nanoparticles based on protein-marine polysaccharide… [PMID: 38599036]

    Laboratory literature summary: Design and preparation of NMN nanoparticles based on protein-marine polysaccharide with increased NAD(+) level in D-galactose induced…. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  555. Maynard S et al. (2022). Lamin A/C impairments cause mitochondrial dysfunction by attenuating PGC1α and the… [PMID: 36099415]

    Laboratory literature summary: Lamin A/C impairments cause mitochondrial dysfunction by attenuating PGC1α and the NAMPT-NAD+ pathway. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  556. Bellinzoni M et al. (2002). Heterologous expression, purification, and enzymatic activity of Mycobacterium… [PMID: 12182838]

    Laboratory literature summary: Heterologous expression, purification, and enzymatic activity of Mycobacterium tuberculosis NAD(+) synthetase. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  557. Jeck R et al. (1974). Inhibition studies of dehydrogenases by structural analogues of NAD [PMID: 4367395]

    Laboratory literature summary: Inhibition studies of dehydrogenases by structural analogues of NAD. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  558. Mogol AN et al. (2024). Targeting NAD+ Metabolism: Preclinical Insights into Potential oncology research… [PMID: 38565429]

    Laboratory literature summary: Targeting NAD+ Metabolism: Preclinical Insights into Potential oncology research models research protocol Strategies. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  559. Aggarwal S et al. (2022). The Clock-NAD(+) -Sirtuin connection in nonalcoholic fatty liver disease [PMID: 35616339]

    Laboratory literature summary: The Clock-NAD(+) -Sirtuin connection in nonalcoholic fatty liver disease. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  560. Touat M et al. (2018). DNA repair deficiency sensitizes lung oncology research models cells to NAD+… [PMID: 29447131]

    Laboratory literature summary: DNA repair deficiency sensitizes lung oncology research models cells to NAD+ biosynthesis blockade. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  561. Nahimana A et al. (2009). The NAD biosynthesis inhibitor APO866 has potent antitumor activity against… [PMID: 19196867]

    Laboratory literature summary: The NAD biosynthesis inhibitor APO866 has potent antitumor activity against hematologic malignancies. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  562. Ling C et al. (2023). Rebalancing of mitochondrial homeostasis through an NAD(+)-SIRT1 pathway preserves… [PMID: 37738832]

    Laboratory literature summary: Rebalancing of mitochondrial homeostasis through an NAD(+)-SIRT1 pathway preserves intestinal barrier function in severe malnutrition. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  563. VAN EYS J et al. (1962). A NAD analogue which can be covalently bound to dehydrogenases [PMID: 14039937]

    Laboratory literature summary: A NAD analogue which can be covalently bound to dehydrogenases. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  564. Aljaser FS et al. (2021). Glutathione and oxidized nicotinamide adenine dinucleotide (NAD(+)) redox status in… [PMID: 33896778]

    Laboratory literature summary: Glutathione and oxidized nicotinamide adenine dinucleotide (NAD(+)) redox status in plasma and placental tissue of Saudi research…. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  565. Nagahisa T et al. (2022). Intestinal Epithelial NAD+ Biosynthesis Regulates GLP-1 Production and Postprandial… [PMID: 35218657]

    Laboratory literature summary: Intestinal Epithelial NAD+ Biosynthesis Regulates GLP-1 Production and Postprandial Glucose Metabolism in Mice. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  566. Ocampo A et al. (2013). NAD+ salvage pathway proteins suppress proteotoxicity in yeast models of… [PMID: 23335597]

    Laboratory literature summary: NAD+ salvage pathway proteins suppress proteotoxicity in yeast models of neurodegeneration by promoting the clearance of…. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  567. Jeck R et al. (1979). Identification of the amino acid residue modified in Bacillus stearothermophilus… [PMID: 436831]

    Laboratory literature summary: Identification of the amino acid residue modified in Bacillus stearothermophilus alcohol dehydrogenase by the NAD+ analogue…. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  568. Magni G et al. (1987). NAD pyrophosphorylase from yeast chromatin. Purification and properties [PMID: 2827621]

    Laboratory literature summary: NAD pyrophosphorylase from yeast chromatin. Purification and properties. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  569. Wu S et al. (2021). Intensifying niacin-based biosynthesis of NAD(+) to enhance 3-hydroxypropionic acid… [PMID: 32996029]

    Laboratory literature summary: Intensifying niacin-based biosynthesis of NAD(+) to enhance 3-hydroxypropionic acid production in Klebsiella pneumoniae. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  570. Tong J et al. (2000). Ligation reaction specificities of an NAD(+)-dependent DNA ligase from the… [PMID: 10684941]

    Laboratory literature summary: Ligation reaction specificities of an NAD(+)-dependent DNA ligase from the hyperthermophile Aquifex aeolicus. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  571. Lamb DA et al. (2020). Laboratory research record on NAD+ [PMID: 32369778]

    PubMed laboratory record discussing NAD+ in a research context. Review the full methods and limitations on PubMed; research use only.

  572. Jadhav A et al. (2010). Potent and selective inhibitors of NAD(+)-dependent 15-hydroxyprostaglandin… [PMID: 21735612]

    Laboratory literature summary: Potent and selective inhibitors of NAD(+)-dependent 15-hydroxyprostaglandin dehydrogenase (HPGD). Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  573. Bouillaut L et al. (2019). Role of the global regulator Rex in control of NAD(+) -regeneration in Clostridioides… [PMID: 30882947]

    Laboratory literature summary: Role of the global regulator Rex in control of NAD(+) -regeneration in Clostridioides (Clostridium) difficile. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  574. Mori S et al. (2005). NAD-binding mode and the significance of intersubunit contact revealed by the crystal… [PMID: 15629142]

    Laboratory literature summary: NAD-binding mode and the significance of intersubunit contact revealed by the crystal structure of Mycobacterium tuberculosis NAD…. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  575. Bausewein C (2000). [investigation of nausea nad vomiting in palliative medicine] [PMID: 11048341]

    Laboratory literature summary: [investigation of nausea nad vomiting in palliative medicine]. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  576. Walker BR et al. (1992). Tissue-specific distribution of the NAD(+)-dependent isoform of 11 beta-hydroxysteroid… [PMID: 1639034]

    Laboratory literature summary: Tissue-specific distribution of the NAD(+)-dependent isoform of 11 beta-hydroxysteroid dehydrogenase. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  577. Chen J et al. (2025). FSH exacerbates bone loss by promoting osteoclast energy metabolism through the… [PMID: 39880362]

    Laboratory literature summary: FSH exacerbates bone loss by promoting osteoclast energy metabolism through the CREB-MDH2-NAD(+) axis. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  578. Deng PS et al. (1991). Photodependent inhibition of rat liver NAD(P)H:quinone acceptor oxidoreductase by… [PMID: 1906347]

    Laboratory literature summary: Photodependent inhibition of rat liver NAD(P)H:quinone acceptor oxidoreductase by (A)-2-azido-NAD+ and (A)-8-azido-NAD. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  579. Sakari M et al. (2025). ADP-ribosyltransferase-based biocatalysis of nonhydrolyzable NAD+ analogs [PMID: 39706271]

    Laboratory literature summary: ADP-ribosyltransferase-based biocatalysis of nonhydrolyzable NAD+ analogs. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  580. Elkhal A et al. (2016). NAD(+) regulates Treg cell fate and promotes allograft survival via a systemic IL-10… [PMID: 26928119]

    Laboratory literature summary: NAD(+) regulates Treg cell fate and promotes allograft survival via a systemic IL-10 production that is CD4(+) CD25(+) Foxp3(+) T cells…. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  581. Liao B et al. (1996). Differential stimulation of NAD kinase and binding of peptide substrates by wild-type… [PMID: 8615696]

    Laboratory literature summary: Differential stimulation of NAD kinase and binding of peptide substrates by wild-type and mutant plant calmodulin isoforms. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  582. Kapoor M et al. (1993). NAD(+)-specific glutamate dehydrogenase of Neurospora crassa: cloning, complete… [PMID: 8398079]

    Laboratory literature summary: NAD(+)-specific glutamate dehydrogenase of Neurospora crassa: cloning, complete nucleotide sequence, and gene mapping. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  583. Dwivedi N et al. (2008). NAD(+)-dependent DNA ligase: a novel target waiting for the right inhibitor [PMID: 18080330]

    Laboratory literature summary: NAD(+)-dependent DNA ligase: a novel target waiting for the right inhibitor. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  584. Turnbull AP et al. (1994). Crystallization and quaternary structure analysis of the NAD(+)-dependent leucine… [PMID: 8107149]

    Laboratory literature summary: Crystallization and quaternary structure analysis of the NAD(+)-dependent leucine dehydrogenase from Bacillus sphaericus. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  585. Sokolov D et al. (2021). Nuclear NAD(+)-biosynthetic enzyme NMNAT1 facilitates development and early survival… [PMID: 34878972]

    Laboratory literature summary: Nuclear NAD(+)-biosynthetic enzyme NMNAT1 facilitates development and early survival of retinal neurons. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  586. Nam TS et al. (2014). Critical role for NAD glycohydrolase in regulation of erythropoiesis by hematopoietic… [PMID: 24759100]

    Laboratory literature summary: Critical role for NAD glycohydrolase in regulation of erythropoiesis by hematopoietic stem cells through control of intracellular NAD…. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  587. Laplante MA et al. (2006). The interrelation of the angiotensin and endothelin systems on the modulation of… [PMID: 16845887]

    Laboratory literature summary: The interrelation of the angiotensin and endothelin systems on the modulation of NAD(P)H oxidase. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  588. Loera-Muro A et al. (2016). Auxotrophic Actinobacillus pleurpneumoniae grows in multispecies biofilms without the… [PMID: 27349384]

    Laboratory literature summary: Auxotrophic Actinobacillus pleurpneumoniae grows in multispecies biofilms without the need for nicotinamide-adenine dinucleotide (NAD)…. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  589. Yu J et al. (2017). Regulation of Serine-Threonine Kinase Akt Activation by NAD(+)-Dependent Deacetylase SIRT7 [PMID: 28147277]

    Laboratory literature summary: Regulation of Serine-Threonine Kinase Akt Activation by NAD(+)-Dependent Deacetylase SIRT7. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  590. Burgdorf T et al. (2002). Functional analysis by site-directed mutagenesis of the NAD(+)-reducing hydrogenase… [PMID: 12399498]

    Laboratory literature summary: Functional analysis by site-directed mutagenesis of the NAD(+)-reducing hydrogenase from Ralstonia eutropha. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  591. Najumuddin et al. (2020). Evidence for NAD(+)-dependent histone dynamics and tunneling associated conformational… [PMID: 32531731]

    Laboratory literature summary: Evidence for NAD(+)-dependent histone dynamics and tunneling associated conformational transitions in circadian deacetylase SIRT1. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  592. Zocchi E et al. (1996). NAD+-dependent internalization of the transmembrane glycoprotein CD38 in research… [PMID: 8915013]

    Laboratory literature summary: NAD+-dependent internalization of the transmembrane glycoprotein CD38 in research subjects Namalwa B cells. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  593. Harris CM et al. (1999). Role of the flavin midpoint potential and NAD binding in determining NAD versus oxygen… [PMID: 9988690]

    Laboratory literature summary: Role of the flavin midpoint potential and NAD binding in determining NAD versus oxygen reactivity of xanthine oxidoreductase. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  594. Aman Y et al. (2020). The NAD(+)-mitophagy axis in healthy longevity and in artificial intelligence-based… [PMID: 31812486]

    Laboratory literature summary: The NAD(+)-mitophagy axis in healthy longevity and in artificial intelligence-based laboratory applications. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  595. Park YS et al. (2017). Engineering an aldehyde dehydrogenase toward its substrates, 3-hydroxypropanal and… [PMID: 29214999]

    Laboratory literature summary: Engineering an aldehyde dehydrogenase toward its substrates, 3-hydroxypropanal and NAD(+), for enhancing the production of…. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  596. Demarest TG et al. (2019). Assessment of NAD(+)metabolism in research subjects cell cultures, erythrocytes,… [PMID: 30822397]

    Laboratory literature summary: Assessment of NAD(+)metabolism in research subjects cell cultures, erythrocytes, cerebrospinal fluid and primate skeletal muscle. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  597. Wang N et al. (2022). NAPRT, but Not NAMPT, Provides Additional Support for NAD Synthesis in Esophageal… [PMID: 36432602]

    Laboratory literature summary: NAPRT, but Not NAMPT, Provides Additional Support for NAD Synthesis in Esophageal Precancerous Lesions. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  598. Wiley C et al. (2014). NAD+ controls neural stem cell fate in the aging brain [PMID: 24894550]

    Laboratory literature summary: NAD+ controls neural stem cell fate in the aging brain. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  599. Egorova AB et al. (2001). NAD and glutathione modulate sensitivity of bone marrow cells to oxidative stress [PMID: 11687840]

    Laboratory literature summary: NAD and glutathione modulate sensitivity of bone marrow cells to oxidative stress. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  600. Wang W et al. (2018). Decreased NAD Activates STAT3 and Integrin Pathways to Drive Epithelial-Mesenchymal… [PMID: 29980616]

    Laboratory literature summary: Decreased NAD Activates STAT3 and Integrin Pathways to Drive Epithelial-Mesenchymal Transition. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  601. Zalba G et al. (2001). Oxidative stress in arterial hypertension: role of NAD(P)H oxidase [PMID: 11751724]

    Laboratory literature summary: Oxidative stress in arterial hypertension: role of NAD(P)H oxidase. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  602. Ohashi M et al. (2003). Localization of mammalian NAD(P)H steroid dehydrogenase-like protein on lipid droplets [PMID: 12837764]

    Laboratory literature summary: Localization of mammalian NAD(P)H steroid dehydrogenase-like protein on lipid droplets. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  603. Birrell JA et al. (2013). Investigation of NADH binding, hydride transfer, and NAD(+) dissociation during NADH… [PMID: 23683271]

    Laboratory literature summary: Investigation of NADH binding, hydride transfer, and NAD(+) dissociation during NADH oxidation by mitochondrial complex I using modified…. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  604. Polizio AH et al. (2009). Losartan exerts renoprotection through NAD(P)H oxidase downregulation in a… [PMID: 19445972]

    Laboratory literature summary: Losartan exerts renoprotection through NAD(P)H oxidase downregulation in a renovascular model of hypertension. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  605. Denessiouk KA et al. (2001). Adenine recognition: a motif present in ATP-, CoA-, NAD-, NADP-, and FAD-dependent… [PMID: 11455601]

    Laboratory literature summary: Adenine recognition: a motif present in ATP-, CoA-, NAD-, NADP-, and FAD-dependent proteins. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  606. Zhu A et al. (2013). Detecting sirtuin-catalyzed deacylation reactions using ³²P-labeled NAD and thin-layer… [PMID: 24014407]

    Laboratory literature summary: Detecting sirtuin-catalyzed deacylation reactions using ³²P-labeled NAD and thin-layer chromatography. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  607. Rieth S et al. (2024). A desthiobiotin labelled NAD(+) analogue to uncover Poly(ADP-ribose) polymerase 1… [PMID: 38236015]

    Laboratory literature summary: A desthiobiotin labelled NAD(+) analogue to uncover Poly(ADP-ribose) polymerase 1 protein targets. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  608. Wang Q et al. (2019). Functional definition of NrtR, a remnant regulator of NAD(+) homeostasis in the… [PMID: 30759348]

    Laboratory literature summary: Functional definition of NrtR, a remnant regulator of NAD(+) homeostasis in the zoonotic pathogen Streptococcus suis. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  609. Moffett JR et al. (2020). Quinolinate as a Marker for Kynurenine Metabolite Formation and the Unresolved… [PMID: 32153556]

    Laboratory literature summary: Quinolinate as a Marker for Kynurenine Metabolite Formation and the Unresolved Question of NAD(+) Synthesis During Inflammation and…. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  610. Guo Q et al. (2026). Laboratory research record on NAD+ [PMID: 41803940]

    PubMed laboratory record discussing NAD+ in a research context. Review the full methods and limitations on PubMed; research use only.

  611. Fujii M et al. (2010). Laboratory research record on NAD+ [PMID: 20686447]

    PubMed laboratory record discussing NAD+ in a research context. Review the full methods and limitations on PubMed; research use only.

  612. Cheng S et al. (2012). The PduQ enzyme is an alcohol dehydrogenase used to recycle NAD+ internally within the… [PMID: 23077559]

    Laboratory literature summary: The PduQ enzyme is an alcohol dehydrogenase used to recycle NAD+ internally within the Pdu microcompartment of Salmonella enterica. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  613. Denu JM (2007). Vitamins and aging: pathways to NAD+ synthesis [PMID: 17482537]

    Laboratory literature summary: Vitamins and aging: pathways to NAD+ synthesis. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  614. Sharma P et al. (2022). Inhibition of nicotinamide phosphoribosyltransferase (NAMPT), the rate-limiting enzyme… [PMID: 34260721]

    Laboratory literature summary: Inhibition of nicotinamide phosphoribosyltransferase (NAMPT), the rate-limiting enzyme of the nicotinamide adenine dinucleotide (NAD)…. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  615. Tokushige M et al. (1985). Distinct effects of pyridoxal phosphate on NAD- and NADP- linked malic enzymes of… [PMID: 3915362]

    Laboratory literature summary: Distinct effects of pyridoxal phosphate on NAD- and NADP- linked malic enzymes of Escherichia coli. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  616. Ozment C et al. (1999). Structural study of Escherichia coli NAD synthetase: overexpression, purification,… [PMID: 10544053]

    Laboratory literature summary: Structural study of Escherichia coli NAD synthetase: overexpression, purification, crystallization, and preliminary crystallographic…. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  617. Seki T et al. (2026). Epidermal NAD+ deficiency induces IL-36-mediated skin inflammation and acanthosis [PMID: 41665963]

    Laboratory literature summary: Epidermal NAD+ deficiency induces IL-36-mediated skin inflammation and acanthosis. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  618. Epel D et al. (1981). Calmodulin activates NAD kinase of sea urchin eggs: an early event of fertilization [PMID: 6258805]

    Laboratory literature summary: Calmodulin activates NAD kinase of sea urchin eggs: an early event of fertilization. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  619. Wei X et al. (2020). NAD(+) /sirtuin metabolism is enhanced in response to cold-induced changes in lipid… [PMID: 32227472]

    Laboratory literature summary: NAD(+) /sirtuin metabolism is enhanced in response to cold-induced changes in lipid metabolism in mouse liver. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  620. Kazak LI et al. (1980). [Effect of antianginal agents on nicotinamide coenzyme content and NAD-dependent… [PMID: 6160053]

    Laboratory literature summary: [Effect of antianginal agents on nicotinamide coenzyme content and NAD-dependent dehydrogenase activity]. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  621. Arslan NP et al. (2025). NAD(+) precursors mitigate the in vitro and in vivo reproductive defects: Limitations… [PMID: 40976508]

    Laboratory literature summary: NAD(+) precursors mitigate the in vitro and in vivo reproductive defects: Limitations and possible solutions. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  622. Seshiah PN et al. (2002). Angiotensin II stimulation of NAD(P)H oxidase activity: upstream mediators [PMID: 12215489]

    Laboratory literature summary: Angiotensin II stimulation of NAD(P)H oxidase activity: upstream mediators. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  623. Langelier MF et al. (2018). NAD(+) analog reveals PARP-1 substrate-blocking mechanism and allosteric communication… [PMID: 29487285]

    Laboratory literature summary: NAD(+) analog reveals PARP-1 substrate-blocking mechanism and allosteric communication from catalytic center to DNA-binding domains. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  624. Borra MT et al. (2004). Substrate specificity and kinetic mechanism of the Sir2 family of NAD+-dependent… [PMID: 15274642]

    Laboratory literature summary: Substrate specificity and kinetic mechanism of the Sir2 family of NAD+-dependent histone/protein deacetylases. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  625. ADLER U (1961). [19-Norandrostenolone-decanoate (NAD) in the investigation of advanced genital… [PMID: 13859454]

    Laboratory literature summary: [19-Norandrostenolone-decanoate (NAD) in the investigation of advanced genital oncology research models in the research models]. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  626. Cupp JR et al. (1992). Cloning and characterization of the gene encoding the IDH1 subunit of NAD(+)-dependent… [PMID: 1644826]

    Laboratory literature summary: Cloning and characterization of the gene encoding the IDH1 subunit of NAD(+)-dependent isocitrate dehydrogenase from Saccharomyces…. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  627. Behal RH et al. (1998). NAD(+)-dependent isocitrate dehydrogenase from Arabidopsis thaliana. Characterization… [PMID: 9526501]

    Laboratory literature summary: NAD(+)-dependent isocitrate dehydrogenase from Arabidopsis thaliana. Characterization of two closely related subunits. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  628. Zhang XN et al. (2019). A ribose-functionalized NAD(+) with unexpected high activity and selectivity for… [PMID: 31519936]

    Laboratory literature summary: A ribose-functionalized NAD(+) with unexpected high activity and selectivity for protein poly-ADP-ribosylation. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  629. Schmakel CO et al. (1975). Nicotinamide adenine dinucleotide (NAD+) and related compounds. Electrochemical redox… [PMID: 240879]

    Laboratory literature summary: Nicotinamide adenine dinucleotide (NAD+) and related compounds. Electrochemical redox pattern and allied chemical behavior. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  630. Duerrschmidt N et al. (2000). Endothelin-1 induces NAD(P)H oxidase in research subjects endothelial cells [PMID: 10720482]

    Laboratory literature summary: Endothelin-1 induces NAD(P)H oxidase in research subjects endothelial cells. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  631. Bi J et al. (2011). [Microbial NAD synthetase and its inhibitors–a review] [PMID: 21604544]

    Laboratory literature summary: [Microbial NAD synthetase and its inhibitors–a review]. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  632. Agarwal AK et al. (1995). Cloning of cDNA encoding an NAD(+)-dependent isoform of 11 beta-hydroxysteroid… [PMID: 7588402]

    Laboratory literature summary: Cloning of cDNA encoding an NAD(+)-dependent isoform of 11 beta-hydroxysteroid dehydrogenase in sheep kidney. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  633. Thomé PE (2004). Isolation of a GPD gene from Debaryomyces hansenii encoding a glycerol 3-phosphate… [PMID: 14755637]

    Laboratory literature summary: Isolation of a GPD gene from Debaryomyces hansenii encoding a glycerol 3-phosphate dehydrogenase (NAD+). Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  634. Nirmala K et al. (1988). Antitumor activity of liposomal encapsulated tiazofurin and its NAD-analogue [PMID: 3181990]

    Laboratory literature summary: Antitumor activity of liposomal encapsulated tiazofurin and its NAD-analogue. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  635. Svensson K et al. (2014). MicroRNAs emerge as modulators of NAD+-dependent energy metabolism in skeletal muscle [PMID: 24757196]

    Laboratory literature summary: MicroRNAs emerge as modulators of NAD+-dependent energy metabolism in skeletal muscle. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  636. Park JS et al. (2025). RAB4A DRIVES PROINFLAMMATORY CD4(+) T CELL SIGNALING VIA CD38-DEPENDENT NAD(+) METABOLISM [PMID: 40585226]

    Laboratory literature summary: RAB4A DRIVES PROINFLAMMATORY CD4(+) T CELL SIGNALING VIA CD38-DEPENDENT NAD(+) METABOLISM. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  637. Gerdes SY et al. (2006). Comparative genomics of NAD biosynthesis in cyanobacteria [PMID: 16585762]

    Laboratory literature summary: Comparative genomics of NAD biosynthesis in cyanobacteria. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  638. Ushio-Fukai M et al. (2004). Reactive oxygen species as mediators of angiogenesis signaling: role of NAD(P)H oxidase [PMID: 15544038]

    Laboratory literature summary: Reactive oxygen species as mediators of angiogenesis signaling: role of NAD(P)H oxidase. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  639. Bruchhaus I et al. (1994). Purification and molecular characterization of the NAD(+)-dependent… [PMID: 7980441]

    Laboratory literature summary: Purification and molecular characterization of the NAD(+)-dependent acetaldehyde/alcohol dehydrogenase from Entamoeba histolytica. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  640. Kochhar S et al. (1992). Glutamate 264 modulates the pH dependence of the NAD(+)-dependent D-lactate dehydrogenase [PMID: 1356978]

    Laboratory literature summary: Glutamate 264 modulates the pH dependence of the NAD(+)-dependent D-lactate dehydrogenase. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  641. Ruszkiewicz J et al. (2023). NAD(+) Acts as a Protective Factor in Cellular Stress Response to DNA Alkylating Agents [PMID: 37830610]

    Laboratory literature summary: NAD(+) Acts as a Protective Factor in Cellular Stress Response to DNA Alkylating Agents. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  642. Ma BD et al. (2025). Structural studies of NAD(+)-dependent methanol dehydrogenase 1 from Bacillus… [PMID: 41123439]

    Laboratory literature summary: Structural studies of NAD(+)-dependent methanol dehydrogenase 1 from Bacillus methanolicus MGA3. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  643. Hu YR et al. (2021). Codonopsis pilosula Polysaccharides Alleviate Aβ (1-40)-Induced PC12 Cells Energy… [PMID: 34102973]

    Laboratory literature summary: Codonopsis pilosula Polysaccharides Alleviate Aβ (1-40)-Induced PC12 Cells Energy Dysmetabolism via CD38/NAD+ Signaling Pathway. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  644. Guse AH (2023). Enzymology of Ca(2+)-Mobilizing Second Messengers Derived from NAD: From NAD… [PMID: 36831342]

    Laboratory literature summary: Enzymology of Ca(2+)-Mobilizing Second Messengers Derived from NAD: From NAD Glycohydrolases to (Dual) NADPH Oxidases. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  645. Takeishi R et al. (2015). Epimerization at C-3'' in butirosin biosynthesis by an NAD(+) -dependent dehydrogenase… [PMID: 25600434]

    Laboratory literature summary: Epimerization at C-3'' in butirosin biosynthesis by an NAD(+) -dependent dehydrogenase BtrE and an NADPH-dependent reductase BtrF. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  646. Motamed M et al. (2014). Steroid receptor coactivator 1 is an integrator of glucose and NAD+/NADH homeostasis [PMID: 24438340]

    Laboratory literature summary: Steroid receptor coactivator 1 is an integrator of glucose and NAD+/NADH homeostasis. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  647. Tai HH et al. (2002). Structure and function of research subjects NAD(+)-linked 15-hydroxyprostaglandin… [PMID: 12664592]

    Laboratory literature summary: Structure and function of research subjects NAD(+)-linked 15-hydroxyprostaglandin dehydrogenase. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  648. Schäfer HG et al. (1986). Covalent fixation of NAD+ to dehydrogenases and properties of the modified enzymes [PMID: 3539145]

    Laboratory literature summary: Covalent fixation of NAD+ to dehydrogenases and properties of the modified enzymes. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  649. Niemiec P et al. (2005). [Vascular NAD(P)H oxidases–role in the pathogenesis of atherosclerosis] [PMID: 16209336]

    Laboratory literature summary: [Vascular NAD(P)H oxidases–role in the pathogenesis of atherosclerosis]. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  650. Frederick DW et al. (2015). Increasing NAD synthesis in muscle via nicotinamide phosphoribosyltransferase is not… [PMID: 25411251]

    Laboratory literature summary: Increasing NAD synthesis in muscle via nicotinamide phosphoribosyltransferase is not sufficient to promote oxidative metabolism. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  651. Han J et al. (2011). NAD+ investigation induces delayed autophagy in Neuro2a cells partially by increasing… [PMID: 21833846]

    Laboratory literature summary: NAD+ investigation induces delayed autophagy in Neuro2a cells partially by increasing oxidative stress. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  652. Zhan R et al. (2023). NAD(+) rescues aging-induced blood-brain barrier damage via the CX43-PARP1 axis [PMID: 37683629]

    Laboratory literature summary: NAD(+) rescues aging-induced blood-brain barrier damage via the CX43-PARP1 axis. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  653. Sun C et al. (2005). NAD(P)H oxidase inhibition attenuates neuronal chronotropic actions of angiotensin II [PMID: 15746442]

    Laboratory literature summary: NAD(P)H oxidase inhibition attenuates neuronal chronotropic actions of angiotensin II. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  654. Lv Y et al. (2024). NAD+ Metabolic Enzyme Inhibitor as Radiosensitizer for Malignant Meningioma and its… [PMID: 39039948]

    Laboratory literature summary: NAD+ Metabolic Enzyme Inhibitor as Radiosensitizer for Malignant Meningioma and its Modulation of P53 Expression. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  655. Wang G et al. (2014). P7C3 neuroprotective chemicals function by activating the rate-limiting enzyme in NAD… [PMID: 25215490]

    Laboratory literature summary: P7C3 neuroprotective chemicals function by activating the rate-limiting enzyme in NAD salvage. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  656. Imai S et al. (2013). The importance of NAMPT/NAD/SIRT1 in the systemic regulation of metabolism and ageing [PMID: 24003918]

    Laboratory literature summary: The importance of NAMPT/NAD/SIRT1 in the systemic regulation of metabolism and ageing. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  657. Zappelli P et al. (1976). New coenzymically-active soluble and insoluble macromolecular NAD+ derivatives [PMID: 174913]

    Laboratory literature summary: New coenzymically-active soluble and insoluble macromolecular NAD+ derivatives. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  658. Tateishi K et al. (2017). The Alkylating Chemotherapeutic Temozolomide Induces Metabolic Stress in IDH1-Mutant… [PMID: 28625978]

    Laboratory literature summary: The Alkylating Chemotherapeutic Temozolomide Induces Metabolic Stress in IDH1-Mutant Cancers and Potentiates NAD(+) Depletion-Mediated…. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  659. Zhu T et al. (2021). Notoginsenoside R1 activates the NAMPT-NAD(+)-SIRT1 cascade to promote postischemic… [PMID: 34029951]

    Laboratory literature summary: Notoginsenoside R1 activates the NAMPT-NAD(+)-SIRT1 cascade to promote postischemic angiogenesis by modulating Notch signaling. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  660. Nichols BJ et al. (1993). Molecular cloning and deduced amino acid sequences of the gamma-subunits of rat and… [PMID: 8240232]

    Laboratory literature summary: Molecular cloning and deduced amino acid sequences of the gamma-subunits of rat and monkey NAD(+)-isocitrate dehydrogenases. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  661. Doig CL et al. (2020). Induction of the nicotinamide riboside kinase NAD(+) salvage pathway in a model of… [PMID: 32075690]

    Laboratory literature summary: Induction of the nicotinamide riboside kinase NAD(+) salvage pathway in a model of sarcoplasmic reticulum dysfunction. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  662. Tang W et al. (2021). Expression, purification, and biochemical characterization of an NAD(+)-dependent… [PMID: 34547433]

    Laboratory literature summary: Expression, purification, and biochemical characterization of an NAD(+)-dependent homoserine dehydrogenase from the symbiotic…. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  663. Ajdic D et al. (2000). The NAD-glycohydrolase (nga) gene of Streptococcus pyogenes [PMID: 11024269]

    Laboratory literature summary: The NAD-glycohydrolase (nga) gene of Streptococcus pyogenes. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  664. Siddiqui AA et al. (2000). A cDNA encoding the highly immunodominant antigen of Strongyloides stercoralis:… [PMID: 10780735]

    Laboratory literature summary: A cDNA encoding the highly immunodominant antigen of Strongyloides stercoralis: gamma-subunit of isocitrate dehydrogenase (NAD+). Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  665. Baca CF et al. (2025). Cat1 forms filament networks to degrade NAD(+) during the type III CRISPR-Cas… [PMID: 40208959]

    Laboratory literature summary: Cat1 forms filament networks to degrade NAD(+) during the type III CRISPR-Cas antiviral response. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  666. Campbell S et al. (1990). Photoaffinity labeling of ATP and NAD+ binding sites on recombinant research subjects… [PMID: 2105502]

    Laboratory literature summary: Photoaffinity labeling of ATP and NAD+ binding sites on recombinant research subjects interleukin 2. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  667. Wang Y et al. (2024). Stripe rust effector Pst03724 modulates host immunity by inhibiting NAD kinase… [PMID: 38441329]

    Laboratory literature summary: Stripe rust effector Pst03724 modulates host immunity by inhibiting NAD kinase activation by a calmodulin. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  668. Zhang T et al. (2009). Enzymes in the NAD+ salvage pathway regulate SIRT1 activity at target gene promoters [PMID: 19478080]

    Laboratory literature summary: Enzymes in the NAD+ salvage pathway regulate SIRT1 activity at target gene promoters. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  669. Takeya R et al. (2006). Regulation of novel superoxide-producing NAD(P)H oxidases [PMID: 16987008]

    Laboratory literature summary: Regulation of novel superoxide-producing NAD(P)H oxidases. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  670. Cupp JR et al. (1991). NAD(+)-dependent isocitrate dehydrogenase. Cloning, nucleotide sequence, and… [PMID: 1939242]

    Laboratory literature summary: NAD(+)-dependent isocitrate dehydrogenase. Cloning, nucleotide sequence, and disruption of the IDH2 gene from Saccharomyces cerevisiae. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  671. Adachi T et al. (2007). Targeting NAD(P)H oxidase: Ets-1 regulates p47(phox) [PMID: 17991888]

    Laboratory literature summary: Targeting NAD(P)H oxidase: Ets-1 regulates p47(phox). Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  672. Tamarina NZ et al. (1986). [Glycolysis in the rat kidney shortly after ischemia and administration of calmodulin… [PMID: 3798579]

    Laboratory literature summary: [Glycolysis in the rat kidney shortly after ischemia and administration of calmodulin inhibitors, AMP and NAD]. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  673. Cupp JR et al. (1993). Kinetic analysis of NAD(+)-isocitrate dehydrogenase with altered isocitrate binding… [PMID: 8369302]

    Laboratory literature summary: Kinetic analysis of NAD(+)-isocitrate dehydrogenase with altered isocitrate binding sites: contribution of IDH1 and IDH2 subunits to…. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  674. Horimatsu T et al. (2020). Niacin protects against abdominal aortic aneurysm formation via GPR109A independent… [PMID: 31710686]

    Laboratory literature summary: Niacin protects against abdominal aortic aneurysm formation via GPR109A independent mechanisms: role of NAD+/nicotinamide. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  675. Swyter S et al. (2018). New chemical tools for probing activity and inhibition of the NAD(+)-dependent lysine… [PMID: 29685963]

    Laboratory literature summary: New chemical tools for probing activity and inhibition of the NAD(+)-dependent lysine deacylase sirtuin 2. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  676. Dryden SC et al. (2003). Role for research subjects SIRT2 NAD-dependent deacetylase activity in control of… [PMID: 12697818]

    Laboratory literature summary: Role for research subjects SIRT2 NAD-dependent deacetylase activity in control of mitotic exit in the cell cycle. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  677. Turner WL et al. (2004). Cloning and characterization of two NAD kinases from Arabidopsis. identification of a… [PMID: 15247403]

    Laboratory literature summary: Cloning and characterization of two NAD kinases from Arabidopsis. identification of a calmodulin binding isoform. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  678. Cirilli I et al. (2024). Adaptation of a Commercial NAD(+) Quantification Kit to Assay the Base-Exchange… [PMID: 38398599]

    Laboratory literature summary: Adaptation of a Commercial NAD(+) Quantification Kit to Assay the Base-Exchange Activity and Substrate Preferences of SARM1. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  679. Lin H et al. (2010). Synthesizing and salvaging NAD: lessons learned from Chlamydomonas reinhardtii [PMID: 20838591]

    Laboratory literature summary: Synthesizing and salvaging NAD: lessons learned from Chlamydomonas reinhardtii. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  680. Mak OT et al. (1990). Purification and characterization of NAD(+)-dependent 15-hydroxyprostaglandin… [PMID: 2393668]

    Laboratory literature summary: Purification and characterization of NAD(+)-dependent 15-hydroxyprostaglandin dehydrogenase from porcine kidney. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  681. Wallén L et al. (1983). NAD+ analogue binding to glyceraldehyde-3-phosphate dehydrogenase [PMID: 6653561]

    Laboratory literature summary: NAD+ analogue binding to glyceraldehyde-3-phosphate dehydrogenase. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  682. Agarwal AK et al. (1994). NAD(+)-dependent isoform of 11 beta-hydroxysteroid dehydrogenase. Cloning and… [PMID: 7929304]

    Laboratory literature summary: NAD(+)-dependent isoform of 11 beta-hydroxysteroid dehydrogenase. Cloning and characterization of cDNA from sheep kidney. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  683. Santos ARS et al. (2018). Kinetics and structural features of dimeric glutamine-dependent bacterial NAD(+)… [PMID: 29581233]

    Laboratory literature summary: Kinetics and structural features of dimeric glutamine-dependent bacterial NAD(+) synthetases suggest evolutionary adaptation to…. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  684. Tsang F et al. (2015). Reduced Ssy1-Ptr3-Ssy5 (SPS) signaling extends replicative life span by enhancing NAD+… [PMID: 25825491]

    Laboratory literature summary: Reduced Ssy1-Ptr3-Ssy5 (SPS) signaling extends replicative life span by enhancing NAD+ homeostasis in Saccharomyces cerevisiae. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  685. Pinaire JA et al. (2004). Regulation of NAD(P)H:quininone oxidoreductase by glucocorticoids [PMID: 15364549]

    Laboratory literature summary: Regulation of NAD(P)H:quininone oxidoreductase by glucocorticoids. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  686. Kawai M et al. (2025). Gnetin C sensitizes darolutamide-resistant prostate oncology research models cells by… [PMID: 40393106]

    Laboratory literature summary: Gnetin C sensitizes darolutamide-resistant prostate oncology research models cells by targeting NAD(+) and energy metabolism. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  687. Lennon MB et al. (1976). The effect of NAD+ and NAD+ analogs on protein synthesis in rabbit reticulocytes:… [PMID: 186048]

    Laboratory literature summary: The effect of NAD+ and NAD+ analogs on protein synthesis in rabbit reticulocytes: replacement of the energy regenerating system. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  688. Schoenmann Z et al. (2010). Axonal degeneration is regulated by the apoptotic machinery or a NAD+-sensitive… [PMID: 20445064]

    Laboratory literature summary: Axonal degeneration is regulated by the apoptotic machinery or a NAD+-sensitive pathway in insects and mammals. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  689. Aleshin VA et al. (2015). Mitochondrial Impairment May Increase Cellular NAD(P)H: Resazurin Oxidoreductase… [PMID: 26308058]

    Laboratory literature summary: Mitochondrial Impairment May Increase Cellular NAD(P)H: Resazurin Oxidoreductase Activity, Perturbing the NAD(P)H-Based Viability Assays. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  690. Tsang F et al. (2015). Less is more: Nutrient limitation induces cross-talk of nutrient sensing pathways with… [PMID: 27683589]

    Laboratory literature summary: Less is more: Nutrient limitation induces cross-talk of nutrient sensing pathways with NAD(+) homeostasis and contributes to longevity. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  691. Bock KW (2021). Aryl hydrocarbon receptor (AHR) functions in infectious and sterile inflammation and… [PMID: 34559251]

    Laboratory literature summary: Aryl hydrocarbon receptor (AHR) functions in infectious and sterile inflammation and NAD(+)-dependent metabolic adaptation. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  692. Olomucki A et al. (1975). Study of coenzyme binding site of octopine dehydrogenase using analogues of NAD+ [PMID: 170100]

    Laboratory literature summary: Study of coenzyme binding site of octopine dehydrogenase using analogues of NAD+. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  693. Tronconi MA et al. (2018). Chimeric Structure of Plant Malic Enzyme Family: Different Evolutionary Scenarios for… [PMID: 29868045]

    Laboratory literature summary: Chimeric Structure of Plant Malic Enzyme Family: Different Evolutionary Scenarios for NAD- and NADP-Dependent Isoforms. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  694. Kun E et al. (1975). Macromolecular enzymatic product of NAD+ in liver mitochondria [PMID: 165508]

    Laboratory literature summary: Macromolecular enzymatic product of NAD+ in liver mitochondria. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  695. Lloret A et al. (2019). PGC-1α, Sirtuins and PARPs in Huntington's Disease and Other Neurodegenerative… [PMID: 31065944]

    Laboratory literature summary: PGC-1α, Sirtuins and PARPs in Huntington's Disease and Other Neurodegenerative Conditions: NAD+ to Rule Them All. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  696. Hong YH et al. (2024). Artificial Photosynthesis for Regioselective Reduction of NAD(P)(+) to NAD(P)H Using… [PMID: 38350862]

    Laboratory literature summary: Artificial Photosynthesis for Regioselective Reduction of NAD(P)(+) to NAD(P)H Using Water as an Electron and Proton Source. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  697. Gujar AD et al. (2016). An NAD+-dependent transcriptional program governs self-renewal and radiation… [PMID: 27930300]

    Laboratory literature summary: An NAD+-dependent transcriptional program governs self-renewal and radiation resistance in glioblastoma. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  698. Wang P et al. (2016). Laboratory research record on NAD+ [PMID: 27173464]

    PubMed laboratory record discussing NAD+ in a research context. Review the full methods and limitations on PubMed; research use only.

  699. Choi SE et al. (2013). Elevated microRNA-34a in metabolic research models reduces NAD+ levels and SIRT1… [PMID: 23834033]

    Laboratory literature summary: Elevated microRNA-34a in metabolic research models reduces NAD+ levels and SIRT1 activity by directly targeting NAMPT. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  700. Ferraris DM et al. (2020). Targeting NAD-dependent dehydrogenases in drug discovery against infectious diseases… [PMID: 32311017]

    Laboratory literature summary: Targeting NAD-dependent dehydrogenases in drug discovery against infectious diseases and oncology research models. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  701. Stoppiglia LF et al. (2008). Altered NAD(P)H production in neonatal rat islets resistant to H2O2 [PMID: 18930068]

    Laboratory literature summary: Altered NAD(P)H production in neonatal rat islets resistant to H2O2. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  702. Vierula PJ et al. (1987). Antibiotic-induced derepression of the NAD-specific glutamate dehydrogenase of… [PMID: 2822659]

    Laboratory literature summary: Antibiotic-induced derepression of the NAD-specific glutamate dehydrogenase of Neurospora crassa. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  703. Matsuo M et al. (1996). Cloning and expression of the cDNA for mouse NAD(+)-dependent 15-hydroxyprostaglandin… [PMID: 8950170]

    Laboratory literature summary: Cloning and expression of the cDNA for mouse NAD(+)-dependent 15-hydroxyprostaglandin dehydrogenase. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  704. Chen S et al. (1979). Interaction of arylazido-beta-alanyl NAD+, a photoaffinity analogue of NAD+, with… [PMID: 222761]

    Laboratory literature summary: Interaction of arylazido-beta-alanyl NAD+, a photoaffinity analogue of NAD+, with mitochondrial dihydronicotinamide adenine…. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  705. Peng YC et al. (2024). NAD activates olfactory receptor 1386 to regulate type I interferon responses in… [PMID: 38809710]

    Laboratory literature summary: NAD activates olfactory receptor 1386 to regulate type I interferon responses in Plasmodium yoelii YM infection. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  706. Seifert J (2017). Embryo yolk sac membrane kynurenine formamidase of l-tryptophan to NAD(+) pathway as a… [PMID: 28782636]

    Laboratory literature summary: Embryo yolk sac membrane kynurenine formamidase of l-tryptophan to NAD(+) pathway as a primary target for organophosphorus insecticides…. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  707. Tang M et al. (2004). NAD-sensitive hydrogel for the release of macromolecules [PMID: 15329937]

    Laboratory literature summary: NAD-sensitive hydrogel for the release of macromolecules. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  708. Winkler U et al. (2015). Crosstalk of Signaling and Metabolism Mediated by the NAD(+)/NADH Redox State in Brain… [PMID: 25876186]

    Laboratory literature summary: Crosstalk of Signaling and Metabolism Mediated by the NAD(+)/NADH Redox State in Brain Cells. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  709. Zähringer S et al. (2022). Defined stereoisomers of 2″-amino NAD(+) and their activity against research subjects… [PMID: 35716588]

    Laboratory literature summary: Defined stereoisomers of 2″-amino NAD(+) and their activity against research subjects sirtuins and a bacterial (ADP-ribosyl) transferase. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  710. Guo X et al. (2023). NAD + salvage governs mitochondrial metabolism, invigorating natural killer cell… [PMID: 35815363]

    Laboratory literature summary: NAD + salvage governs mitochondrial metabolism, invigorating natural killer cell antitumor immunity. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  711. Zou MH (2010). Is NAD(P)H oxidase a missing link for air pollution-enhanced metabolic research models? [PMID: 21084700]

    Laboratory literature summary: Is NAD(P)H oxidase a missing link for air pollution-enhanced metabolic research models?. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  712. Stols L et al. (1997). Production of succinic acid through overexpression of NAD(+)-dependent malic enzyme in… [PMID: 9212416]

    Laboratory literature summary: Production of succinic acid through overexpression of NAD(+)-dependent malic enzyme in an Escherichia coli mutant. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  713. Pandolfi S et al. (2026). NAD⁺ biology and supplementation: From mechanisms to laboratory perspectives [PMID: 42489969]

    Laboratory literature summary: NAD⁺ biology and supplementation: From mechanisms to laboratory perspectives. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  714. Ko BS et al. (2006). Molecular cloning and characterization of NAD(+)-dependent xylitol dehydrogenase from… [PMID: 17137322]

    Laboratory literature summary: Molecular cloning and characterization of NAD(+)-dependent xylitol dehydrogenase from Candida tropicalis ATCC 20913. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  715. Didierjean C et al. (1997). A crystallographic comparison between mutated glyceraldehyde-3-phosphate… [PMID: 9175858]

    Laboratory literature summary: A crystallographic comparison between mutated glyceraldehyde-3-phosphate dehydrogenases from Bacillus stearothermophilus complexed with…. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  716. Wang Y et al. (2024). Nicotinamide Mononucleotide (NMN) Ameliorates Free Fatty Acid-Induced Pancreatic… [PMID: 39408861]

    Laboratory literature summary: Nicotinamide Mononucleotide (NMN) Ameliorates Free Fatty Acid-Induced Pancreatic β-Cell Dysfunction via the NAD(+)/AMPK/SIRT1/HIF-1α Pathway. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  717. Ansari HR et al. (2010). Identification of NAD interacting residues in proteins [PMID: 20353553]

    Laboratory literature summary: Identification of NAD interacting residues in proteins. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  718. Zupko SP et al. (2025). Crystal structure of a short-chain dehydrogenase from Brucella ovis with apo and… [PMID: 41216818]

    Laboratory literature summary: Crystal structure of a short-chain dehydrogenase from Brucella ovis with apo and coenzyme NAD(+)-bound protomer chains. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  719. Ogire E et al. (2024). Dengue Virus dependence on glucokinase activity and glycolysis Confers Sensitivity to… [PMID: 38909960]

    Laboratory literature summary: Dengue Virus dependence on glucokinase activity and glycolysis Confers Sensitivity to NAD(H) biosynthesis inhibitors. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  720. Zhang J et al. (2019). Switch of NAD Salvage to de novo Biosynthesis Sustains SIRT1-RelB-Dependent… [PMID: 31681271]

    Laboratory literature summary: Switch of NAD Salvage to de novo Biosynthesis Sustains SIRT1-RelB-Dependent Inflammatory Tolerance. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  721. Liu R et al. (2007). Depolarization of the macula densa induces superoxide production via NAD(P)H oxidase [PMID: 17344185]

    Laboratory literature summary: Depolarization of the macula densa induces superoxide production via NAD(P)H oxidase. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  722. Revollo JR et al. (2004). The NAD biosynthesis pathway mediated by nicotinamide phosphoribosyltransferase… [PMID: 15381699]

    Laboratory literature summary: The NAD biosynthesis pathway mediated by nicotinamide phosphoribosyltransferase regulates Sir2 activity in mammalian cells. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  723. Kustatscher G et al. (2005). Splicing regulates NAD metabolite binding to histone macroH2A [PMID: 15965484]

    Laboratory literature summary: Splicing regulates NAD metabolite binding to histone macroH2A. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  724. Li Y et al. (2014). NAD(+)-independent aldehyde oxidase catalyzes cofactor balanced 3-hydroxypropionic… [PMID: 24980850]

    Laboratory literature summary: NAD(+)-independent aldehyde oxidase catalyzes cofactor balanced 3-hydroxypropionic acid production in Klebsiella pneumoniae. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  725. Wang P et al. (2014). Intracellular NAMPT-NAD+-SIRT1 cascade improves post-ischaemic vascular repair by… [PMID: 25341895]

    Laboratory literature summary: Intracellular NAMPT-NAD+-SIRT1 cascade improves post-ischaemic vascular repair by modulating Notch signalling in endothelial progenitors. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  726. Honarmand Ebrahimi K et al. (2020). DdhCTP produced by the radical-SAM activity of RSAD2 (viperin) inhibits the NAD(+)… [PMID: 32232843]

    Laboratory literature summary: ddhCTP produced by the radical-SAM activity of RSAD2 (viperin) inhibits the NAD(+) -dependent activity of enzymes to modulate metabolism. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  727. Tatsuno I et al. (2007). Characterization of the NAD-glycohydrolase in streptococcal strains [PMID: 18048938]

    Laboratory literature summary: Characterization of the NAD-glycohydrolase in streptococcal strains. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  728. Shimizu M (2018). NAD(+)/NADH homeostasis affects metabolic adaptation to hypoxia and secondary… [PMID: 29327656]

    Laboratory literature summary: NAD(+)/NADH homeostasis affects metabolic adaptation to hypoxia and secondary metabolite production in filamentous fungi. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  729. Cormier MJ et al. (1981). Plant and fungal calmodulin: Ca2+-dependent regulation of plant NAD kinase [PMID: 6280867]

    Laboratory literature summary: Plant and fungal calmodulin: Ca2+-dependent regulation of plant NAD kinase. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  730. Ito E et al. (2015). Laboratory research record on NAD+ [PMID: 26651515]

    PubMed laboratory record discussing NAD+ in a research context. Review the full methods and limitations on PubMed; research use only.

  731. Jeude LM et al. (2025). Metabolic Changes in Living research subjects Lymphoma Cells Intervening NAD (+)… [PMID: 41103169]

    Laboratory literature summary: Metabolic Changes in Living research subjects Lymphoma Cells Intervening NAD (+) Metabolism as Revealed by NAD(P)H-Fluorescence Lifetime…. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  732. Benavente CA et al. (2009). NAD in skin: investigational approaches for niacin [PMID: 19149600]

    Laboratory literature summary: NAD in skin: investigational approaches for niacin. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  733. Deng PS et al. (1990). N-arylazido-beta-alanyl-NAD+, a new NAD+ photoaffinity analogue. Synthesis and… [PMID: 2340277]

    Laboratory literature summary: N-arylazido-beta-alanyl-NAD+, a new NAD+ photoaffinity analogue. Synthesis and labeling of mitochondrial NADH dehydrogenase. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  734. de Torres M et al. (2012). Towards recyclable NAD(P)H regeneration catalysts [PMID: 22895028]

    Laboratory literature summary: Towards recyclable NAD(P)H regeneration catalysts. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  735. Murata H et al. (2023). STAT1/3 signaling suppresses axon degeneration and neuronal cell death through… [PMID: 37187216]

    Laboratory literature summary: STAT1/3 signaling suppresses axon degeneration and neuronal cell death through regulation of NAD(+)-biosynthetic and consuming enzymes. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  736. Duan H et al. (2025). Nicotinamide mononucleotide ameliorates hypertriglyceridemia pancreatitis via… [PMID: 40215777]

    Laboratory literature summary: Nicotinamide mononucleotide ameliorates hypertriglyceridemia pancreatitis via NAD(+)/SIRT1-mediated TXNIP suppression and NOTCH pathway…. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  737. Hayashida S et al. (2010). Fasting promotes the expression of SIRT1, an NAD+ -dependent protein deacetylase, via… [PMID: 20148352]

    Laboratory literature summary: Fasting promotes the expression of SIRT1, an NAD+ -dependent protein deacetylase, via activation of PPARalpha in mice. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  738. Chang H et al. (2021). TFB2M activates aerobic glycolysis in hepatocellular carcinoma cells through the… [PMID: 33982328]

    Laboratory literature summary: TFB2M activates aerobic glycolysis in hepatocellular carcinoma cells through the NAD(+) /SIRT3/HIF-1α signaling. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  739. Gao L et al. (2004). Superoxide mediates sympathoexcitation in heart failure: roles of angiotensin II and… [PMID: 15459075]

    Laboratory literature summary: Superoxide mediates sympathoexcitation in heart failure: roles of angiotensin II and NAD(P)H oxidase. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  740. White WE et al. (1975). Nicotinamide 1,N6 ethenoadenine dinucleotide (epsilon NAD) as a coenzyme substrate for… [PMID: 240287]

    Laboratory literature summary: Nicotinamide 1,N6 ethenoadenine dinucleotide (epsilon NAD) as a coenzyme substrate for glutamate dehydrogenase. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  741. Kulikova V et al. (2015). Generation, Release, and Uptake of the NAD Precursor Nicotinic Acid Riboside by… [PMID: 26385918]

    Laboratory literature summary: Generation, Release, and Uptake of the NAD Precursor Nicotinic Acid Riboside by research subjects Cells. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  742. González J et al. (1988). Kinetics of the diacetyl and 2,3-pentanedione reduction by diacetyl reductase… [PMID: 3150685]

    Laboratory literature summary: Kinetics of the diacetyl and 2,3-pentanedione reduction by diacetyl reductase (alpha-diketone reductase (NAD)) from Staphylococcus aureus. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  743. Cerutti R et al. (2014). NAD(+)-dependent activation of Sirt1 corrects the phenotype in a mouse model of… [PMID: 24814483]

    Laboratory literature summary: NAD(+)-dependent activation of Sirt1 corrects the phenotype in a mouse model of mitochondrial disease. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  744. Yao F et al. (2011). Pressor effect of apelin-13 in the rostral ventrolateral medulla: role of NAD(P)H… [PMID: 21047952]

    Laboratory literature summary: Pressor effect of apelin-13 in the rostral ventrolateral medulla: role of NAD(P)H oxidase-derived superoxide. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  745. Pacaud K et al. (2003). Determination of the transglycosidation activity of NAD+ glycohydrolases with… [PMID: 12877879]

    Laboratory literature summary: Determination of the transglycosidation activity of NAD+ glycohydrolases with 4-(2'-alkyl-sulfanyl-vinyl)-pyridine derivatives…. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  746. Guse AH (2015). Calcium mobilizing second messengers derived from NAD [PMID: 25534250]

    Laboratory literature summary: Calcium mobilizing second messengers derived from NAD. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  747. Schuber F et al. (1980). Amphipathic properties of calf spleen NAD glycohydrolase [PMID: 6986287]

    Laboratory literature summary: Amphipathic properties of calf spleen NAD glycohydrolase. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  748. Saha A et al. (1988). Modification of NAD-dependent isocitrate dehydrogenase by the 2',3'-dialdehyde… [PMID: 3401017]

    Laboratory literature summary: Modification of NAD-dependent isocitrate dehydrogenase by the 2',3'-dialdehyde derivatives of NAD, NADH, NADP, and NADPH. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  749. Okai M et al. (2006). Crystal structures of the short-chain flavin reductase HpaC from Sulfolobus tokodaii… [PMID: 16618099]

    Laboratory literature summary: Crystal structures of the short-chain flavin reductase HpaC from Sulfolobus tokodaii strain 7 in its three states: NAD(P)(+)(-)free,…. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  750. Haberland ME et al. (1980). NAD-specific glutamate dehydrogenase of Neurospora crassa. Limited action of trypsin… [PMID: 6447151]

    Laboratory literature summary: NAD-specific glutamate dehydrogenase of Neurospora crassa. Limited action of trypsin and the presence of two distinct domains. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  751. Wakabayashi S et al. (1987). Amino acid sequence of the NAD (H)–binding region of the mitochondrial nicotinamide… [PMID: 3426633]

    Laboratory literature summary: Amino acid sequence of the NAD (H)–binding region of the mitochondrial nicotinamide nucleotide transhydrogenase modified by…. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  752. Zhou MS et al. (2006). Reduced NAD(P)H oxidase in low renin hypertension: link among angiotensin II,… [PMID: 16344366]

    Laboratory literature summary: Reduced NAD(P)H oxidase in low renin hypertension: link among angiotensin II, atherogenesis, and blood pressure. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  753. Lu X et al. (2025). NAD(+) Metabolism Reprogramming Drives SIRT1-Dependent Deacetylation Inducing PD-L1… [PMID: 39988985]

    Laboratory literature summary: NAD(+) Metabolism Reprogramming Drives SIRT1-Dependent Deacetylation Inducing PD-L1 Nuclear Localization in Cervical oncology research…. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  754. Pustovit KB et al. (2014). [Influence exogenous nicotinamide adenine dinucleotide (NAD+) on contractile and… [PMID: 25272455]

    Laboratory literature summary: [Influence exogenous nicotinamide adenine dinucleotide (NAD+) on contractile and bioelectric activity of the rat heart]. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  755. Gao L et al. (2005). Sympathoexcitation by central ANG II: roles for AT1 receptor upregulation and NAD(P)H… [PMID: 15637113]

    Laboratory literature summary: Sympathoexcitation by central ANG II: roles for AT1 receptor upregulation and NAD(P)H oxidase in RVLM. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  756. Hoshino S et al. (1997). Mapping of the catalytic and epitopic sites of research subjects CD38/NAD+… [PMID: 8992990]

    Laboratory literature summary: Mapping of the catalytic and epitopic sites of research subjects CD38/NAD+ glycohydrolase to a functional domain in the carboxyl terminus. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  757. Colman RF (1997). Affinity labels for NAD(P)-specific sites [PMID: 9211314]

    Laboratory literature summary: Affinity labels for NAD(P)-specific sites. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  758. Zhang J (1997). Use of biotinylated NAD to label and purify ADP-ribosylated proteins [PMID: 9211321]

    Laboratory literature summary: Use of biotinylated NAD to label and purify ADP-ribosylated proteins. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  759. Endo S et al. (2013). Characterization of rabbit morphine 6-dehydrogenase and two NAD(+)-dependent… [PMID: 23228597]

    Laboratory literature summary: Characterization of rabbit morphine 6-dehydrogenase and two NAD(+)-dependent 3α(17β)-hydroxysteroid dehydrogenases. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  760. Essigmann B et al. (1999). Prediction of the active-site structure and NAD(+) binding in SQD1, a protein… [PMID: 10462438]

    Laboratory literature summary: Prediction of the active-site structure and NAD(+) binding in SQD1, a protein essential for sulfolipid biosynthesis in Arabidopsis. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  761. Rousslang K et al. (1989). Phosphorescence maxima and triplet state lifetimes of NAD+ and epsilon-NAD+ in ternary… [PMID: 2710823]

    Laboratory literature summary: Phosphorescence maxima and triplet state lifetimes of NAD+ and epsilon-NAD+ in ternary complexes with horse liver alcohol dehydrogenase. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  762. Gerlach G et al. (2006). NAD+ utilization in Pasteurellaceae: simplification of a complex pathway [PMID: 16980474]

    Laboratory literature summary: NAD+ utilization in Pasteurellaceae: simplification of a complex pathway. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  763. Karlsson A et al. (2003). Tetrameric NAD-dependent alcohol dehydrogenase [PMID: 12604209]

    Laboratory literature summary: Tetrameric NAD-dependent alcohol dehydrogenase. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  764. Inoue H et al. (2002). Biochemical and molecular characterization of the NAD(+)-dependent isocitrate… [PMID: 12204383]

    Laboratory literature summary: Biochemical and molecular characterization of the NAD(+)-dependent isocitrate dehydrogenase from the chemolithotroph Acidithiobacillus…. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  765. Slight SH et al. (1996). High affinity NAD(+)-dependent 11 beta-hydroxysteroid dehydrogenase in the research… [PMID: 8732505]

    Laboratory literature summary: High affinity NAD(+)-dependent 11 beta-hydroxysteroid dehydrogenase in the research subjects heart. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  766. Lin AP et al. (2011). Basis for half-site ligand binding in yeast NAD(+)-specific isocitrate dehydrogenase [PMID: 21861471]

    Laboratory literature summary: Basis for half-site ligand binding in yeast NAD(+)-specific isocitrate dehydrogenase. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  767. Logan RW et al. (2019). NAD+ cellular redox and SIRT1 regulate the diurnal rhythms of tyrosine hydroxylase and… [PMID: 29728703]

    Laboratory literature summary: NAD+ cellular redox and SIRT1 regulate the diurnal rhythms of tyrosine hydroxylase and conditioned cocaine reward. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  768. Moss J et al. (1999). Characterization of NAD:arginine ADP-ribosyltransferases [PMID: 10331646]

    Laboratory literature summary: Characterization of NAD:arginine ADP-ribosyltransferases. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  769. Biellmann JF et al. (1971). [Stereochemistry of the transfer of hydrogen on analogues of NAD+] [PMID: 4326911]

    Laboratory literature summary: [Stereochemistry of the transfer of hydrogen on analogues of NAD+]. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  770. Furukawa A et al. (2007). H2O2 accelerates cellular senescence by accumulation of acetylated p53 via decrease in… [PMID: 17595514]

    Laboratory literature summary: H2O2 accelerates cellular senescence by accumulation of acetylated p53 via decrease in the function of SIRT1 by NAD+ depletion. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  771. Cai H et al. (2003). The vascular NAD(P)H oxidases as investigational targets in cardiovascular diseases [PMID: 12967772]

    Laboratory literature summary: The vascular NAD(P)H oxidases as investigational targets in cardiovascular diseases. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  772. Wong W et al. (2022). Pgc-1α controls epidermal stem cell fate and skin repair by sustaining NAD(+)… [PMID: 35987498]

    Laboratory literature summary: Pgc-1α controls epidermal stem cell fate and skin repair by sustaining NAD(+) homeostasis during aging. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  773. Yang M et al. (2006). Insulin-stimulated NADH/NAD+ redox state increases NAD(P)H oxidase activity in… [PMID: 16733230]

    Laboratory literature summary: Insulin-stimulated NADH/NAD+ redox state increases NAD(P)H oxidase activity in cultured rat vascular smooth muscle cells. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  774. Brenner C (2025). The NARly side of whole-body NAD homeostasis [PMID: 40602367]

    Laboratory literature summary: The NARly side of whole-body NAD homeostasis. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  775. Sverkeli LJ et al. (2021). Enzymatic and Chemical Syntheses of Vacor Analogs of Nicotinamide Riboside, NMN and NAD [PMID: 34356669]

    Laboratory literature summary: Enzymatic and Chemical Syntheses of Vacor Analogs of Nicotinamide Riboside, NMN and NAD. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  776. Pekala PH et al. (1980). Self-inactivation of an erythrocyte NAD glycohydrolase [PMID: 6248764]

    Laboratory literature summary: Self-inactivation of an erythrocyte NAD glycohydrolase. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  777. McDonagh T et al. (2005). Microplate filtration assay for nicotinamide release from NAD using a boronic acid resin [PMID: 16085423]

    Laboratory literature summary: Microplate filtration assay for nicotinamide release from NAD using a boronic acid resin. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  778. Velarde JJ et al. (2022). Structure of the Streptococcus pyogenes NAD(+) Glycohydrolase Translocation Domain and… [PMID: 34694903]

    Laboratory literature summary: Structure of the Streptococcus pyogenes NAD(+) Glycohydrolase Translocation Domain and Its Essential Role in Toxin Binding to…. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  779. Ali TH et al. (2014). Purification and partial characterization of NAD aminohydrolase from Aspergillus… [PMID: 24158390]

    Laboratory literature summary: Purification and partial characterization of NAD aminohydrolase from Aspergillus oryzae NRRL447. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  780. Gerlach D et al. (1997). Studies on streptococcal NAD-glycohydrolase. Copurification of streptodornase A [PMID: 9331723]

    Laboratory literature summary: Studies on streptococcal NAD-glycohydrolase. Copurification of streptodornase A. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  781. Shi Q et al. (2022). The tetrameric assembly of 2-aminomuconic 6-semialdehyde dehydrogenase is a functional… [PMID: 34806815]

    Laboratory literature summary: The tetrameric assembly of 2-aminomuconic 6-semialdehyde dehydrogenase is a functional requirement of cofactor NAD(+) binding. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  782. Okamoto H et al. (1995). New aspects of the physiological significance of NAD, poly ADP-ribose and cyclic… [PMID: 8527489]

    Laboratory literature summary: New aspects of the physiological significance of NAD, poly ADP-ribose and cyclic ADP-ribose. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  783. Okita RT et al. (1990). NAD(+)-dependent 15-hydroxyprostaglandin dehydrogenase: immunochemical… [PMID: 2350175]

    Laboratory literature summary: NAD(+)-dependent 15-hydroxyprostaglandin dehydrogenase: immunochemical characterization of the lung enzyme from developmental research…. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  784. Gupta P et al. (2011). Aromatic interactions at atom-to-atom contact and just beyond: a case study of protein… [PMID: 21903128]

    Laboratory literature summary: Aromatic interactions at atom-to-atom contact and just beyond: a case study of protein interactions of NAD⁺/NADP⁺. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  785. Cantó C et al. (2012). The NAD(+) precursor nicotinamide riboside enhances oxidative metabolism and protects… [PMID: 22682224]

    Laboratory literature summary: The NAD(+) precursor nicotinamide riboside enhances oxidative metabolism and protects against high-fat diet-induced metabolic research…. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  786. Wacker A et al. (1967). [Biosynthesis of folic acid- and NAD-analogs] [PMID: 4298679]

    Laboratory literature summary: [Biosynthesis of folic acid- and NAD-analogs]. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  787. Kuzmin VS et al. (2016). Effects of exogenous nicotinamide adenine dinucleotide (NAD+) in the rat heart are… [PMID: 27350532]

    Laboratory literature summary: Effects of exogenous nicotinamide adenine dinucleotide (NAD+) in the rat heart are mediated by P2 purine receptors. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  788. Kunjithapatham R et al. (2018). GAPDH with NAD(+)-binding site mutation competitively inhibits the wild-type and… [PMID: 30077773]

    Laboratory literature summary: GAPDH with NAD(+)-binding site mutation competitively inhibits the wild-type and affects glucose metabolism in oncology research models. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  789. Tribble JR et al. (2024). NMNAT2 is a druggable target to drive neuronal NAD production [PMID: 39048544]

    Laboratory literature summary: NMNAT2 is a druggable target to drive neuronal NAD production. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  790. Gebicki J et al. (2004). Transient species in the stepwise interconversion of NADH and NAD+ [PMID: 15196047]

    Laboratory literature summary: Transient species in the stepwise interconversion of NADH and NAD+. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  791. Martins BM et al. (2005). Structural basis for stereo-specific catalysis in NAD(+)-dependent… [PMID: 15634349]

    Laboratory literature summary: Structural basis for stereo-specific catalysis in NAD(+)-dependent (R)-2-hydroxyglutarate dehydrogenase from Acidaminococcus fermentans. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  792. Lee IS et al. (2002). The tightness contribution to the Brønsted alpha for hydride transfer between NAD+… [PMID: 12083929]

    Laboratory literature summary: The tightness contribution to the Brønsted alpha for hydride transfer between NAD+ analogues. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  793. Dantas AP et al. (2004). Gender differences in superoxide generation in microvessels of hypertensive rats: role… [PMID: 14732198]

    Laboratory literature summary: Gender differences in superoxide generation in microvessels of hypertensive rats: role of NAD(P)H-oxidase. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  794. Fukuzumi S et al. (2002). Significant enhancement of electron transfer reduction of NAD(+) analogues by… [PMID: 12149023]

    Laboratory literature summary: Significant enhancement of electron transfer reduction of NAD(+) analogues by complexation with scandium ion and the detection of the…. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  795. Maraldi T et al. (2009). NAD(P)H oxidase isoform Nox2 plays a prosurvival role in research subjects leukaemia cells [PMID: 19707918]

    Laboratory literature summary: NAD(P)H oxidase isoform Nox2 plays a prosurvival role in research subjects leukaemia cells. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  796. Pais TF et al. (2013). The NAD-dependent deacetylase sirtuin 2 is a suppressor of microglial activation and… [PMID: 24013120]

    Laboratory literature summary: The NAD-dependent deacetylase sirtuin 2 is a suppressor of microglial activation and brain inflammation. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  797. Luciani DS et al. (2006). Ca2+ controls slow NAD(P)H oscillations in glucose-stimulated mouse pancreatic islets [PMID: 16455690]

    Laboratory literature summary: Ca2+ controls slow NAD(P)H oscillations in glucose-stimulated mouse pancreatic islets. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  798. Coves J et al. (1993). Reduction and mobilization of iron by a NAD(P)H:flavin oxidoreductase from Escherichia… [PMID: 8436123]

    Laboratory literature summary: Reduction and mobilization of iron by a NAD(P)H:flavin oxidoreductase from Escherichia coli. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  799. Casanova-Schmitz M et al. (1984). Oxidation of formaldehyde and acetaldehyde by NAD+-dependent dehydrogenases in rat… [PMID: 6477684]

    Laboratory literature summary: Oxidation of formaldehyde and acetaldehyde by NAD+-dependent dehydrogenases in rat nasal mucosal homogenates. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  800. Kulinskiĭ VI et al. (1982). [Activation of energy-independent liver mitochondrial NAD(P)-transhydrogenase by… [PMID: 6286260]

    Laboratory literature summary: [Activation of energy-independent liver mitochondrial NAD(P)-transhydrogenase by catecholamines, glucagon and cAMP]. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  801. Bellac CL et al. (2010). Inhibition of the kynurenine-NAD+ pathway leads to energy failure and exacerbates… [PMID: 20940631]

    Laboratory literature summary: Inhibition of the kynurenine-NAD+ pathway leads to energy failure and exacerbates apoptosis in pneumococcal meningitis. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  802. Bruzzone S et al. (2009). Catastrophic NAD+ depletion in activated T lymphocytes through Nampt inhibition… [PMID: 19936064]

    Laboratory literature summary: Catastrophic NAD+ depletion in activated T lymphocytes through Nampt inhibition reduces demyelination and disability in EAE. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  803. Bondi CD et al. (2010). NAD(P)H oxidase mediates TGF-beta1-induced activation of kidney myofibroblasts [PMID: 19926889]

    Laboratory literature summary: NAD(P)H oxidase mediates TGF-beta1-induced activation of kidney myofibroblasts. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  804. Vidugiriene J et al. (2014). Bioluminescent cell-based NAD(P)/NAD(P)H assays for rapid dinucleotide measurement and… [PMID: 25506801]

    Laboratory literature summary: Bioluminescent cell-based NAD(P)/NAD(P)H assays for rapid dinucleotide measurement and inhibitor screening. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  805. Pang J et al. (2015). Effect of NAD on PARP-mediated insulin sensitivity in oleic acid studied hepatocytes [PMID: 25536389]

    Laboratory literature summary: Effect of NAD on PARP-mediated insulin sensitivity in oleic acid studied hepatocytes. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  806. Grange L et al. (2006). NAD(P)H oxidase activity of Nox4 in chondrocytes is both inducible and involved in… [PMID: 16987005]

    Laboratory literature summary: NAD(P)H oxidase activity of Nox4 in chondrocytes is both inducible and involved in collagenase expression. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  807. Zhu H et al. (2004). NCB5OR is a novel soluble NAD(P)H reductase localized in the endoplasmic reticulum [PMID: 15131110]

    Laboratory literature summary: NCB5OR is a novel soluble NAD(P)H reductase localized in the endoplasmic reticulum. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  808. Gerlach D et al. (1996). Purification and some properties of streptococcal NAD-glycohydrolase [PMID: 8919458]

    Laboratory literature summary: Purification and some properties of streptococcal NAD-glycohydrolase. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  809. Han K et al. (2023). Boosting NAD preferentially blunts Th17 inflammation via arginine biosynthesis and… [PMID: 37586364]

    Laboratory literature summary: Boosting NAD preferentially blunts Th17 inflammation via arginine biosynthesis and redox control in healthy and psoriasis subjects. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  810. Murphy TH et al. (1991). Enhanced NAD(P)H:quinone reductase activity prevents glutamate toxicity produced by… [PMID: 1704427]

    Laboratory literature summary: Enhanced NAD(P)H:quinone reductase activity prevents glutamate toxicity produced by oxidative stress. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  811. Picchianti M et al. (2015). NAD-dependent ADP-ribosylation of the research subjects antimicrobial and… [PMID: 25128692]

    Laboratory literature summary: NAD-dependent ADP-ribosylation of the research subjects antimicrobial and immune-modulatory peptide LL-37 by ADP-ribosyltransferase-1. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  812. Dsouza Z et al. (2026). Synthesis of thermostable artificial nicotinamide cofactors: carba-NAD(+) and carba-NADP() [PMID: 42164813]

    Laboratory literature summary: Synthesis of thermostable artificial nicotinamide cofactors: carba-NAD(+) and carba-NADP(). Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  813. Chini CC et al. (2014). Targeting of NAD metabolism in pancreatic oncology research models cells: potential… [PMID: 24025713]

    Laboratory literature summary: Targeting of NAD metabolism in pancreatic oncology research models cells: potential novel research protocol for pancreatic tumors. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  814. Santidrian AF et al. (2013). Mitochondrial complex I activity and NAD+/NADH balance regulate breast oncology… [PMID: 23426180]

    Laboratory literature summary: Mitochondrial complex I activity and NAD+/NADH balance regulate breast oncology research models progression. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  815. Nakahata Y et al. (2008). The NAD+-dependent deacetylase SIRT1 modulates CLOCK-mediated chromatin remodeling and… [PMID: 18662547]

    Laboratory literature summary: The NAD+-dependent deacetylase SIRT1 modulates CLOCK-mediated chromatin remodeling and circadian control. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  816. Hoek JB et al. (1973). The NAD-linked isocitrate dehydrogenase activity in rat-liver mitochondria [PMID: 4147423]

    Laboratory literature summary: The NAD-linked isocitrate dehydrogenase activity in rat-liver mitochondria. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  817. Alefishat E et al. (2015). Effects of NAD at purine receptors in isolated blood vessels [PMID: 25315718]

    Laboratory literature summary: Effects of NAD at purine receptors in isolated blood vessels. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  818. Hong Y et al. (2024). The NAD(+) Precursor Nicotinamide Riboside Rescues Mitochondrial Defects and Neuronal… [PMID: 38385069]

    Laboratory literature summary: The NAD(+) Precursor Nicotinamide Riboside Rescues Mitochondrial Defects and Neuronal Loss in iPSC derived Cortical Organoid of Alpers'…. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  819. Zhao H et al. (2026). NAD Modification at the Battlefront in Plant-Pathogen Interactions [PMID: 41770839]

    Laboratory literature summary: NAD Modification at the Battlefront in Plant-Pathogen Interactions. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  820. Mogol AN et al. (2023). NAD+ Metabolism Generates a Metabolic Vulnerability in Endocrine-Resistant Metastatic… [PMID: 37170651]

    Laboratory literature summary: NAD+ Metabolism Generates a Metabolic Vulnerability in Endocrine-Resistant Metastatic Breast Tumors in research models. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  821. Lee IS et al. (2001). Primary kinetic isotope effects on hydride transfer from… [PMID: 11480968]

    Laboratory literature summary: Primary kinetic isotope effects on hydride transfer from 1,3-dimethyl-2-phenylbenzimidazoline to NAD(+) analogues. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  822. Gazanion E et al. (2011). The Leishmania nicotinamidase is essential for NAD+ production and parasite proliferation [PMID: 21819459]

    Laboratory literature summary: The Leishmania nicotinamidase is essential for NAD+ production and parasite proliferation. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  823. Lu CD et al. (2001). The gdhB gene of Pseudomonas aeruginosa encodes an arginine-inducible NAD(+)-dependent… [PMID: 11133942]

    Laboratory literature summary: The gdhB gene of Pseudomonas aeruginosa encodes an arginine-inducible NAD(+)-dependent glutamate dehydrogenase which is subject to…. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  824. Montaine F et al. (1987). Use of a polymer-bound flavin derivative for the rapid regeneration of NAD(P)+ from… [PMID: 3569267]

    Laboratory literature summary: Use of a polymer-bound flavin derivative for the rapid regeneration of NAD(P)+ from NAD(P)H in dehydrogenase systems. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  825. Elmorsy EA et al. (2025). Activation of nicotinamide phosphoribosyltransferase protects against unilateral renal… [PMID: 41033563]

    Laboratory literature summary: Activation of nicotinamide phosphoribosyltransferase protects against unilateral renal ischemia-reperfusion injury via the…. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  826. Kahn B et al. (2022). A Narrative Review of Nicotinamide Adenine Dinucleotide (NAD)+ Intermediates… [PMID: 36219044]

    Laboratory literature summary: A Narrative Review of Nicotinamide Adenine Dinucleotide (NAD)+ Intermediates Nicotinamide Riboside and Nicotinamide Mononucleotide for…. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  827. Pandey KK et al. (2026). Host Cell Central Carbon Metabolism and Cellular NAD(+) Pool Regulate Efficient… [PMID: 41902234]

    Laboratory literature summary: Host Cell Central Carbon Metabolism and Cellular NAD(+) Pool Regulate Efficient Replication of Vesicular Stomatitis Virus. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  828. Liu G et al. (1982). Nucleoside salvage pathway for NAD biosynthesis in Salmonella typhimurium [PMID: 6216244]

    Laboratory literature summary: Nucleoside salvage pathway for NAD biosynthesis in Salmonella typhimurium. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  829. Vorontsov EA et al. (1974). [New analogs of NAD containing a fluorescent pyridine fragment] [PMID: 4371877]

    Laboratory literature summary: [New analogs of NAD containing a fluorescent pyridine fragment]. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  830. Wnorowski A et al. (2021). Alterations in Kynurenine and NAD(+) Salvage Pathways during the Successful… [PMID: 34948292]

    Laboratory literature summary: Alterations in Kynurenine and NAD(+) Salvage Pathways during the Successful investigation of Inflammatory Bowel Disease Suggest HCAR3…. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  831. Tynan J et al. (2000). Synthesis of a highly substituted N(6)-linked immobilized NAD(+) derivative using a… [PMID: 11087682]

    Laboratory literature summary: Synthesis of a highly substituted N(6)-linked immobilized NAD(+) derivative using a rapid solid-phase modular approach: suitability for…. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  832. Klein C et al. (2009). Extracellular NAD(+) induces a rise in [Ca(2+)](i) in activated research subjects… [PMID: 19748117]

    Laboratory literature summary: Extracellular NAD(+) induces a rise in [Ca(2+)](i) in activated research subjects monocytes via engagement of P2Y(1) and P2Y(11) receptors. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  833. Szczepańska-Konkel M et al. (2003). Renal haemodynamics and natriuretic responses to intravenous administration of… [PMID: 12832719]

    Laboratory literature summary: Renal haemodynamics and natriuretic responses to intravenous administration of diadenosine tetraphosphate (Ap4A) and nicotinamide…. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  834. Flores-León M et al. (2019). Palmitic Acid-Induced NAD(+) Depletion is Associated with the Reduced Function of… [PMID: 31073968]

    Laboratory literature summary: Palmitic Acid-Induced NAD(+) Depletion is Associated with the Reduced Function of SIRT1 and Increased Expression of BACE1 in Hippocampal…. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  835. Lee HC (1994). Cyclic ADP-ribose: a calcium mobilizing metabolite of NAD+ [PMID: 7898468]

    Laboratory literature summary: Cyclic ADP-ribose: a calcium mobilizing metabolite of NAD+. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  836. Ju HQ et al. (2016). Regulation of the Nampt-mediated NAD salvage pathway and its investigational… [PMID: 27233476]

    Laboratory literature summary: Regulation of the Nampt-mediated NAD salvage pathway and its investigational implications in pancreatic oncology research models. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  837. Shi F et al. (2009). Molecular properties, functions, and potential applications of NAD kinases [PMID: 19430699]

    Laboratory literature summary: Molecular properties, functions, and potential applications of NAD kinases. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  838. He WM et al. (2024). The Fluorinated NAD Precursors Enhance FK866 Cytotoxicity by Activating SARM1 in… [PMID: 39336077]

    Laboratory literature summary: The Fluorinated NAD Precursors Enhance FK866 Cytotoxicity by Activating SARM1 in Glioblastoma Cells. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  839. Guedeney G et al. (1996). Evidence for an association of ndh B, ndh J gene products and… [PMID: 8557117]

    Laboratory literature summary: Evidence for an association of ndh B, ndh J gene products and ferredoxin-NADP-reductase as components of a chloroplastic NAD(P)H…. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  840. Toh H et al. (2019). Group A Streptococcus NAD-Glycohydrolase Inhibits Caveolin 1-Mediated Internalization… [PMID: 31850237]

    Laboratory literature summary: Group A Streptococcus NAD-Glycohydrolase Inhibits Caveolin 1-Mediated Internalization Into research subjects Epithelial Cells. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  841. Nichols BJ et al. (1995). Molecular cloning and deduced amino acid sequences of the alpha- and beta- subunits of… [PMID: 7575427]

    Laboratory literature summary: Molecular cloning and deduced amino acid sequences of the alpha- and beta- subunits of mammalian NAD(+)-isocitrate dehydrogenase. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  842. Lindenburg L et al. (2021). "NAD-display": Ultrahigh-Throughput in Vitro Screening of NAD(H) Dehydrogenases Using… [PMID: 33470025]

    Laboratory literature summary: "NAD-display": Ultrahigh-Throughput in Vitro Screening of NAD(H) Dehydrogenases Using Bead Display and Flow Cytometry. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  843. Lv Q et al. (2018). Norisoboldine, a natural AhR agonist, promotes Treg differentiation and attenuates… [PMID: 29449535]

    Laboratory literature summary: Norisoboldine, a natural AhR agonist, promotes Treg differentiation and attenuates colitis via targeting glycolysis and subsequent…. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  844. Kang H et al. (2021). Nicotinamide riboside, an NAD(+) precursor, attenuates inflammation and oxidative… [PMID: 33846538]

    Laboratory literature summary: Nicotinamide riboside, an NAD(+) precursor, attenuates inflammation and oxidative stress by activating sirtuin 1 in alcohol-stimulated…. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  845. Minami M et al. (2010). Clindamycin-induced CovS-mediated regulation of the production of virulent exoproteins… [PMID: 19805566]

    Laboratory literature summary: Clindamycin-induced CovS-mediated regulation of the production of virulent exoproteins streptolysin O, NAD glycohydrolase, and…. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  846. J CP et al. (2019). An integrative bioinformatics pipeline to demonstrate the alteration of the… [PMID: 31104322]

    Laboratory literature summary: An integrative bioinformatics pipeline to demonstrate the alteration of the interaction between the ALDH2*2 allele with NAD(+) and…. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  847. Agarwal AK (2000). Expression of HSD11K (NAD+ dependent 11beta-hydroxysteroid dehydrogenase) promoter… [PMID: 10921454]

    Laboratory literature summary: Expression of HSD11K (NAD+ dependent 11beta-hydroxysteroid dehydrogenase) promoter constructs in renal cell lines. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  848. Szczepankiewicz BG et al. (2012). Synthesis of carba-NAD and the structures of its ternary complexes with SIRT3 and SIRT5 [PMID: 22849721]

    Laboratory literature summary: Synthesis of carba-NAD and the structures of its ternary complexes with SIRT3 and SIRT5. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  849. Velu SE et al. (2003). Tethered dimers as NAD synthetase inhibitors with antibacterial activity [PMID: 12852767]

    Laboratory literature summary: Tethered dimers as NAD synthetase inhibitors with antibacterial activity. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  850. Chen H et al. (2015). Nmnat1-Rbp7 Is a Conserved Fusion-Protein That Combines NAD+ Catalysis of Nmnat1 with… [PMID: 26618989]

    Laboratory literature summary: Nmnat1-Rbp7 Is a Conserved Fusion-Protein That Combines NAD+ Catalysis of Nmnat1 with Subcellular Localization of Rbp7. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  851. Imai S et al. (2009). Laboratory research record on NAD+ [PMID: 19273250]

    PubMed laboratory record discussing NAD+ in a research context. Review the full methods and limitations on PubMed; research use only.

  852. Kashiwagi A et al. (1999). Endothelium-specific activation of NAD(P)H oxidase in aortas of exogenously… [PMID: 10600784]

    Laboratory literature summary: Endothelium-specific activation of NAD(P)H oxidase in aortas of exogenously hyperinsulinemic rats. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  853. Popinako АV et al. (2022). The role of Tyr102 residue in the functioning of bacterial NAD(+)-dependent formate… [PMID: 35667288]

    Laboratory literature summary: The role of Tyr102 residue in the functioning of bacterial NAD(+)-dependent formate dehydrogenase of Pseudomonas sp. 101. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  854. Nozawa T et al. (2021). Intracellular Group A Streptococcus Induces Golgi Fragmentation To Impair Host… [PMID: 33563838]

    Laboratory literature summary: Intracellular Group A Streptococcus Induces Golgi Fragmentation To Impair Host Defenses through Streptolysin O and NAD-Glycohydrolase. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  855. Smith KR et al. (2019). Dihydroxyacetone Exposure Alters NAD(P)H and Induces Mitochondrial Stress and… [PMID: 31328504]

    Laboratory literature summary: Dihydroxyacetone Exposure Alters NAD(P)H and Induces Mitochondrial Stress and Autophagy in HEK293T Cells. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  856. HOHORST HJ et al. (1964). [ON THE EFFECT OF INSULIN ON THE NAD-SYSTEM AND THE PHOSPHORYLATION OF ADENINE… [PMID: 14169598]

    Laboratory literature summary: [ON THE EFFECT OF INSULIN ON THE NAD-SYSTEM AND THE PHOSPHORYLATION OF ADENINE NUCLEOTIDES IN THE LIVER]. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  857. Ma K et al. (2001). NAD(P)H:rubredoxin oxidoreductase from Pyrococcus furiosus [PMID: 11398485]

    Laboratory literature summary: NAD(P)H:rubredoxin oxidoreductase from Pyrococcus furiosus. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  858. Mittl PR et al. (1994). Anatomy of an engineered NAD-binding site [PMID: 7833810]

    Laboratory literature summary: Anatomy of an engineered NAD-binding site. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  859. Penke M et al. (2015). Hepatic NAD salvage pathway is enhanced in mice on a high-fat diet [PMID: 26033245]

    Laboratory literature summary: Hepatic NAD salvage pathway is enhanced in mice on a high-fat diet. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  860. Love NR et al. (2015). NAD kinase controls animal NADP biosynthesis and is modulated via evolutionarily… [PMID: 25605906]

    Laboratory literature summary: NAD kinase controls animal NADP biosynthesis and is modulated via evolutionarily divergent calmodulin-dependent mechanisms. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  861. Zhang W et al. (2009). NAD(P)H oxidase-dependent regulation of CCL2 production during retinal inflammation [PMID: 19234337]

    Laboratory literature summary: NAD(P)H oxidase-dependent regulation of CCL2 production during retinal inflammation. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  862. Gertzberg N et al. (2004). NAD(P)H oxidase mediates the endothelial barrier dysfunction induced by TNF-alpha [PMID: 12807699]

    Laboratory literature summary: NAD(P)H oxidase mediates the endothelial barrier dysfunction induced by TNF-alpha. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  863. Harrison DG et al. (2003). Interactions of angiotensin II with NAD(P)H oxidase, oxidant stress and cardiovascular… [PMID: 12806586]

    Laboratory literature summary: Interactions of angiotensin II with NAD(P)H oxidase, oxidant stress and cardiovascular disease. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  864. Han MK et al. (1994). Glycosylphosphatidylinositol-anchored NAD glycohydrolase is released from peritoneal… [PMID: 7996054]

    Laboratory literature summary: Glycosylphosphatidylinositol-anchored NAD glycohydrolase is released from peritoneal macrophages activated by interferon-gamma and…. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  865. Blake RL et al. (1967). The effect of nicotinamide and homologs on the activity of inducible enzymes and NAD… [PMID: 4383205]

    Laboratory literature summary: The effect of nicotinamide and homologs on the activity of inducible enzymes and NAD content of the rat liver. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  866. Allen BL et al. (1981). Purification of malic enzyme from Ascaris suum using NAD+-agarose [PMID: 7242572]

    Laboratory literature summary: Purification of malic enzyme from Ascaris suum using NAD+-agarose. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  867. Wang P et al. (2012). Biochemical and molecular characterization of NAD(+)-dependent isocitrate… [PMID: 22117777]

    Laboratory literature summary: Biochemical and molecular characterization of NAD(+)-dependent isocitrate dehydrogenase from the ethanologenic bacterium Zymomonas mobilis. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  868. Cohen BE et al. (1997). Caged NADP and NAD. Synthesis and characterization of functionally distinct caged… [PMID: 9220992]

    Laboratory literature summary: Caged NADP and NAD. Synthesis and characterization of functionally distinct caged compounds. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  869. Chang WC et al. (1990). Isolation of rat renal NAD(+)-dependent 15-hydroxyprostaglandin dehydrogenase [PMID: 2251293]

    Laboratory literature summary: Isolation of rat renal NAD(+)-dependent 15-hydroxyprostaglandin dehydrogenase. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  870. Li J et al. (2024). Protein disulfide isomerase A4 binds to Brucella BtpB and mediates intracellular… [PMID: 39226825]

    Laboratory literature summary: Protein disulfide isomerase A4 binds to Brucella BtpB and mediates intracellular NAD(+)/NADH metabolism in RAW264.7 cells. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  871. Indini A et al. (2022). NAD/NAMPT and mTOR Pathways in Melanoma: Drivers of Drug Resistance and Prospective… [PMID: 36077374]

    Laboratory literature summary: NAD/NAMPT and mTOR Pathways in Melanoma: Drivers of Drug Resistance and Prospective investigational Targets. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  872. Sociali G et al. (2019). SIRT6 deacetylase activity regulates NAMPT activity and NAD(P)(H) pools in oncology… [PMID: 30514106]

    Laboratory literature summary: SIRT6 deacetylase activity regulates NAMPT activity and NAD(P)(H) pools in oncology research models cells. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  873. Karita E et al. (2004). Three types of tobacco calmodulins characteristically activate plant NAD kinase at… [PMID: 15564520]

    Laboratory literature summary: Three types of tobacco calmodulins characteristically activate plant NAD kinase at different Ca2+ concentrations and pHs. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  874. BREUER H et al. (1964). [CONCENTRATION AND CHARACTERIZATION OF A 17 BETA-HYDROXYSTEROID: NAD(P)-OXIDOREDUCTASE… [PMID: 14159300]

    Laboratory literature summary: [CONCENTRATION AND CHARACTERIZATION OF A 17 BETA-HYDROXYSTEROID: NAD(P)-OXIDOREDUCTASE OF RAT KIDNEY]. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  875. Lory S et al. (1980). Ligand interactions of diphtheria toxin. I. Binding and hydrolysis of NAD [PMID: 6254990]

    Laboratory literature summary: Ligand interactions of diphtheria toxin. I. Binding and hydrolysis of NAD. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  876. Chen S et al. (1994). A two-domain structure for the two subunits of NAD(P)H:quinone acceptor oxidoreductase [PMID: 7511454]

    Laboratory literature summary: A two-domain structure for the two subunits of NAD(P)H:quinone acceptor oxidoreductase. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  877. Lee CH et al. (2001). Structure-function studies of research subjects deoxyhypusine synthase: identification… [PMID: 11311149]

    Laboratory literature summary: Structure-function studies of research subjects deoxyhypusine synthase: identification of amino acid residues critical for the binding…. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  878. Kumar A et al. (1994). 8-(4-Bromo-2,3-dioxobutylthio)NAD: a new affinity label for NAD-specific isocitrate… [PMID: 8109965]

    Laboratory literature summary: 8-(4-Bromo-2,3-dioxobutylthio)NAD: a new affinity label for NAD-specific isocitrate dehydrogenase. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  879. Sestini S et al. (2000). Enzyme activities leading to NAD synthesis in research subjects lymphocytes [PMID: 10898945]

    Laboratory literature summary: Enzyme activities leading to NAD synthesis in research subjects lymphocytes. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  880. Freitag M et al. (2011). Synthesis and biological activity of splitomicin analogs targeted at research subjects… [PMID: 21315612]

    Laboratory literature summary: Synthesis and biological activity of splitomicin analogs targeted at research subjects NAD(+)-dependent histone deacetylases (sirtuins). Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  881. Burgner JW 2nd et al. (1984). Acceleration of the NAD cyanide adduct reaction by lactate dehydrogenase: the… [PMID: 6236845]

    Laboratory literature summary: Acceleration of the NAD cyanide adduct reaction by lactate dehydrogenase: the equilibrium binding effect as a measure of the activation…. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  882. Chen Z et al. (2025). SLC6A19-mediated tryptophan uptake suppresses renal cell carcinoma metastasis via… [PMID: 41203631]

    Laboratory literature summary: SLC6A19-mediated tryptophan uptake suppresses renal cell carcinoma metastasis via activating NAD(+)-dependent deacetylase SIRT1. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  883. Chang TM (1987). Recycling of NAD(P) by multienzyme systems immobilized by microencapsulation in… [PMID: 3683197]

    Laboratory literature summary: Recycling of NAD(P) by multienzyme systems immobilized by microencapsulation in artificial cells. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  884. Xu Y et al. (2025). Nicotinamide Riboside Supplementation Alleviates Testicular Aging Induced by… [PMID: 39902575]

    Laboratory literature summary: Nicotinamide Riboside Supplementation Alleviates Testicular Aging Induced by Disruption of Qprt-Dependent NAD(+) De Novo Synthesis in Mice. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  885. Fujii M et al. (2015). Novel concept of enzyme selective nicotinamide adenine dinucleotide (NAD)-modified… [PMID: 26463132]

    Laboratory literature summary: Novel concept of enzyme selective nicotinamide adenine dinucleotide (NAD)-modified inhibitors based on enzyme taxonomy from the…. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  886. Kim YO et al. (1999). Identification and functional characterization of a novel, tissue-specific… [PMID: 10601238]

    Laboratory literature summary: Identification and functional characterization of a novel, tissue-specific NAD(+)-dependent isocitrate dehydrogenase beta subunit isoform. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  887. Hu L et al. (2015). Secondary NAD+ deficiency in the inherited defect of glutamine synthetase [PMID: 25896882]

    Laboratory literature summary: Secondary NAD+ deficiency in the inherited defect of glutamine synthetase. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  888. Feldman AM et al. (1987). NAD+-mediated stimulation of adenylate cyclase in cardiac membranes [PMID: 2950854]

    Laboratory literature summary: NAD+-mediated stimulation of adenylate cyclase in cardiac membranes. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  889. Hirsch W et al. (1998). Phenylglyoxylate:NAD+ oxidoreductase (CoA benzoylating), a new enzyme of anaerobic… [PMID: 9490067]

    Laboratory literature summary: Phenylglyoxylate:NAD+ oxidoreductase (CoA benzoylating), a new enzyme of anaerobic phenylalanine metabolism in the denitrifying…. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  890. Abdel Khalek W et al. (2014). SIRT3, a mitochondrial NAD⁺-dependent deacetylase, is involved in the regulation of… [PMID: 25489948]

    Laboratory literature summary: SIRT3, a mitochondrial NAD⁺-dependent deacetylase, is involved in the regulation of myoblast differentiation. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  891. Tanny JC et al. (2001). Coupling of histone deacetylation to NAD breakdown by the yeast silencing protein… [PMID: 11134535]

    Laboratory literature summary: Coupling of histone deacetylation to NAD breakdown by the yeast silencing protein Sir2: Evidence for acetyl transfer from substrate to…. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  892. Wu J et al. (2022). Boosting NAD+ blunts TLR4-induced type I IFN in control and systemic lupus… [PMID: 35025762]

    Laboratory literature summary: Boosting NAD+ blunts TLR4-induced type I IFN in control and systemic lupus erythematosus monocytes. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  893. Zamporlini F et al. (2014). Novel assay for simultaneous measurement of pyridine mononucleotides synthesizing… [PMID: 25223558]

    Laboratory literature summary: Novel assay for simultaneous measurement of pyridine mononucleotides synthesizing activities allows dissection of the NAD(+)…. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  894. Nagy E et al. (1995). Glyceraldehyde-3-phosphate dehydrogenase selectively binds AU-rich RNA in the… [PMID: 7531693]

    Laboratory literature summary: Glyceraldehyde-3-phosphate dehydrogenase selectively binds AU-rich RNA in the NAD(+)-binding region (Rossmann fold). Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  895. Khalmuradov AG et al. (1983). [Properties of NAD binding by synaptic membranes of rat brain] [PMID: 6626596]

    Laboratory literature summary: [Properties of NAD binding by synaptic membranes of rat brain]. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  896. Koch-Nolte F et al. (2009). Emerging roles of NAD+ and its metabolites in cell signaling [PMID: 19211509]

    Laboratory literature summary: Emerging roles of NAD+ and its metabolites in cell signaling. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  897. Essuman K et al. (2017). The SARM1 Toll/Interleukin-1 Receptor Domain Possesses Intrinsic NAD(+) Cleavage… [PMID: 28334607]

    Laboratory literature summary: The SARM1 Toll/Interleukin-1 Receptor Domain Possesses Intrinsic NAD(+) Cleavage Activity that Promotes Pathological Axonal Degeneration. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  898. Fomenko AI et al. (1997). [Interaction of GABA-ergic component of NAD with benzodiazepine receptors during… [PMID: 9463239]

    Laboratory literature summary: [Interaction of GABA-ergic component of NAD with benzodiazepine receptors during epileptogenesis]. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  899. Burnell JC et al. (1987). The research subjects beta 3 alcohol dehydrogenase subunit differs from beta 1 by a… [PMID: 3619918]

    Laboratory literature summary: The research subjects beta 3 alcohol dehydrogenase subunit differs from beta 1 by a Cys for Arg-369 substitution which decreases NAD(H)…. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  900. Robertson JA et al. (1986). NAD(P)H:menadione oxidoreductase. Novel purification of enzyme cDNA and complete amino… [PMID: 3536915]

    Laboratory literature summary: NAD(P)H:menadione oxidoreductase. Novel purification of enzyme cDNA and complete amino acid sequence, and gene regulation. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  901. Schneider R et al. (1987). Isolation of a cDNA clone for research subjects NAD+: protein ADP-ribosyltransferase [PMID: 3121332]

    Laboratory literature summary: Isolation of a cDNA clone for research subjects NAD+: protein ADP-ribosyltransferase. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  902. Gao P et al. (2025). Spatiotemporal multi-omics analysis uncovers NAD-dependent immunosuppressive niche… [PMID: 40976783]

    Laboratory literature summary: Spatiotemporal multi-omics analysis uncovers NAD-dependent immunosuppressive niche triggering early gastric oncology research models. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  903. Ding YY et al. (2020). Α-Mangostin reduced the viability of A594 cells in vitro by provoking ROS production… [PMID: 31898286]

    Laboratory literature summary: α-Mangostin reduced the viability of A594 cells in vitro by provoking ROS production through downregulation of NAMPT/NAD. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  904. Giammona LM et al. (2009). Mechanistic studies on the effects of nicotinamide on megakaryocytic polyploidization… [PMID: 19715739]

    Laboratory literature summary: Mechanistic studies on the effects of nicotinamide on megakaryocytic polyploidization and the roles of NAD+ levels and SIRT inhibition. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  905. Di Girolamo M et al. (2013). NAD⁺-dependent enzymes at the endoplasmic reticulum [PMID: 24171768]

    Laboratory literature summary: NAD⁺-dependent enzymes at the endoplasmic reticulum. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  906. Yang K et al. (2019). Low Cellular NAD(+) Compromises Lipopolysaccharide-Induced Inflammatory Responses via… [PMID: 31427442]

    Laboratory literature summary: Low Cellular NAD(+) Compromises Lipopolysaccharide-Induced Inflammatory Responses via Inhibiting TLR4 Signal Transduction in research…. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  907. Kim UH et al. (1993). Purification and characterization of NAD glycohydrolase from rabbit erythrocytes [PMID: 8393643]

    Laboratory literature summary: Purification and characterization of NAD glycohydrolase from rabbit erythrocytes. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  908. Wang P et al. (2019). Characterization of the nicotinamide adenine dinucleotides (NAD(+) and NADP(+))… [PMID: 30876971]

    Laboratory literature summary: Characterization of the nicotinamide adenine dinucleotides (NAD(+) and NADP(+)) binding sites of the monomeric isocitrate dehydrogenases…. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  909. Tatsumi S et al. (2019). NAD metabolism and the SLC34 family: evidence for a liver-kidney axis regulating… [PMID: 30218374]

    Laboratory literature summary: NAD metabolism and the SLC34 family: evidence for a liver-kidney axis regulating inorganic phosphate. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  910. Wang X et al. (2014). The effects of NAD+ on apoptotic neuronal death and mitochondrial biogenesis and… [PMID: 25387075]

    Laboratory literature summary: The effects of NAD+ on apoptotic neuronal death and mitochondrial biogenesis and function after glutamate excitotoxicity. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  911. Revollo JR et al. (2007). Nampt/PBEF/Visfatin regulates insulin secretion in beta cells as a systemic NAD… [PMID: 17983582]

    Laboratory literature summary: Nampt/PBEF/Visfatin regulates insulin secretion in beta cells as a systemic NAD biosynthetic enzyme. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  912. Kahn AM et al. (2002). Insulin increases NADH/NAD+ redox state, which stimulates guanylate cyclase in… [PMID: 11939620]

    Laboratory literature summary: Insulin increases NADH/NAD+ redox state, which stimulates guanylate cyclase in vascular smooth muscle. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  913. Veneziale CM (1972). Regulation of D-triokinase and NAD-linked glycerol-dehydrogenase activities in rat liver [PMID: 4640468]

    Laboratory literature summary: Regulation of D-triokinase and NAD-linked glycerol-dehydrogenase activities in rat liver. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  914. Voelter-Mahlknecht S et al. (2013). Cloning, chromosomal characterization and FISH mapping of the NAD(+)-dependent histone… [PMID: 23673559]

    Laboratory literature summary: Cloning, chromosomal characterization and FISH mapping of the NAD(+)-dependent histone deacetylase gene sirtuin 5 in the mouse. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  915. Gai PP et al. (2014). NADH dehydrogenase-like behavior of nitrogen-doped graphene and its application in… [PMID: 24999994]

    Laboratory literature summary: NADH dehydrogenase-like behavior of nitrogen-doped graphene and its application in NAD(+)-dependent dehydrogenase biosensing. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  916. Kawai S et al. (2008). Structure and function of NAD kinase and NADP phosphatase: key enzymes that regulate… [PMID: 18391451]

    Laboratory literature summary: Structure and function of NAD kinase and NADP phosphatase: key enzymes that regulate the intracellular balance of NAD(H) and NADP(H). Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  917. Jeck R et al. (1995). New reactive coenzyme analogues for affinity labeling of NAD+ and NADP+ dependent… [PMID: 7546038]

    Laboratory literature summary: New reactive coenzyme analogues for affinity labeling of NAD+ and NADP+ dependent dehydrogenases. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  918. Feng D et al. (2020). Nicotinamide Phosphoribosyltransferase (Nampt)/Nicotinamide Adenine Dinucleotide (NAD)… [PMID: 32629939]

    Laboratory literature summary: Nicotinamide Phosphoribosyltransferase (Nampt)/Nicotinamide Adenine Dinucleotide (NAD) Axis Suppresses Atrial Fibrillation by Modulating…. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  919. Zhou H et al. (1999). Threonine 188 is critical for interaction with NAD+ in research subjects… [PMID: 10198228]

    Laboratory literature summary: Threonine 188 is critical for interaction with NAD+ in research subjects NAD+-dependent 15-hydroxyprostaglandin dehydrogenase. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  920. Chini CCS et al. (2025). Chronic Cellular NAD Depletion Activates a Viral Infection-Like Interferon Response… [PMID: 40519092]

    Laboratory literature summary: Chronic Cellular NAD Depletion Activates a Viral Infection-Like Interferon Response Through Mitochondrial DNA Leakage. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  921. Lu J et al. (2023). NAMPT inhibition reduces macrophage inflammation through the NAD+/PARP1 pathway to… [PMID: 36460127]

    Laboratory literature summary: NAMPT inhibition reduces macrophage inflammation through the NAD+/PARP1 pathway to attenuate liver ischemia-reperfusion injury. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  922. Safonova OA et al. (2005). Function of cytoplasmic NAD-dependent malate dehydrogenase from rat myocardium under… [PMID: 16254612]

    Laboratory literature summary: Function of cytoplasmic NAD-dependent malate dehydrogenase from rat myocardium under conditions of ischemia. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  923. Kotlyar AB et al. (2002). NADH oxidation and NAD+ reduction catalysed by tightly coupled inside-out vesicles… [PMID: 12180978]

    Laboratory literature summary: NADH oxidation and NAD+ reduction catalysed by tightly coupled inside-out vesicles from Paracoccus denitrificans. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  924. Fruscione F et al. (2011). Regulation of research subjects mesenchymal stem cell functions by an autocrine loop… [PMID: 20964598]

    Laboratory literature summary: Regulation of research subjects mesenchymal stem cell functions by an autocrine loop involving NAD+ release and P2Y11-mediated signaling. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  925. Benarroch D et al. (2006). Characterization of mimivirus NAD+-dependent DNA ligase [PMID: 16844179]

    Laboratory literature summary: Characterization of mimivirus NAD+-dependent DNA ligase. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  926. Gerdts J et al. (2015). SARM1 activation triggers axon degeneration locally via NAD⁺ destruction [PMID: 25908823]

    Laboratory literature summary: SARM1 activation triggers axon degeneration locally via NAD⁺ destruction. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  927. Tao Y et al. (2023). Comprehensive Proteomics Analysis Identifies CD38-Mediated NAD(+) Decline… [PMID: 36804530]

    Laboratory literature summary: Comprehensive Proteomics Analysis Identifies CD38-Mediated NAD(+) Decline Orchestrating Renal Fibrosis in Pediatric research subjects…. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  928. Wössner N et al. (2020). Sirtuin 1 Inhibiting Thiocyanates (S1th)-A New Class of Isotype Selective Inhibitors… [PMID: 32426286]

    Laboratory literature summary: Sirtuin 1 Inhibiting Thiocyanates (S1th)-A New Class of Isotype Selective Inhibitors of NAD(+) Dependent Lysine Deacetylases. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  929. Farrington JA et al. (1980). The one-electron reduction potentials of NAD [PMID: 6445204]

    Laboratory literature summary: The one-electron reduction potentials of NAD. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  930. Cannio R et al. (1994). A few amino acid substitutions are responsible for the higher thermostability of a… [PMID: 8020473]

    Laboratory literature summary: A few amino acid substitutions are responsible for the higher thermostability of a novel NAD(+)-dependent bacillar alcohol dehydrogenase. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  931. Curran CS et al. (2023). The complexity of nicotinamide adenine dinucleotide (NAD), hypoxic, and aryl… [PMID: 37814337]

    Laboratory literature summary: The complexity of nicotinamide adenine dinucleotide (NAD), hypoxic, and aryl hydrocarbon receptor cell signaling in chronic kidney disease. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  932. Beijer NA et al. (1990). Modeling of NAD+ analogues in horse liver alcohol dehydrogenase [PMID: 2076000]

    Laboratory literature summary: Modeling of NAD+ analogues in horse liver alcohol dehydrogenase. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  933. HONJO T et al. (1964). ENZYMIC PREPARATION OF NICOTINATE ADENINE DINUCLEOTIDE (DEAMIDO-NAD) [PMID: 14209340]

    Laboratory literature summary: ENZYMIC PREPARATION OF NICOTINATE ADENINE DINUCLEOTIDE (DEAMIDO-NAD). Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  934. Lilley KS et al. (1991). The partial amino acid sequence of the NAD(+)-dependent glutamate dehydrogenase of… [PMID: 1954226]

    Laboratory literature summary: The partial amino acid sequence of the NAD(+)-dependent glutamate dehydrogenase of Clostridium symbiosum: implications for the evolution…. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  935. Fomenko AI et al. (1995). [Participation of a diazepam-binding inhibitor in the interaction between NAD and… [PMID: 8619303]

    Laboratory literature summary: [Participation of a diazepam-binding inhibitor in the interaction between NAD and GABA-benzodiazepine receptor complex in synaptic…. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  936. Giordana L et al. (2020). Two phylogenetically divergent isocitrate dehydrogenases are encoded in Leishmania… [PMID: 32980452]

    Laboratory literature summary: Two phylogenetically divergent isocitrate dehydrogenases are encoded in Leishmania parasites. Molecular and functional characterization…. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  937. Walker MA et al. (2018). Raising NAD in Heart Failure: Time to Translate? [PMID: 29784680]

    Laboratory literature summary: Raising NAD in Heart Failure: Time to Translate?. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  938. Colinas M et al. (2014). A pathway for repair of NAD(P)H in plants [PMID: 24706747]

    Laboratory literature summary: A pathway for repair of NAD(P)H in plants. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  939. O'Flaherty M et al. (1999). A "stripping" ligand tactic for use with the kinetic locking-on strategy: its use in… [PMID: 10425164]

    Laboratory literature summary: A "stripping" ligand tactic for use with the kinetic locking-on strategy: its use in the resolution and bioaffinity chromatographic…. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  940. Anderson BM et al. (1997). Azotobacter vinelandii glucose 6-phosphate dehydrogenase properties of NAD- and… [PMID: 9252113]

    Laboratory literature summary: Azotobacter vinelandii glucose 6-phosphate dehydrogenase properties of NAD- and NADP-linked reactions. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  941. Lo HC et al. (2002). Biomimetic NAD(+) models for tandem cofactor regeneration, horse liver alcohol… [PMID: 12491384]

    Laboratory literature summary: Biomimetic NAD(+) models for tandem cofactor regeneration, horse liver alcohol dehydrogenase recognition of 1,4-NADH derivatives, and…. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  942. Vaillancourt RR et al. (1995). The photoactivatable NAD+ analogue [32P]2-azido-NAD+ defines intra- and… [PMID: 7487961]

    Laboratory literature summary: The photoactivatable NAD+ analogue [32P]2-azido-NAD+ defines intra- and inter-molecular interactions of the C-terminal domain of the…. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  943. U-Din M et al. (2023). Cold-stimulated brown adipose tissue activation is related to changes in serum… [PMID: 37708023]

    Laboratory literature summary: Cold-stimulated brown adipose tissue activation is related to changes in serum metabolites relevant to NAD(+) metabolism in research…. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  944. Gao L et al. (2023). NAD(+) mediated photoelectrochemical biosensor for histone deacetylase Sirt1 detection… [PMID: 37996156]

    Laboratory literature summary: NAD(+) mediated photoelectrochemical biosensor for histone deacetylase Sirt1 detection based on CuO-BiVO(4)-AgNCs heterojunction and…. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  945. Ravasz D et al. (2018). Reduction of 2-methoxy-1,4-naphtoquinone by mitochondrially-localized Nqo1 yielding… [PMID: 29746824]

    Laboratory literature summary: Reduction of 2-methoxy-1,4-naphtoquinone by mitochondrially-localized Nqo1 yielding NAD(+) supports substrate-level phosphorylation…. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  946. Zolkiewska A et al. (1992). Molecular characterization of NAD:arginine ADP-ribosyltransferase from rabbit skeletal… [PMID: 1454819]

    Laboratory literature summary: Molecular characterization of NAD:arginine ADP-ribosyltransferase from rabbit skeletal muscle. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  947. Chen S et al. (1984). Identification of the NADH-NAD+ transhydrogenase peptide of the mitochondrial NADH-CoQ… [PMID: 6425285]

    Laboratory literature summary: Identification of the NADH-NAD+ transhydrogenase peptide of the mitochondrial NADH-CoQ reductase (Complex I). A photodependent labeling…. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  948. Pesnot T et al. (2011). Two-step synthesis of novel, bioactive derivatives of the ubiquitous cofactor… [PMID: 21528845]

    Laboratory literature summary: Two-step synthesis of novel, bioactive derivatives of the ubiquitous cofactor nicotinamide adenine dinucleotide (NAD). Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  949. Dietz BM et al. (2008). Angelica sinensis and its alkylphthalides induce the detoxification enzyme NAD(P)H:… [PMID: 18808158]

    Laboratory literature summary: Angelica sinensis and its alkylphthalides induce the detoxification enzyme NAD(P)H: quinone oxidoreductase 1 by alkylating Keap1. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  950. Shen W et al. (2022). Peroxisome proliferator-activated receptor γ coactivator 1α maintains NAD(+)… [PMID: 39871927]

    Laboratory literature summary: Peroxisome proliferator-activated receptor γ coactivator 1α maintains NAD(+) bioavailability protecting against steatohepatitis. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  951. Peng F et al. (2010). Cloning and characterization of a glycerol-3-phosphate dehydrogenase (NAD+) gene from… [PMID: 20014039]

    Laboratory literature summary: Cloning and characterization of a glycerol-3-phosphate dehydrogenase (NAD+) gene from the halotolerant yeast Pichia farinosa. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  952. Sabuhi R et al. (2010). Inhibition of NAD(P)H oxidase potentiates AT2 receptor agonist-induced natriuresis in… [PMID: 20668101]

    Laboratory literature summary: Inhibition of NAD(P)H oxidase potentiates AT2 receptor agonist-induced natriuresis in Sprague-Dawley rats. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  953. Huang F et al. (2000). RNA-Catalyzed CoA, NAD, and FAD synthesis from phosphopantetheine, NMN, and FMN [PMID: 11112541]

    Laboratory literature summary: RNA-Catalyzed CoA, NAD, and FAD synthesis from phosphopantetheine, NMN, and FMN. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  954. Goody MF et al. (2018). A need for NAD+ in muscle development, homeostasis, and aging [PMID: 29514713]

    Laboratory literature summary: A need for NAD+ in muscle development, homeostasis, and aging. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  955. Bernard N et al. (1994). NAD(+)-dependent D-2-hydroxyisocaproate dehydrogenase of Lactobacillus delbrueckii… [PMID: 7925358]

    Laboratory literature summary: NAD(+)-dependent D-2-hydroxyisocaproate dehydrogenase of Lactobacillus delbrueckii subsp. bulgaricus. Gene cloning and enzyme…. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  956. Lin AP et al. (2001). Kinetic and physiological effects of alterations in homologous isocitrate-binding… [PMID: 11714283]

    Laboratory literature summary: Kinetic and physiological effects of alterations in homologous isocitrate-binding sites of yeast NAD(+)-specific isocitrate dehydrogenase. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  957. Zarei A et al. (2015). NAD(+)-aminoaldehyde dehydrogenase candidates for 4-aminobutyrate (GABA) and β-alanine… [PMID: 26296314]

    Laboratory literature summary: NAD(+)-aminoaldehyde dehydrogenase candidates for 4-aminobutyrate (GABA) and β-alanine production during terminal oxidation of…. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  958. Soncini D et al. (2025). NAD+ metabolism restriction boosts high-exposure level melphalan observed endpoints in… [PMID: 39661983]

    Laboratory literature summary: NAD+ metabolism restriction boosts high-exposure level melphalan observed endpoints in research subjects with multiple myeloma. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  959. McKay-Corkum GB et al. (2023). Inhibition of NAD+-Dependent Metabolic Processes Induces Cellular Necrosis and… [PMID: 37616468]

    Laboratory literature summary: Inhibition of NAD+-Dependent Metabolic Processes Induces Cellular Necrosis and oncology research models Regression in Rhabdomyosarcoma…. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  960. Zhang F et al. (2009). Dependence of cathepsin L-induced coronary endothelial dysfunction upon activation of… [PMID: 19345232]

    Laboratory literature summary: Dependence of cathepsin L-induced coronary endothelial dysfunction upon activation of NAD(P)H oxidase. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  961. Busso N et al. (2008). Pharmacological inhibition of nicotinamide phosphoribosyltransferase/visfatin… [PMID: 18493620]

    Laboratory literature summary: Pharmacological inhibition of nicotinamide phosphoribosyltransferase/visfatin enzymatic activity identifies a new inflammatory pathway…. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  962. Tojo T et al. (2005). Role of gp91phox (Nox2)-containing NAD(P)H oxidase in angiogenesis in response to… [PMID: 15867174]

    Laboratory literature summary: Role of gp91phox (Nox2)-containing NAD(P)H oxidase in angiogenesis in response to hindlimb ischemia. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  963. Virdis A et al. (2004). Role of NAD(P)H oxidase on vascular alterations in angiotensin II-infused mice [PMID: 15076159]

    Laboratory literature summary: Role of NAD(P)H oxidase on vascular alterations in angiotensin II-infused mice. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  964. Haque MZ et al. (2004). Assessment of renal functional phenotype in mice lacking gp91PHOX subunit of NAD(P)H… [PMID: 14718366]

    Laboratory literature summary: Assessment of renal functional phenotype in mice lacking gp91PHOX subunit of NAD(P)H oxidase. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  965. Grozio A et al. (2013). CD73 protein as a source of extracellular precursors for sustained NAD+ biosynthesis… [PMID: 23880765]

    Laboratory literature summary: CD73 protein as a source of extracellular precursors for sustained NAD+ biosynthesis in FK866-studied oncology research models cells. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  966. Raijmakers MT et al. (2006). Placental NAD(P)H oxidase mediated superoxide generation in early developmental… [PMID: 16338460]

    Laboratory literature summary: Placental NAD(P)H oxidase mediated superoxide generation in early developmental research context. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  967. Cifuentes ME et al. (2003). C-Src and smooth muscle NAD(P)H oxidase: assembling a path to hypertrophy [PMID: 12807712]

    Laboratory literature summary: c-Src and smooth muscle NAD(P)H oxidase: assembling a path to hypertrophy. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  968. Herrmann-Erlee MP (1971). The effect of parathyroid extract and dibutyryl cyclic AMP on NAD and NADP levels in… [PMID: 4397416]

    Laboratory literature summary: The effect of parathyroid extract and dibutyryl cyclic AMP on NAD and NADP levels in embryonic mouse calvarium explants. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  969. Haft DH et al. (2017). Mycofactocin-associated mycobacterial dehydrogenases with non-exchangeable NAD cofactors [PMID: 28120876]

    Laboratory literature summary: Mycofactocin-associated mycobacterial dehydrogenases with non-exchangeable NAD cofactors. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  970. Cho SW et al. (1998). Identification of an NAD+ binding site of brain glutamate dehydrogenase isoproteins by… [PMID: 9813015]

    Laboratory literature summary: Identification of an NAD+ binding site of brain glutamate dehydrogenase isoproteins by photoaffinity labeling. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  971. Domenighini M et al. (1991). Computer modelling of the NAD binding site of ADP-ribosylating toxins: active-site… [PMID: 1901617]

    Laboratory literature summary: Computer modelling of the NAD binding site of ADP-ribosylating toxins: active-site structure and mechanism of NAD binding. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  972. Woenckhaus C et al. (1973). Inactivation of ADH from yeast and GAPDH from rabbit muscle by structural analogues of NAD [PMID: 4355902]

    Laboratory literature summary: Inactivation of ADH from yeast and GAPDH from rabbit muscle by structural analogues of NAD. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  973. Kim YO et al. (1995). Characterization of a cDNA clone for research subjects NAD(+)-specific isocitrate… [PMID: 7755589]

    Laboratory literature summary: Characterization of a cDNA clone for research subjects NAD(+)-specific isocitrate dehydrogenase alpha-subunit and structural comparison…. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  974. Stebeck CE et al. (1996). Molecular characterization of glycosomal NAD(+)-dependent glycerol 3-phosphate… [PMID: 8920003]

    Laboratory literature summary: Molecular characterization of glycosomal NAD(+)-dependent glycerol 3-phosphate dehydrogenase from Trypanosoma brucei rhodesiense. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  975. Mukherjee A et al. (2018). Loss of virulence in NAD(P)H cytochrome b5 oxidoreductase deficient Leishmania major [PMID: 29906460]

    Laboratory literature summary: Loss of virulence in NAD(P)H cytochrome b5 oxidoreductase deficient Leishmania major. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  976. Kaliberova LN et al. (2009). Experimental oncology research models research protocol using restoration of NAD+… [PMID: 19887544]

    Laboratory literature summary: Experimental oncology research models research protocol using restoration of NAD+ -linked 15-hydroxyprostaglandin dehydrogenase expression. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  977. Lobban MD et al. (1992). Specific binding of nucleotides and NAD+ to Clostridium difficile toxin A [PMID: 1544441]

    Laboratory literature summary: Specific binding of nucleotides and NAD+ to Clostridium difficile toxin A. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  978. Sauve AA et al. (2001). Chemistry of gene silencing: the mechanism of NAD+-dependent deacetylation reactions [PMID: 11747420]

    Laboratory literature summary: Chemistry of gene silencing: the mechanism of NAD+-dependent deacetylation reactions. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  979. Vreones M et al. (2023). Oral nicotinamide riboside raises NAD+ and lowers biomarkers of neurodegenerative… [PMID: 36515353]

    Laboratory literature summary: Oral nicotinamide riboside raises NAD+ and lowers biomarkers of neurodegenerative pathology in plasma extracellular vesicles enriched…. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  980. Go GE et al. (2026). Super-resolution mapping reveals NAD⁺-delivering probiotic extracellular vesicles as… [PMID: 41634693]

    Laboratory literature summary: Super-resolution mapping reveals NAD⁺-delivering probiotic extracellular vesicles as nanotherapeutics for organelle protection and…. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  981. Mercurio L et al. (2021). Enhanced NAMPT-Mediated NAD Salvage Pathway Contributes to Psoriasis Pathogenesis by… [PMID: 34202251]

    Laboratory literature summary: Enhanced NAMPT-Mediated NAD Salvage Pathway Contributes to Psoriasis Pathogenesis by Amplifying Epithelial Auto-Inflammatory Circuits. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  982. Li D et al. (2014). BRCA1 as a nicotinamide adenine dinucleotide (NAD)-dependent metabolic switch in… [PMID: 25486197]

    Laboratory literature summary: BRCA1 as a nicotinamide adenine dinucleotide (NAD)-dependent metabolic switch in ovarian oncology research models. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  983. Poels PA et al. (1989). NAD-linked, GSH- and factor-independent aldehyde dehydrogenase of the methylotrophic… [PMID: 2712573]

    Laboratory literature summary: NAD-linked, GSH- and factor-independent aldehyde dehydrogenase of the methylotrophic bacterium, Hyphomicrobium X. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  984. Tang Z et al. (2013). Absolute quantification of NAD(P)H:quinone oxidoreductase 1 in research subjects… [PMID: 23540248]

    Laboratory literature summary: Absolute quantification of NAD(P)H:quinone oxidoreductase 1 in research subjects oncology research models cell lines and tissues by…. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  985. Campese VM et al. (2007). Regional expression of NO synthase, NAD(P)H oxidase and superoxide dismutase in the… [PMID: 17196179]

    Laboratory literature summary: Regional expression of NO synthase, NAD(P)H oxidase and superoxide dismutase in the rat brain. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  986. Nakano S et al. (2018). Benchmark Analysis of Native and Artificial NAD(+)-Dependent Enzymes Generated by a… [PMID: 29787243]

    Laboratory literature summary: Benchmark Analysis of Native and Artificial NAD(+)-Dependent Enzymes Generated by a Sequence-Based Design Method with or without…. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  987. Graciano MF et al. (2011). NAD(P)H oxidase participates in the palmitate-induced superoxide production and… [PMID: 20857410]

    Laboratory literature summary: NAD(P)H oxidase participates in the palmitate-induced superoxide production and insulin secretion by rat pancreatic islets. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  988. Wang JL et al. (2020). NAD+ attenuates experimental autoimmune encephalomyelitis through induction of CD11b+… [PMID: 32301489]

    Laboratory literature summary: NAD+ attenuates experimental autoimmune encephalomyelitis through induction of CD11b+ gr-1+ myeloid-derived suppressor cells. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  989. Martens CR et al. (2018). Chronic nicotinamide riboside supplementation is well-tolerated and elevates NAD(+) in… [PMID: 29599478]

    Laboratory literature summary: Chronic nicotinamide riboside supplementation is well-tolerated and elevates NAD(+) in healthy middle-aged and older adults. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  990. Maraldi T et al. (2010). VEGF-induced ROS generation from NAD(P)H oxidases protects research subjects leukemic… [PMID: 20428783]

    Laboratory literature summary: VEGF-induced ROS generation from NAD(P)H oxidases protects research subjects leukemic cells from apoptosis. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  991. Ying W (2006). NAD+ and NADH in cellular functions and cell death [PMID: 16720381]

    Laboratory literature summary: NAD+ and NADH in cellular functions and cell death. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  992. Pankiewicz KW et al. (1996). NAD-analogues as potential anticancer agents: conformational restrictions as basis for… [PMID: 8790723]

    Laboratory literature summary: NAD-analogues as potential anticancer agents: conformational restrictions as basis for selectivity. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  993. Ammendola S et al. (1992). Thermostable NAD(+)-dependent alcohol dehydrogenase from Sulfolobus solfataricus: gene… [PMID: 1463738]

    Laboratory literature summary: Thermostable NAD(+)-dependent alcohol dehydrogenase from Sulfolobus solfataricus: gene and protein sequence determination and…. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  994. Garate M et al. (2008). NAD(P)H quinone oxidoreductase 1 inhibits the proteasomal degradation of the oncology… [PMID: 18388957]

    Laboratory literature summary: NAD(P)H quinone oxidoreductase 1 inhibits the proteasomal degradation of the oncology research models suppressor p33(ING1b). Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  995. Colcerasa A et al. (2024). Structure-Activity Studies of 1,2,4-Oxadiazoles for the Inhibition of the… [PMID: 38847803]

    Laboratory literature summary: Structure-Activity Studies of 1,2,4-Oxadiazoles for the Inhibition of the NAD(+)-Dependent Lysine Deacylase Sirtuin 2. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  996. Hou Y et al. (2018). NAD(+) supplementation normalizes key neurodegeneration research models's features and… [PMID: 29432159]

    Laboratory literature summary: NAD(+) supplementation normalizes key neurodegeneration research models's features and DNA damage responses in a new AD mouse model with…. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  997. Panja S et al. (2022). FAD-deficient P187S mutation of NAD(P)H:quinone oxidoreductase 1 (NQO1*2) binds and… [PMID: 36281795]

    Laboratory literature summary: FAD-deficient P187S mutation of NAD(P)H:quinone oxidoreductase 1 (NQO1*2) binds and accelerates β-amyloid aggregation. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  998. Spurlock SE et al. (1974). The cryopreservation of sheep erythrocyte intermediates EA nad EAC4 in complement assays [PMID: 4215834]

    Laboratory literature summary: The cryopreservation of sheep erythrocyte intermediates EA nad EAC4 in complement assays. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  999. Haag F et al. (2007). Extracellular NAD and ATP: Partners in immune cell modulation [PMID: 18404420]

    Laboratory literature summary: Extracellular NAD and ATP: Partners in immune cell modulation. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  1000. Min J et al. (2001). Crystal structure of a SIR2 homolog-NAD complex [PMID: 11336676]

    Laboratory literature summary: Crystal structure of a SIR2 homolog-NAD complex. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

Browse the full PubMed index: PubMed search.

Additional information

Weight .125 lbs
Dimensions 9 × 7 × .5 in
Size: No selection

100mg, 500mg, 1000mg

Keep lyophilized peptides sealed in their original vial, protected from light and humidity, and store at -4°F or colder for optimal long-term stability in research settings; short-term refrigeration at around 39°F suffices for immediate use within weeks, though freezer storage maximizes integrity across extended research timelines.

Frequently Asked Questions

What is NAD+?

NAD+ (Nicotinamide Adenine Dinucleotide) is a coenzyme involved in cellular energy metabolism and redox signaling. It is studied in research laboratories for its role in mitochondrial function and biochemical pathways.

What is NAD+ used for in research?

NAD+ is used in research laboratories to investigate cellular metabolism, mitochondrial activity, and biochemical signaling pathways. It is not approved for human use.

Is NAD+ Peptide approved or intended for human use?

No. This NAD+ product is strictly intended for research purposes only and is not approved by the FDA for human use.

Is NAD+ Peptide FDA-approved for medical or clinical use?

No. This NAD+ product is not approved by the U.S. Food and Drug Administration for any medical, therapeutic, or diagnostic use.

How should NAD+ be stored?

Store sealed, lyophilized peptides protected from light and humidity at -4°F or colder; refrigeration (~39°F) is suitable for short-term use.

What vial sizes are available for NAD+?

NAD+ is available in multiple vial sizes.

Is NAD+ Peptide sold as a prescription product?

No prescription is required; however, it is sold strictly for research use only.

How is NAD+ shipped?

Orders are processed and shipped using secure, protective packaging to maintain product integrity during transit. For more info, visit: https://www.nationwidepeptides.com/shipping-and-payments

How can I verify NAD+ purity and quality?

Product quality is supported through third-party laboratory testing and Certificates of Analysis (COA), confirming purity and batch consistency. For more info, visit: https://www.nationwidepeptides.com/coa/

Can NAD+ be used for energy-related or health-related purposes?

NAD+ is studied in research laboratories for cellular metabolism and mitochondrial-related pathways; however, it is not approved for the diagnosis, experimental regimen, cure, or prevention of any disease or condition.