VIP (Vasoactive Intestinal Peptide) Peptide research-grade
VIP (Vasoactive Intestinal Peptide) Peptide
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VIP (Vasoactive Intestinal Peptide) Peptide

Price range: $59.00 through $71.00

Research-grade VIP (Vasoactive Intestinal Peptide) 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.

VIP (Vasoactive Intestinal Peptide) Peptide research-grade

Overview

VIP (Vasoactive Intestinal Peptide) 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 VIP (Vasoactive Intestinal Peptide) Peptide

Work involving VIP (Vasoactive Intestinal Peptide) 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 VIP (Vasoactive Intestinal Peptide) 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 VIP (Vasoactive Intestinal Peptide) 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 VIP (Vasoactive Intestinal Peptide) 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 VIP (Vasoactive Intestinal Peptide) 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 VIP (Vasoactive Intestinal Peptide) 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 963 PubMed records. Displaying 10 per page.

  1. Fahrenkrug J (2010). VIP and PACAP [PMID: 19859678]

    Laboratory literature summary: VIP and PACAP. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  2. Author et al. (1984). VIP and diarrhoea [PMID: 6141341]

    Laboratory literature summary: VIP and diarrhoea. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  3. Shaikh H et al. (2022). GVHD: pDCs providing VIP protection [PMID: 36136363]

    Laboratory literature summary: GVHD: pDCs providing VIP protection. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  4. Juhász T et al. (2015). PACAP and VIP signaling in chondrogenesis and osteogenesis [PMID: 25701761]

    Laboratory literature summary: PACAP and VIP signaling in chondrogenesis and osteogenesis. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  5. Laburthe M et al. (2002). VPAC receptors for VIP and PACAP [PMID: 12529932]

    Laboratory literature summary: VPAC receptors for VIP and PACAP. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  6. Morell M et al. (2012). VIP in neurological diseases: more than a neuropeptide [PMID: 23094829]

    Laboratory literature summary: VIP in neurological diseases: more than a neuropeptide. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  7. Author et al. (1991). VIP and the skin [PMID: 1672973]

    Laboratory literature summary: VIP and the skin. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  8. Hill JM et al. (1996). VIP regulation of embryonic growth [PMID: 8993408]

    Laboratory literature summary: VIP regulation of embryonic growth. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  9. Gozes I et al. (1989). VIP: molecular biology and neurobiological function [PMID: 2698176]

    Laboratory literature summary: VIP: molecular biology and neurobiological function. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  10. Dudai A et al. (2021). Cortical VIP(+) /ChAT(+) interneurons: From genetics to function [PMID: 33301603]

    Laboratory literature summary: Cortical VIP(+) /ChAT(+) interneurons: From genetics to function. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  11. Dickinson T et al. (1999). VIP and PACAP: very important in pain? [PMID: 10431211]

    Laboratory literature summary: VIP and PACAP: very important in pain?. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  12. Fahrenkrug J (1989). VIP and autonomic neurotransmission [PMID: 2541454]

    Laboratory literature summary: VIP and autonomic neurotransmission. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  13. Gozes I et al. (2003). VIP and drug design [PMID: 12570811]

    Laboratory literature summary: VIP and drug design. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  14. Fahrenkrug J et al. (2004). Neurotransmitters co-existing with VIP or PACAP [PMID: 15134862]

    Laboratory literature summary: Neurotransmitters co-existing with VIP or PACAP. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  15. Passemard S et al. (2011). VIP-induced neuroprotection of the developing brain [PMID: 21524251]

    Laboratory literature summary: VIP-induced neuroprotection of the developing brain. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  16. Abad C et al. (2018). Immunomodulatory Roles of PACAP and VIP: Lessons from Knockout Mice [PMID: 30105629]

    Laboratory literature summary: Immunomodulatory Roles of PACAP and VIP: Lessons from Knockout Mice. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  17. Luis J et al. (1988). The vasoactive intestinal peptide (VIP) receptor: recent data and hypothesis [PMID: 2852963]

    Laboratory literature summary: The vasoactive intestinal peptide (VIP) receptor: recent data and hypothesis. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  18. Foster N (2012). Editorial: vasoactive intestinal peptide (vip): historic perspective and future potential [PMID: 23094826]

    Laboratory literature summary: Editorial: vasoactive intestinal peptide (vip): historic perspective and future potential. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  19. Barnes PJ et al. (1984). VIP and asthma [PMID: 6140418]

    Laboratory literature summary: VIP and asthma. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  20. Winzell MS et al. (2007). Role of VIP and PACAP in islet function [PMID: 17559974]

    Laboratory literature summary: Role of VIP and PACAP in islet function. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  21. Moody TW et al. (2003). VIP as a trophic factor in the CNS and oncology research models cells [PMID: 12576099]

    Laboratory literature summary: VIP as a trophic factor in the CNS and oncology research models cells. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  22. Dvoráková MC (2005). Cardioprotective role of the VIP signaling system [PMID: 16247516]

    Laboratory literature summary: Cardioprotective role of the VIP signaling system. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  23. Magistretti PJ (1990). VIP neurons in the cerebral cortex [PMID: 2200184]

    Laboratory literature summary: VIP neurons in the cerebral cortex. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  24. Masmoudi-Kouki O et al. (2007). Role of PACAP and VIP in astroglial functions [PMID: 17655978]

    Laboratory literature summary: Role of PACAP and VIP in astroglial functions. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  25. Rosselin G et al. (1982). A new neuroregulator: the vasoactive intestinal peptide or VIP [PMID: 6290287]

    Laboratory literature summary: A new neuroregulator: the vasoactive intestinal peptide or VIP. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  26. Klippstein R et al. (2015). Vasoactive Intestinal Peptide (VIP) Nanoparticles for Diagnostics and for Controlled… [PMID: 25819279]

    Laboratory literature summary: Vasoactive Intestinal Peptide (VIP) Nanoparticles for Diagnostics and for Controlled and Targeted Drug Delivery. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  27. Yamaguchi K et al. (1979). Laboratory research record on VIP (Vasoactive Intestinal ) [PMID: 491133]

    PubMed laboratory record discussing VIP (Vasoactive Intestinal ) in a research context. Review the full methods and limitations on PubMed; research use only.

  28. Asano S et al. (2025). Dimerisation of the VIP receptor VIPR2 is essential to its binding VIP and Gα(i)… [PMID: 40203889]

    Laboratory literature summary: Dimerisation of the VIP receptor VIPR2 is essential to its binding VIP and Gα(i) proteins, and to its functions in breast oncology…. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  29. Harmar T et al. (1994). Multiple receptors for PACAP and VIP [PMID: 7912462]

    Laboratory literature summary: Multiple receptors for PACAP and VIP. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  30. Gomariz RP et al. (2001). Immunology of VIP: a review and therapeutical perspectives [PMID: 11172702]

    Laboratory literature summary: Immunology of VIP: a review and therapeutical perspectives. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  31. Laburthe M et al. (2002). Molecular pharmacology and structure of VPAC Receptors for VIP and PACAP [PMID: 12220741]

    Laboratory literature summary: Molecular pharmacology and structure of VPAC Receptors for VIP and PACAP. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  32. Gozes I et al. (1995). A VIP hybrid antagonist: from developmental neurobiology to laboratory applications [PMID: 8719036]

    Laboratory literature summary: A VIP hybrid antagonist: from developmental neurobiology to laboratory applications. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  33. Christophe J et al. (1986). Effector mechanisms of peptides of the VIP family [PMID: 3018687]

    Laboratory literature summary: Effector mechanisms of peptides of the VIP family. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  34. Zou J et al. (2023). Inhibitory neurons: VIP neurons expect rewards [PMID: 37699349]

    Laboratory literature summary: Inhibitory neurons: VIP neurons expect rewards. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  35. Chandrasekharan B et al. (2013). Emerging neuropeptide targets in inflammation: NPY and VIP [PMID: 23538492]

    Laboratory literature summary: Emerging neuropeptide targets in inflammation: NPY and VIP. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  36. Verma AK et al. (2017). Neuroendocrine cells derived chemokine vasoactive intestinal polypeptide (VIP) in… [PMID: 28964637]

    Laboratory literature summary: Neuroendocrine cells derived chemokine vasoactive intestinal polypeptide (VIP) in allergic diseases. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  37. Jiang X et al. (2012). The role of VIP in cornea [PMID: 23074208]

    Laboratory literature summary: The role of VIP in cornea. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  38. Pozo D (2003). VIP- and PACAP-mediated immunomodulation as prospective investigational tools [PMID: 12763526]

    Laboratory literature summary: VIP- and PACAP-mediated immunomodulation as prospective investigational tools. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  39. Onoue S et al. (2007). Bioactive analogues and drug delivery systems of vasoactive intestinal peptide (VIP)… [PMID: 17537541]

    Laboratory literature summary: Bioactive analogues and drug delivery systems of vasoactive intestinal peptide (VIP) for the investigation of asthma/COPD. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  40. Onoue S et al. (2008). Structure-activity relationship of vasoactive intestinal peptide (VIP): potent… [PMID: 18172612]

    Laboratory literature summary: Structure-activity relationship of vasoactive intestinal peptide (VIP): potent agonists and potential laboratory applications. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  41. Zhu Z et al. (2026). Vip(+) vagal neurons control allergen-induced responses [PMID: 42024502]

    Laboratory literature summary: Vip(+) vagal neurons control allergen-induced responses. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  42. Gozes I et al. (1999). Pharmaceutical VIP: prospects and problems [PMID: 10519911]

    Laboratory literature summary: Pharmaceutical VIP: prospects and problems. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  43. Marchis-Mouren G et al. (1988). HT 29, a model cell line: stimulation by the vasoactive intestinal peptide (VIP); VIP… [PMID: 2844304]

    Laboratory literature summary: HT 29, a model cell line: stimulation by the vasoactive intestinal peptide (VIP); VIP receptor structure and metabolism. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  44. Sundler F et al. (1977). VIP innervation of the gallbladder [PMID: 858483]

    Laboratory literature summary: VIP innervation of the gallbladder. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  45. Misery L et al. (2003). [Aquadynia: a role for VIP?] [PMID: 12671583]

    Laboratory literature summary: [Aquadynia: a role for VIP?]. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  46. Said SI (1984). Vasoactive intestinal polypeptide (VIP): current status [PMID: 6147814]

    Laboratory literature summary: Vasoactive intestinal polypeptide (VIP): current status. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  47. Hu JS et al. (2023). Tsc1 Loss in VIP-Lineage Cortical Interneurons Results in More VIP+ Interneurons and… [PMID: 38201256]

    Laboratory literature summary: Tsc1 Loss in VIP-Lineage Cortical Interneurons Results in More VIP+ Interneurons and Enhanced Excitability. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  48. Kaneko M et al. (2024). Stimulus-specific enhancement in mouse visual cortex requires GABA but not VIP-peptide… [PMID: 38774975]

    Laboratory literature summary: Stimulus-specific enhancement in mouse visual cortex requires GABA but not VIP-peptide release from VIP interneurons. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  49. Rosselin G (1986). The receptors of the VIP family peptides (VIP, secretin, GRF, PHI, PHM, GIP, glucagon… [PMID: 3018707]

    Laboratory literature summary: The receptors of the VIP family peptides (VIP, secretin, GRF, PHI, PHM, GIP, glucagon and oxyntomodulin). Specificities and identity. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  50. Jackson J et al. (2016). VIP+ interneurons control neocortical activity across brain states [PMID: 26961109]

    Laboratory literature summary: VIP+ interneurons control neocortical activity across brain states. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  51. Jaffe BM (1979). To be or not to VIP [PMID: 759268]

    Laboratory literature summary: To be or not to VIP. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  52. Moody TW et al. (2004). The development of VIP-ellipticine conjugates [PMID: 15518911]

    Laboratory literature summary: The development of VIP-ellipticine conjugates. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  53. Ekman R et al. (1985). Glucagon and VIP in the retina [PMID: 4044167]

    Laboratory literature summary: Glucagon and VIP in the retina. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  54. Batista-Brito R et al. (2017). Developmental Dysfunction of VIP Interneurons Impairs Cortical Circuits [PMID: 28817803]

    Laboratory literature summary: Developmental Dysfunction of VIP Interneurons Impairs Cortical Circuits. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  55. Caraglia M et al. (2008). Experimental study on vasoactive intestinal peptide (VIP) and its diaminopropane bound… [PMID: 17619118]

    Laboratory literature summary: Experimental study on vasoactive intestinal peptide (VIP) and its diaminopropane bound (VIP-DAP) analog in solution. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  56. Fahrenkrug J et al. (1995). PreproPACAP-derived peptides occur in VIP-producing tumours and co-exist with VIP [PMID: 8577931]

    Laboratory literature summary: PreproPACAP-derived peptides occur in VIP-producing tumours and co-exist with VIP. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  57. Flood JF et al. (1990). Vasoactive intestinal peptide (VIP): an amnestic neuropeptide [PMID: 2178250]

    Laboratory literature summary: Vasoactive intestinal peptide (VIP): an amnestic neuropeptide. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  58. Lucas A et al. (1982). Vasoactive intestinal peptide (VIP) in preterm and term neonates [PMID: 7136620]

    Laboratory literature summary: Vasoactive intestinal peptide (VIP) in preterm and term neonates. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  59. Pozo D et al. (2000). Immunobiology of vasoactive intestinal peptide (VIP) [PMID: 10637552]

    Laboratory literature summary: Immunobiology of vasoactive intestinal peptide (VIP). Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  60. Schytz HW et al. (2010). Cutaneous nociception and neurogenic inflammation evoked by PACAP38 and VIP [PMID: 20454993]

    Laboratory literature summary: Cutaneous nociception and neurogenic inflammation evoked by PACAP38 and VIP. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  61. Korkmaz OT et al. (2025). Vasoactive Intestinal Peptide (VIP) and its Receptors in Adipose Tissue: Implications… [PMID: 39550744]

    Laboratory literature summary: Vasoactive Intestinal Peptide (VIP) and its Receptors in Adipose Tissue: Implications for Cold Stress Adaptation. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  62. Gozes Y et al. (1991). A VIP antagonist distinguishes VIP receptors on spinal cord cells and lymphocytes [PMID: 1647246]

    Laboratory literature summary: A VIP antagonist distinguishes VIP receptors on spinal cord cells and lymphocytes. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  63. Bellinger DL et al. (1996). The significance of vasoactive intestinal polypeptide (VIP) in immunomodulation [PMID: 8790778]

    Laboratory literature summary: The significance of vasoactive intestinal polypeptide (VIP) in immunomodulation. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  64. Wu J et al. (2022). Cortical VIP(+) Interneurons in the Upper and Deeper Layers Are Transcriptionally Distinct [PMID: 35708842]

    Laboratory literature summary: Cortical VIP(+) Interneurons in the Upper and Deeper Layers Are Transcriptionally Distinct. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  65. Kingsbury MA et al. (2015). Nesting behavior is associated with VIP expression and VIP-Fos colocalization in a… [PMID: 25573700]

    Laboratory literature summary: Nesting behavior is associated with VIP expression and VIP-Fos colocalization in a network-wide manner. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  66. Girard BA et al. (2006). Noncompensation in peptide/receptor gene expression and distinct behavioral phenotypes… [PMID: 17029602]

    Laboratory literature summary: Noncompensation in peptide/receptor gene expression and distinct behavioral phenotypes in VIP- and PACAP-deficient mice. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  67. Vassiliou E et al. (2001). TH2 lymphocytes secrete functional VIP upon antigen stimulation [PMID: 11935374]

    Laboratory literature summary: TH2 lymphocytes secrete functional VIP upon antigen stimulation. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  68. Zeng L et al. (2023). Heme and Cu(2+)-induced vasoactive intestinal peptide (VIP) tyrosine nitration: A… [PMID: 37481062]

    Laboratory literature summary: Heme and Cu(2+)-induced vasoactive intestinal peptide (VIP) tyrosine nitration: A possible molecular mechanism for the attenuated…. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  69. Granoth R et al. (2000). VIP and the potent analog, stearyl-Nle(17)-VIP, induce proliferation of keratinocytes [PMID: 10858492]

    Laboratory literature summary: VIP and the potent analog, stearyl-Nle(17)-VIP, induce proliferation of keratinocytes. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  70. Agnese M et al. (2014). Molecular cloning of VIP and distribution of VIP/VPACR system in the testis of… [PMID: 24753326]

    Laboratory literature summary: Molecular cloning of VIP and distribution of VIP/VPACR system in the testis of Podarcis sicula. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  71. Waschek JA et al. (1996). Embryonic expression of vasoactive intestinal peptide (VIP) and VIP receptor genes [PMID: 8627335]

    Laboratory literature summary: Embryonic expression of vasoactive intestinal peptide (VIP) and VIP receptor genes. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  72. Colwell CS et al. (2003). Disrupted circadian rhythms in VIP- and PHI-deficient mice [PMID: 12855416]

    Laboratory literature summary: Disrupted circadian rhythms in VIP- and PHI-deficient mice. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  73. Parkman HP et al. (1997). PACAP and VIP inhibit pyloric muscle through VIP/PACAP-preferring receptors [PMID: 9350977]

    Laboratory literature summary: PACAP and VIP inhibit pyloric muscle through VIP/PACAP-preferring receptors. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  74. Zhu W et al. (2001). Projections and pathways of VIP- and nNOS-containing airway neurons in ferret trachea [PMID: 11152648]

    Laboratory literature summary: Projections and pathways of VIP- and nNOS-containing airway neurons in ferret trachea. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  75. Hoshino M et al. (1984). Production of VIP- and PHM (research subjects PHI)-related peptides in research… [PMID: 6548020]

    Laboratory literature summary: Production of VIP- and PHM (research subjects PHI)-related peptides in research subjects neuroblastoma cells. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  76. Wu J et al. (2022). Ablation of microRNAs in VIP(+) interneurons impairs olfactory discrimination and… [PMID: 34981885]

    Laboratory literature summary: Ablation of microRNAs in VIP(+) interneurons impairs olfactory discrimination and decreases neural activity in the olfactory bulb. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  77. Gozes I et al. (1986). Structure and expression of the vasoactive intestinal peptide (VIP) gene in a research… [PMID: 3748844]

    Laboratory literature summary: Structure and expression of the vasoactive intestinal peptide (VIP) gene in a research subjects oncology research models. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  78. Allescher HD et al. (1989). Inhibitory function of VIP-PHI and galanin in canine pylorus [PMID: 2468295]

    Laboratory literature summary: Inhibitory function of VIP-PHI and galanin in canine pylorus. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  79. Jiang S et al. (1997). Vasoactive intestinal peptide (VIP) stimulates in vitro growth of VIP-1… [PMID: 9108448]

    Laboratory literature summary: Vasoactive intestinal peptide (VIP) stimulates in vitro growth of VIP-1 receptor-bearing research subjects pancreatic…. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  80. Wulff BS et al. (1994). Expression and characterization of VIP and two VIP mutants in NIH 3T3 cells [PMID: 8137920]

    Laboratory literature summary: Expression and characterization of VIP and two VIP mutants in NIH 3T3 cells. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  81. Burian B et al. (2010). Vasoactive intestinal peptide (VIP) receptor expression in monocyte-derived… [PMID: 20026142]

    Laboratory literature summary: Vasoactive intestinal peptide (VIP) receptor expression in monocyte-derived macrophages from COPD research subjects. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  82. De Maria S et al. (2002). Transglutaminase-mediated polyamination of vasoactive intestinal peptide (VIP) Gln16… [PMID: 12084061]

    Laboratory literature summary: Transglutaminase-mediated polyamination of vasoactive intestinal peptide (VIP) Gln16 residue modulates VIP/PACAP receptor activity. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  83. Fahrenkrug J et al. (1977). Radioimmunoassay of vasoactive intestinal polypeptide (VIP) in plasma [PMID: 325156]

    Laboratory literature summary: Radioimmunoassay of vasoactive intestinal polypeptide (VIP) in plasma. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  84. Ahrén B et al. (1991). Effects of helodermin and VIP on insulin and glucagon secretion in the mouse [PMID: 2003148]

    Laboratory literature summary: Effects of helodermin and VIP on insulin and glucagon secretion in the mouse. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  85. Christophe J et al. (1990). VIP receptors in research subjects SUP-T1 lymphoblasts [PMID: 1979777]

    Laboratory literature summary: VIP receptors in research subjects SUP-T1 lymphoblasts. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  86. Jansen-Olesen I et al. (1994). Vasoactive intestinal peptide (VIP) like peptides in the cerebral circulation of the cat [PMID: 7836694]

    Laboratory literature summary: Vasoactive intestinal peptide (VIP) like peptides in the cerebral circulation of the cat. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  87. Sun W et al. (2000). Vasoactive intestinal peptide (VIP) inhibits TGF-beta1 production in murine macrophages [PMID: 10808055]

    Laboratory literature summary: Vasoactive intestinal peptide (VIP) inhibits TGF-beta1 production in murine macrophages. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  88. Ekström J et al. (2014). Parasympathetic vasoactive intestinal peptide (VIP): a likely contributor to… [PMID: 23731177]

    Laboratory literature summary: Parasympathetic vasoactive intestinal peptide (VIP): a likely contributor to clozapine-induced sialorrhoea. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  89. Yanaihara N et al. (1977). Immunological aspects of secretin, substance P, and VIP [PMID: 838240]

    Laboratory literature summary: Immunological aspects of secretin, substance P, and VIP. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  90. Bolkent S et al. (1994). Characterization and content of VIP and VIP mRNA in rat fore-brain neurones [PMID: 7938702]

    Laboratory literature summary: Characterization and content of VIP and VIP mRNA in rat fore-brain neurones. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  91. Cheng L et al. (2010). Progesterone receptor A mediates VIP inhibition of contraction [PMID: 20019164]

    Laboratory literature summary: Progesterone receptor A mediates VIP inhibition of contraction. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  92. Algazi MC et al. (1989). Effect of VIP antagonist on VIP-, PGE2-, and acid-stimulated duodenal bicarbonate… [PMID: 2719108]

    Laboratory literature summary: Effect of VIP antagonist on VIP-, PGE2-, and acid-stimulated duodenal bicarbonate secretion. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  93. Yelkenli İH et al. (2016). Modulation of Corpus Striatal Neurochemistry by Astrocytes and Vasoactive Intestinal… [PMID: 27115671]

    Laboratory literature summary: Modulation of Corpus Striatal Neurochemistry by Astrocytes and Vasoactive Intestinal Peptide (VIP) in neurodegeneration research models Rats. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  94. Bryant MG (1978). Vasoactive intestinal peptide (VIP) [PMID: 298740]

    Laboratory literature summary: Vasoactive intestinal peptide (VIP). Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  95. Yeomans DC et al. (2003). Conformation-dependent effects of VIP on nociception in rats [PMID: 12860207]

    Laboratory literature summary: Conformation-dependent effects of VIP on nociception in rats. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  96. Said SI (1991). Vasoactive intestinal polypeptide (VIP) in asthma [PMID: 1683200]

    Laboratory literature summary: Vasoactive intestinal polypeptide (VIP) in asthma. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  97. Vacas E et al. (2012). Vasoactive intestinal peptide (VIP) inhibits research subjects renal cell carcinoma… [PMID: 22728770]

    Laboratory literature summary: Vasoactive intestinal peptide (VIP) inhibits research subjects renal cell carcinoma proliferation. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  98. Modlin IM et al. (1979). VIP and the WDHA syndrome [PMID: 437409]

    Laboratory literature summary: VIP and the WDHA syndrome. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  99. Gourlet P et al. (1998). Analogues of VIP, helodermin, and PACAP discriminate between rat and research subjects… [PMID: 9928018]

    Laboratory literature summary: Analogues of VIP, helodermin, and PACAP discriminate between rat and research subjects VIP1 and VIP2 receptors. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  100. Shi Y et al. (2000). [Preparation of 131I-VIP and 131I-VIP receptor imaging] [PMID: 12545811]

    Laboratory literature summary: [Preparation of 131I-VIP and 131I-VIP receptor imaging]. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  101. Castorina A et al. (2008). PACAP and VIP prevent apoptosis in schwannoma cells [PMID: 18835258]

    Laboratory literature summary: PACAP and VIP prevent apoptosis in schwannoma cells. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  102. Langer I et al. (2001). Vasoactive intestinal peptide (VIP) stimulates [Ca2+]i and cyclic AMPin CHO cells… [PMID: 11587546]

    Laboratory literature summary: Vasoactive intestinal peptide (VIP) stimulates [Ca2+]i and cyclic AMPin CHO cells expressing Galpha16. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  103. Whittaker VP (1989). Vasoactive intestinal polypeptide (VIP) as a cholinergic co-transmitter: some recent… [PMID: 2699832]

    Laboratory literature summary: Vasoactive intestinal polypeptide (VIP) as a cholinergic co-transmitter: some recent results. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  104. Bodanszky M et al. (1986). Conformation of peptides of the secretin-VIP-glucagon family in solution [PMID: 3018702]

    Laboratory literature summary: Conformation of peptides of the secretin-VIP-glucagon family in solution. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  105. Wang Y et al. (1993). Neuroendocrine peptides (NPY, GRP, VIP, somatostatin) from the brain and stomach of… [PMID: 8101369]

    Laboratory literature summary: Neuroendocrine peptides (NPY, GRP, VIP, somatostatin) from the brain and stomach of the alligator. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  106. Rostène WH (1984). Neurobiological and neuroendocrine functions of the vasoactive intestinal peptide (VIP) [PMID: 6382440]

    Laboratory literature summary: Neurobiological and neuroendocrine functions of the vasoactive intestinal peptide (VIP). Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  107. Blank MA et al. (1986). Effects of VIP and related peptides and Gila monster venom on genitourinary smooth muscle [PMID: 3816973]

    Laboratory literature summary: Effects of VIP and related peptides and Gila monster venom on genitourinary smooth muscle. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  108. Fahrenkrug J (1985). Evidence for common precursors but differential processing of VIP and PHM in… [PMID: 3840886]

    Laboratory literature summary: Evidence for common precursors but differential processing of VIP and PHM in VIP-producing tumors. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  109. Rameshwar P et al. (2002). Vasoactive intestinal peptide (VIP) inhibits the proliferation of bone marrow… [PMID: 12225791]

    Laboratory literature summary: Vasoactive intestinal peptide (VIP) inhibits the proliferation of bone marrow progenitors through the VPAC1 receptor. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  110. Karasawa Y et al. (1990). Cardiac responses to VIP and VIP-ergic-cholinergic interaction in isolated dog heart… [PMID: 2272357]

    Laboratory literature summary: Cardiac responses to VIP and VIP-ergic-cholinergic interaction in isolated dog heart preparations. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  111. Thakur ML et al. (2000). Imaging tumors in research subjects with Tc-99m-VIP [PMID: 11193855]

    Laboratory literature summary: Imaging tumors in research subjects with Tc-99m-VIP. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  112. Suda K et al. (1992). Investigation of the interaction of VIP binding sites with VIP and PACAP in research… [PMID: 1320752]

    Laboratory literature summary: Investigation of the interaction of VIP binding sites with VIP and PACAP in research subjects brain. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  113. Juarranz MG et al. (2001). Vasoactive intestinal peptide (VIP) stimulates rat prostatic epithelial cell proliferation [PMID: 11398176]

    Laboratory literature summary: Vasoactive intestinal peptide (VIP) stimulates rat prostatic epithelial cell proliferation. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  114. Naruse S et al. (1986). Helodermin has a VIP-like effect upon canine blood flow [PMID: 3748849]

    Laboratory literature summary: Helodermin has a VIP-like effect upon canine blood flow. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  115. Smalley SG et al. (2009). Immunomodulation of innate immune responses by vasoactive intestinal peptide (VIP):… [PMID: 19604262]

    Laboratory literature summary: Immunomodulation of innate immune responses by vasoactive intestinal peptide (VIP): its investigational potential in inflammatory disease. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  116. Marvaldi J et al. (1986). Characterization of the vasoactive intestinal peptide (VIP) binding sites: a… [PMID: 3018691]

    Laboratory literature summary: Characterization of the vasoactive intestinal peptide (VIP) binding sites: a biochemical and an immunological approach. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  117. Zhou ZC et al. (1989). Interaction of peptides related to VIP and secretin with guinea pig pancreatic acini [PMID: 2465694]

    Laboratory literature summary: Interaction of peptides related to VIP and secretin with guinea pig pancreatic acini. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  118. Dvoráková MC (2005). Cardioprotective role of the VIP signaling system [PMID: 16341283]

    Laboratory literature summary: Cardioprotective role of the VIP signaling system. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  119. Malvasi A et al. (2011). Distribution of substance P (SP) and vasoactive intestinal peptide (VIP) in… [PMID: 21167238]

    Laboratory literature summary: Distribution of substance P (SP) and vasoactive intestinal peptide (VIP) in pseudocapsules of uterine fibroids. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  120. Moody TW et al. (1998). VIP and breast oncology research models [PMID: 9928023]

    Laboratory literature summary: VIP and breast oncology research models. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  121. Pozo D et al. (2004). The many faces of VIP in neuroimmunology: a cytokine rather a neuropeptide? [PMID: 15333575]

    Laboratory literature summary: The many faces of VIP in neuroimmunology: a cytokine rather a neuropeptide?. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  122. Zimmerman TW et al. (1985). Peptide binding to intestinal epithelium: distinct sites for insulin, EGF and VIP [PMID: 2994023]

    Laboratory literature summary: Peptide binding to intestinal epithelium: distinct sites for insulin, EGF and VIP. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  123. Fahrenkrug J et al. (1989). Non-amidated forms of VIP (glycine-extended VIP and VIP-free acid) have full… [PMID: 2623188]

    Laboratory literature summary: Non-amidated forms of VIP (glycine-extended VIP and VIP-free acid) have full bioactivity on smooth muscle. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  124. Verástegui C et al. (1997). Presence and distribution of 5HT-, VIP-, NPY-, and SP-immunoreactive structures in… [PMID: 9302550]

    Laboratory literature summary: Presence and distribution of 5HT-, VIP-, NPY-, and SP-immunoreactive structures in adult mouse lung. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  125. Magistretti PJ et al. (1986). Actions of VIP, hGRF, PHI and secretin: comparative studies in cerebral cortex and… [PMID: 3018695]

    Laboratory literature summary: Actions of VIP, hGRF, PHI and secretin: comparative studies in cerebral cortex and adenohypophysis. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  126. Bellan C et al. (1991). Suramin inhibits vasoactive intestinal peptide (VIP) binding and VIP-induced cAMP… [PMID: 1667418]

    Laboratory literature summary: Suramin inhibits vasoactive intestinal peptide (VIP) binding and VIP-induced cAMP accumulation into two research subjects cancerous cell…. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  127. Fishbein VA et al. (1994). A chimeric VIP-PACAP analogue but not VIP pseudopeptides function as VIP receptor… [PMID: 7912431]

    Laboratory literature summary: A chimeric VIP-PACAP analogue but not VIP pseudopeptides function as VIP receptor antagonists. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  128. Sanides-Kohlrausch C et al. (1990). VIP- and PHI-immunoreactivity in olfactory centers of the adult cat [PMID: 2341612]

    Laboratory literature summary: VIP- and PHI-immunoreactivity in olfactory centers of the adult cat. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  129. Gozes I et al. (1994). Stearyl-norleucine-vasoactive intestinal peptide (VIP): a novel VIP analog for… [PMID: 8156912]

    Laboratory literature summary: Stearyl-norleucine-vasoactive intestinal peptide (VIP): a novel VIP analog for noninvasive impotence investigation. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  130. Fahrenkrug J et al. (1986). Cosecretion of peptide histidine methionine (PHM) and vasoactive intestinal peptide… [PMID: 3797338]

    Laboratory literature summary: Cosecretion of peptide histidine methionine (PHM) and vasoactive intestinal peptide (VIP) in research subjects with VIP-producing tumors. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  131. Ahrén B et al. (1989). Effects of VIP and helodermin on thyroid hormone secretion in the mouse [PMID: 2922106]

    Laboratory literature summary: Effects of VIP and helodermin on thyroid hormone secretion in the mouse. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  132. Dufes C et al. (2003). Brain delivery of vasoactive intestinal peptide (VIP) following nasal administration… [PMID: 12672605]

    Laboratory literature summary: Brain delivery of vasoactive intestinal peptide (VIP) following nasal administration to rats. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  133. Askar B et al. (2015). Vasoactive intestinal peptide (VIP) differentially affects inflammatory immune… [PMID: 26206287]

    Laboratory literature summary: Vasoactive intestinal peptide (VIP) differentially affects inflammatory immune responses in research subjects monocytes infected with…. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  134. Ekblad E et al. (1985). Two distinct VIP precursors in cartilaginous fish? [PMID: 3913914]

    Laboratory literature summary: Two distinct VIP precursors in cartilaginous fish?. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  135. Fazekas A et al. (1987). VIP and noncholinergic vasodilatation in rabbit submandibular gland [PMID: 2437546]

    Laboratory literature summary: VIP and noncholinergic vasodilatation in rabbit submandibular gland. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  136. Ito T et al. (2000). Rat and guinea pig pancreatic acini possess both VIP(1) and VIP(2) receptors, which… [PMID: 10644563]

    Laboratory literature summary: Rat and guinea pig pancreatic acini possess both VIP(1) and VIP(2) receptors, which mediate enzyme secretion. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  137. Schaffalitzky de Muckadell OB et al. (1977). Release of vasoactive intestinal polypeptide (VIP) by intraduodenal stimuli [PMID: 594650]

    Laboratory literature summary: Release of vasoactive intestinal polypeptide (VIP) by intraduodenal stimuli. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  138. Alexander LD et al. (1995). Involvement of vasopressin and corticotropin-releasing hormone in VIP- and PHI-induced… [PMID: 7791960]

    Laboratory literature summary: Involvement of vasopressin and corticotropin-releasing hormone in VIP- and PHI-induced secretion of ACTH and corticosterone. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  139. Rosati L et al. (2017). Vasoactive intestinal peptide (VIP) localization in the epididymis of two vertebrate… [PMID: 28784577]

    Laboratory literature summary: Vasoactive intestinal peptide (VIP) localization in the epididymis of two vertebrate species. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  140. Konturek SJ et al. (1976). Comparison of vasoactive intestinal peptide (VIP) and secretin in gastric secretion… [PMID: 765958]

    Laboratory literature summary: Comparison of vasoactive intestinal peptide (VIP) and secretin in gastric secretion and mucosal blood flow. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  141. Du BH et al. (1985). Guinea pig has a unique mammalian VIP [PMID: 4004849]

    Laboratory literature summary: Guinea pig has a unique mammalian VIP. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  142. Bjellerup P et al. (1995). Somatostatin and vasoactive intestinal peptide (VIP) in neuroblastoma and… [PMID: 7576950]

    Laboratory literature summary: Somatostatin and vasoactive intestinal peptide (VIP) in neuroblastoma and ganglioneuroma: chromatographic characterisation and release…. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  143. Lamperti ED et al. (1991). Characterization of the gene and messages for vasoactive intestinal polypeptide (VIP)… [PMID: 1851524]

    Laboratory literature summary: Characterization of the gene and messages for vasoactive intestinal polypeptide (VIP) in rat and mouse. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  144. Cottrell GA et al. (1984). Behavioral actions of vasoactive intestinal peptide (VIP) [PMID: 6089028]

    Laboratory literature summary: Behavioral actions of vasoactive intestinal peptide (VIP). Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  145. Ebeid AM et al. (1977). Release of VIP by calcium stimulation [PMID: 835774]

    Laboratory literature summary: Release of VIP by calcium stimulation. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  146. Korkmaz OT et al. (2021). Vasoactive intestinal peptide (VIP) conducts the neuronal activity during absence… [PMID: 34571088]

    Laboratory literature summary: Vasoactive intestinal peptide (VIP) conducts the neuronal activity during absence seizures: GABA seems to be the main mediator of VIP. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  147. Kitano H et al. (1998). Presence of mRNA for vasoactive intestinal polypeptide (VIP) and its receptor in the… [PMID: 9682813]

    Laboratory literature summary: Presence of mRNA for vasoactive intestinal polypeptide (VIP) and its receptor in the rat inner ear. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  148. King JT Jr et al. (1988). VIP-, SS-, and GABA-like immunoreactivity in the mid-hippocampal region of El… [PMID: 3214726]

    Laboratory literature summary: VIP-, SS-, and GABA-like immunoreactivity in the mid-hippocampal region of El (epileptic) and C57BL/6 mice. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  149. Conlon JM et al. (1985). Regulatory peptides (glucagon, somatostatin, substance P, and VIP) in the brain and… [PMID: 2580753]

    Laboratory literature summary: Regulatory peptides (glucagon, somatostatin, substance P, and VIP) in the brain and gastrointestinal tract of Ambystoma mexicanum. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  150. Thakur ML et al. (2004). PET imaging of oncogene overexpression using 64Cu-vasoactive intestinal peptide (VIP)… [PMID: 15299065]

    Laboratory literature summary: PET imaging of oncogene overexpression using 64Cu-vasoactive intestinal peptide (VIP) analog: comparison with 99mTc-VIP analog. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  151. Valdehita A et al. (2010). Nuclear localization of vasoactive intestinal peptide (VIP) receptors in research… [PMID: 20691743]

    Laboratory literature summary: Nuclear localization of vasoactive intestinal peptide (VIP) receptors in research subjects breast oncology research models. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  152. Ng SY et al. (2012). Agnathan VIP, PACAP and their receptors: ancestral origins of today's highly… [PMID: 22957100]

    Laboratory literature summary: Agnathan VIP, PACAP and their receptors: ancestral origins of today's highly diversified forms. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  153. Kitanishi T et al. (1998). Immunohistochemical detection of vasoactive intestinal polypeptide (VIP) and the VIP… [PMID: 10095862]

    Laboratory literature summary: Immunohistochemical detection of vasoactive intestinal polypeptide (VIP) and the VIP receptor in the rat inner ear. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  154. Shima K et al. (1996). Characterization of VIP-and helodermin-preferring receptors on rat platelets [PMID: 8837217]

    Laboratory literature summary: Characterization of VIP-and helodermin-preferring receptors on rat platelets. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  155. Studeny S et al. (2008). Urinary bladder function and somatic sensitivity in vasoactive intestinal polypeptide… [PMID: 18561033]

    Laboratory literature summary: Urinary bladder function and somatic sensitivity in vasoactive intestinal polypeptide (VIP)-/- mice. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  156. Reed HE et al. (2001). Vasoactive intestinal polypeptide (VIP) phase-shifts the rat suprachiasmatic nucleus… [PMID: 11207820]

    Laboratory literature summary: Vasoactive intestinal polypeptide (VIP) phase-shifts the rat suprachiasmatic nucleus clock in vitro. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  157. Dufes C et al. (2003). Effects of the vasoactive intestinal peptide (VIP) and related peptides on… [PMID: 14593209]

    Laboratory literature summary: Effects of the vasoactive intestinal peptide (VIP) and related peptides on glioblastoma cell growth in vitro. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  158. Király A et al. (1997). Influence of [4Cl-D-Phe6,Leu17]VIP on VIP- and central TRH-induced gastric hyperemia [PMID: 9392832]

    Laboratory literature summary: Influence of [4Cl-D-Phe6,Leu17]VIP on VIP- and central TRH-induced gastric hyperemia. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  159. Collado B et al. (2006). Hypoxia regulation of expression and angiogenic effects of vasoactive intestinal… [PMID: 16563610]

    Laboratory literature summary: Hypoxia regulation of expression and angiogenic effects of vasoactive intestinal peptide (VIP) and VIP receptors in LNCaP prostate…. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  160. Szema AM et al. (2006). Mice lacking the VIP gene show airway hyperresponsiveness and airway inflammation,… [PMID: 16782752]

    Laboratory literature summary: Mice lacking the VIP gene show airway hyperresponsiveness and airway inflammation, partially reversible by VIP. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  161. Szabadfi K et al. (2012). Protective effects of vasoactive intestinal peptide (VIP) in ischemic retinal degeneration [PMID: 22544514]

    Laboratory literature summary: Protective effects of vasoactive intestinal peptide (VIP) in ischemic retinal degeneration. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  162. Ventre G et al. (2013). Salivary VIP concentrations are elevated in research subjects after acute stress [PMID: 23994551]

    Laboratory literature summary: Salivary VIP concentrations are elevated in research subjects after acute stress. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  163. Dzirasa K (2017). Working memory: The real VIP [PMID: 28490667]

    Laboratory literature summary: Working memory: The real VIP. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  164. Calam J et al. (1984). Renal function during vasoactive intestinal peptide (VIP) infusions in normal man and… [PMID: 6382198]

    Laboratory literature summary: Renal function during vasoactive intestinal peptide (VIP) infusions in normal man and research subjects with liver disease. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  165. Grundemar L et al. (1992). Unlike VIP, the VIP-related peptides PACAP, helodermin and helospectin suppress… [PMID: 1438978]

    Laboratory literature summary: Unlike VIP, the VIP-related peptides PACAP, helodermin and helospectin suppress electrically evoked contractions of rat vas deferens. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  166. Sundler F et al. (1978). Peptidergic (VIP) nerves in the pancreas [PMID: 632129]

    Laboratory literature summary: Peptidergic (VIP) nerves in the pancreas. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  167. Rubinstein I et al. (2005). All D-VIP mitigates vasodilation elicited by L-VIP, micellar L-VIP and micellar… [PMID: 15652658]

    Laboratory literature summary: All D-VIP mitigates vasodilation elicited by L-VIP, micellar L-VIP and micellar PACAP1-38, but not PACAP1-38, in vivo. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  168. Eriksson M et al. (1987). Increased levels of vasoactive intestinal peptide (VIP) and oxytocin during suckling… [PMID: 3658810]

    Laboratory literature summary: Increased levels of vasoactive intestinal peptide (VIP) and oxytocin during suckling in lactating dogs. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  169. Guerrero JM et al. (1986). Interaction of a bovine thymic peptide extract with vasoactive intestinal peptide… [PMID: 3021253]

    Laboratory literature summary: Interaction of a bovine thymic peptide extract with vasoactive intestinal peptide (VIP) receptors. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  170. Frühwald MC et al. (1999). Vasoactive intestinal peptide (VIP) and VIP receptors: gene expression and growth… [PMID: 10188714]

    Laboratory literature summary: Vasoactive intestinal peptide (VIP) and VIP receptors: gene expression and growth modulation in medulloblastoma and other central…. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  171. Carlquist M et al. (1982). Isolation and amino acid composition of research subjects vasoactive intestinal… [PMID: 7061035]

    Laboratory literature summary: Isolation and amino acid composition of research subjects vasoactive intestinal polypeptide (VIP). Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  172. Flemström G et al. (1985). Effects of some opiates and vasoactive intestinal peptide (VIP) on duodenal surface… [PMID: 3860926]

    Laboratory literature summary: Effects of some opiates and vasoactive intestinal peptide (VIP) on duodenal surface epithelial bicarbonate secretion in the rat. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  173. Lamanna C et al. (1999). Galanin in the lizard oviduct: its distribution and relationships with… [PMID: 10403497]

    Laboratory literature summary: Galanin in the lizard oviduct: its distribution and relationships with estrogen-pathway markers-pathway markers, VIP and oviposition. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  174. Grundemar L et al. (1990). Vascular effects of helodermin, helospectin I and helospectin II: a comparison with… [PMID: 2331581]

    Laboratory literature summary: Vascular effects of helodermin, helospectin I and helospectin II: a comparison with vasoactive intestinal peptide (VIP). Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  175. Xin Z et al. (1997). Effect of vasoactive intestinal peptide (VIP) on cytokine production and expression of… [PMID: 9404731]

    Laboratory literature summary: Effect of vasoactive intestinal peptide (VIP) on cytokine production and expression of VIP receptors in thymocyte subsets. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  176. Dangoor D et al. (2006). Novel extended and branched N-terminal analogs of VIP [PMID: 16962672]

    Laboratory literature summary: Novel extended and branched N-terminal analogs of VIP. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  177. Dickinson KE et al. (1986). Characterization of vasoactive intestinal peptide (VIP) receptors in mammalian lung [PMID: 3025822]

    Laboratory literature summary: Characterization of vasoactive intestinal peptide (VIP) receptors in mammalian lung. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  178. Jørgensen JC (1991). Interaction between norepinephrine, NPY and VIP in the ovarian artery [PMID: 1788146]

    Laboratory literature summary: Interaction between norepinephrine, NPY and VIP in the ovarian artery. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  179. Vu JP et al. (2015). Regulation of feeding-behavior endpoints, Body Composition, and Metabolic Hormones by Vasoactive… [PMID: 25904310]

    Laboratory literature summary: Regulation of feeding-behavior endpoints, Body Composition, and Metabolic Hormones by Vasoactive Intestinal Polypeptide (VIP). Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  180. Alexander LD et al. (1995). VIP antagonist demonstrates differences in VIP- and PHI-mediated stimulation and… [PMID: 8577937]

    Laboratory literature summary: VIP antagonist demonstrates differences in VIP- and PHI-mediated stimulation and inhibition of ACTH and corticosterone secretion in rats. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  181. Robberecht P et al. (1988). Pharmacological characterization of VIP receptors in research subjects lung membranes [PMID: 2836826]

    Laboratory literature summary: Pharmacological characterization of VIP receptors in research subjects lung membranes. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  182. Nam C et al. (2009). The role of vasoactive intestinal peptide (VIP) in megakaryocyte proliferation [PMID: 18663606]

    Laboratory literature summary: The role of vasoactive intestinal peptide (VIP) in megakaryocyte proliferation. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  183. Said SI et al. (1980). VIP: Possible functions as a neural peptide [PMID: 6104904]

    Laboratory literature summary: VIP: Possible functions as a neural peptide. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  184. Segura JJ et al. (1991). Characterization of functional receptors for vasoactive intestinal peptide (VIP) in… [PMID: 1652777]

    Laboratory literature summary: Characterization of functional receptors for vasoactive intestinal peptide (VIP) in rat peritoneal macrophages. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  185. McMaster D et al. (1987). Iodinated derivatives of vasoactive intestinal peptide (VIP), PHI and PHM:… [PMID: 3628082]

    Laboratory literature summary: Iodinated derivatives of vasoactive intestinal peptide (VIP), PHI and PHM: purification, chemical characterization and biological activity. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  186. Schaaper WM et al. (1984). Synthesis of vasoactive intestinal peptide (VIP) via the mixed anhydride method [PMID: 6473149]

    Laboratory literature summary: Synthesis of vasoactive intestinal peptide (VIP) via the mixed anhydride method. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  187. Gafvelin G et al. (1991). A fragment of triosephosphate isomerase competes with the vasoactive intestinal… [PMID: 1851427]

    Laboratory literature summary: A fragment of triosephosphate isomerase competes with the vasoactive intestinal polypeptide (VIP) for binding to the VIP receptor. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  188. Rubinstein I et al. (1999). Conformation and vasoreactivity of VIP in phospholipids: effects of calmodulin [PMID: 10698126]

    Laboratory literature summary: Conformation and vasoreactivity of VIP in phospholipids: effects of calmodulin. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  189. Blitz W et al. (1985). Cholinergic and pancreatic actions of purified porcine and synthetic vasoactive… [PMID: 4062433]

    Laboratory literature summary: Cholinergic and pancreatic actions of purified porcine and synthetic vasoactive intestinal peptide (VIP). Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  190. Ohmori Y et al. (2004). Pharmacological effects and lung-binding characteristics of a novel VIP analogue,… [PMID: 15518913]

    Laboratory literature summary: Pharmacological effects and lung-binding characteristics of a novel VIP analogue, [R15, 20, 21, L17]-VIP-GRR (IK312532). Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  191. Kim MJ et al. (2003). Vasoactive intestinal peptide (VIP) and VIP mRNA decrease in the cerebral cortex of… [PMID: 12834919]

    Laboratory literature summary: Vasoactive intestinal peptide (VIP) and VIP mRNA decrease in the cerebral cortex of nNOS knock-out(-/-) mice. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  192. Zane HK et al. (2017). Versatile Interacting Peptide (VIP) Tags for Labeling Proteins with Bright Chemical… [PMID: 28052473]

    Laboratory literature summary: Versatile Interacting Peptide (VIP) Tags for Labeling Proteins with Bright Chemical Reporters. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  193. Robberecht P et al. (1986). Interaction of vasoactive intestinal peptide (VIP) and N-terminally modified VIP… [PMID: 3017717]

    Laboratory literature summary: Interaction of vasoactive intestinal peptide (VIP) and N-terminally modified VIP analogs with rat pancreatic, hepatic and pituitary…. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  194. Dangoor D et al. (2007). Novel analogs of VIP with multiple C-terminal domains [PMID: 17481779]

    Laboratory literature summary: Novel analogs of VIP with multiple C-terminal domains. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  195. Dimaline R et al. (1986). Purification and characterisation of VIP from two species of dogfish [PMID: 3748847]

    Laboratory literature summary: Purification and characterisation of VIP from two species of dogfish. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  196. Calvo JR et al. (1986). Interaction of thymic peptide thymosin alpha 1 with vasoactive intestinal peptide… [PMID: 3028522]

    Laboratory literature summary: Interaction of thymic peptide thymosin alpha 1 with vasoactive intestinal peptide (VIP) receptors. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  197. Henriksen JH et al. (1980). Vasoactive intestinal polypeptide (VIP) in cirrhosis: arteriovenous extraction in… [PMID: 7209387]

    Laboratory literature summary: Vasoactive intestinal polypeptide (VIP) in cirrhosis: arteriovenous extraction in different vascular beds. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  198. Calvo JJ et al. (1990). Effect of ACTH on VIP and galanin release from the pituitary [PMID: 1688792]

    Laboratory literature summary: Effect of ACTH on VIP and galanin release from the pituitary. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  199. Gourlet P et al. (1998). Interaction of lipophilic VIP derivatives with recombinant VIP1/PACAP and VIP2/PACAP… [PMID: 9726637]

    Laboratory literature summary: Interaction of lipophilic VIP derivatives with recombinant VIP1/PACAP and VIP2/PACAP receptors. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  200. Gespach C et al. (1988). Pharmacology and molecular identification of vasoactive intestinal peptide (VIP)… [PMID: 2831906]

    Laboratory literature summary: Pharmacology and molecular identification of vasoactive intestinal peptide (VIP) receptors in normal and cancerous gastric mucosa in man. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  201. Turner JT et al. (1986). A fragment of vasoactive intestinal peptide, VIP(10-28), is an antagonist of VIP in… [PMID: 3025826]

    Laboratory literature summary: A fragment of vasoactive intestinal peptide, VIP(10-28), is an antagonist of VIP in the colon carcinoma cell line, HT29. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  202. Dufes C et al. (2004). Glucose-targeted niosomes deliver vasoactive intestinal peptide (VIP) to the brain [PMID: 15488681]

    Laboratory literature summary: Glucose-targeted niosomes deliver vasoactive intestinal peptide (VIP) to the brain. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  203. Caraglia M et al. (2006). Effects of VIP and VIP-DAP on proliferation and lipid peroxidation metabolism in… [PMID: 16888160]

    Laboratory literature summary: Effects of VIP and VIP-DAP on proliferation and lipid peroxidation metabolism in research subjects KB cells. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  204. Holle GE et al. (1995). Effect of 17-norleucine-VIP on gastroduodenal motility relative to serum VIP… [PMID: 7485511]

    Laboratory literature summary: Effect of 17-norleucine-VIP on gastroduodenal motility relative to serum VIP concentration and blockade of NOS. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  205. Köves K et al. (2002). PACAP and VIP in the photoneuroendocrine system (PNES) [PMID: 11862161]

    Laboratory literature summary: PACAP and VIP in the photoneuroendocrine system (PNES). Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  206. Dimaline R et al. (1986). Isolation and partial sequence of elasmobranch VIP [PMID: 3715063]

    Laboratory literature summary: Isolation and partial sequence of elasmobranch VIP. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  207. Bhargava S et al. (2002). A complete substitutional analysis of VIP for better oncology research models imaging… [PMID: 12203840]

    Laboratory literature summary: A complete substitutional analysis of VIP for better oncology research models imaging properties. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  208. Ottesen B et al. (1984). Vasoactive intestinal peptide (VIP) stimulates oxytocin and vasopressin release from… [PMID: 6479104]

    Laboratory literature summary: Vasoactive intestinal peptide (VIP) stimulates oxytocin and vasopressin release from the neurohypophyis. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  209. Laburthe M et al. (1986). Study of species specificity in growth hormone-releasing factor (GRF) interaction with… [PMID: 3003561]

    Laboratory literature summary: Study of species specificity in growth hormone-releasing factor (GRF) interaction with vasoactive intestinal peptide (VIP) receptors…. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  210. Theriault E et al. (1987). Morphology of striatal neurons containing VIP-like immunoreactivity [PMID: 2434535]

    Laboratory literature summary: Morphology of striatal neurons containing VIP-like immunoreactivity. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  211. Wulff B et al. (1997). The C-terminal part of VIP is important for receptor binding and activation, as… [PMID: 9303545]

    Laboratory literature summary: The C-terminal part of VIP is important for receptor binding and activation, as evidenced by chimeric constructs of VIP/secretin. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  212. Luis J et al. (1990). Characterization of VIP- and helodermin-preferring receptors on research subjects… [PMID: 1965034]

    Laboratory literature summary: Characterization of VIP- and helodermin-preferring receptors on research subjects small cell lung carcinoma cell lines. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  213. Toscano MG et al. (2010). Dendritic cells transduced with lentiviral vectors expressing VIP differentiate into… [PMID: 20068554]

    Laboratory literature summary: Dendritic cells transduced with lentiviral vectors expressing VIP differentiate into VIP-secreting tolerogenic-like DCs. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  214. Weick RF et al. (1992). Effect of [4Cl-D-Phe6,Leu17]VIP on the inhibition of pulsatile LH release by VIP and… [PMID: 1488097]

    Laboratory literature summary: Effect of [4Cl-D-Phe6,Leu17]VIP on the inhibition of pulsatile LH release by VIP and related peptides in the ovariectomized rat. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  215. Nilsson SF et al. (1984). Vasoactive intestinal polypeptide (VIP): effects in the eye and on regional blood flows [PMID: 6148840]

    Laboratory literature summary: Vasoactive intestinal polypeptide (VIP): effects in the eye and on regional blood flows. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  216. Kaku K et al. (1986). Circadian cycles in VIP content and VIP stimulation of cyclic AMP accumulation in the… [PMID: 3018698]

    Laboratory literature summary: Circadian cycles in VIP content and VIP stimulation of cyclic AMP accumulation in the rat pineal gland. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  217. Shirai M et al. (1990). Content and distribution of vasoactive intestinal polypeptide (VIP) in cavernous… [PMID: 2321332]

    Laboratory literature summary: Content and distribution of vasoactive intestinal polypeptide (VIP) in cavernous tissue of research subjects penis. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  218. Gonzalez-Rey E et al. (2006). VIP: an agent with license to kill infective parasites [PMID: 16888182]

    Laboratory literature summary: VIP: an agent with license to kill infective parasites. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  219. Bondesson L et al. (1991). Dual effects of vasoactive intestinal peptide (VIP) on leucocyte migration [PMID: 1877347]

    Laboratory literature summary: Dual effects of vasoactive intestinal peptide (VIP) on leucocyte migration. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  220. Ahmed CE et al. (1986). The immature rat ovary is innervated by vasoactive intestinal peptide (VIP)-containing… [PMID: 3512260]

    Laboratory literature summary: The immature rat ovary is innervated by vasoactive intestinal peptide (VIP)-containing fibers and responds to VIP with steroid secretion. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  221. Lundberg P et al. (2001). Vasoactive intestinal peptide (VIP)/pituitary adenylate cyclase-activating peptide… [PMID: 11145597]

    Laboratory literature summary: Vasoactive intestinal peptide (VIP)/pituitary adenylate cyclase-activating peptide receptor subtypes in mouse calvarial osteoblasts:…. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  222. Gaudin P et al. (1995). Mutational analysis of cysteine residues within the extracellular domains of the… [PMID: 7598720]

    Laboratory literature summary: Mutational analysis of cysteine residues within the extracellular domains of the research subjects vasoactive intestinal peptide (VIP) 1…. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  223. Robichon A et al. (1987). Selective photolabeling of high and low affinity binding sites for vasoactive… [PMID: 3026793]

    Laboratory literature summary: Selective photolabeling of high and low affinity binding sites for vasoactive intestinal peptide (VIP): evidence for two classes of…. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  224. Lundberg JM et al. (1982). Vascular effects of the peptides PYY and PHI: comparison with APP and VIP [PMID: 6897040]

    Laboratory literature summary: Vascular effects of the peptides PYY and PHI: comparison with APP and VIP. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  225. Bellinger DL et al. (1997). Vasoactive intestinal polypeptide (VIP) innervation of rat spleen, thymus, and lymph nodes [PMID: 9396054]

    Laboratory literature summary: Vasoactive intestinal polypeptide (VIP) innervation of rat spleen, thymus, and lymph nodes. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  226. Cheng D et al. (2006). Radiolabeling and in vitro and in vivo characterization of [18F]FB-[R(8,15,21),… [PMID: 17177894]

    Laboratory literature summary: Radiolabeling and in vitro and in vivo characterization of [18F]FB-[R(8,15,21), L17]-VIP as a PET imaging agent for oncology research…. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  227. Morice A et al. (1984). VIP as bronchodilator [PMID: 6142190]

    Laboratory literature summary: VIP as bronchodilator. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  228. Troc P et al. (1988). [VIP: laboratory value] [PMID: 3255222]

    Laboratory literature summary: [VIP: laboratory value]. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  229. Díaz-Juárez JL et al. (1994). VIP suppression in the intestine and cerebral cortex following administration of VIP… [PMID: 7800913]

    Laboratory literature summary: VIP suppression in the intestine and cerebral cortex following administration of VIP antiserum to newborn rats. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  230. Vertongen P et al. (1997). Autoradiographic visualization of the receptor subclasses for vasoactive intestinal… [PMID: 9437715]

    Laboratory literature summary: Autoradiographic visualization of the receptor subclasses for vasoactive intestinal polypeptide (VIP) in rat brain. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  231. Said SI (1979). Vasoactive intestinal polypeptide (VIP) as a mediator of the watery diarrhea syndrome [PMID: 229653]

    Laboratory literature summary: Vasoactive intestinal polypeptide (VIP) as a mediator of the watery diarrhea syndrome. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  232. Said SI (1974). Candidate hormones of the gut. V. Vasoactive intestinal peptide (VIP) [PMID: 4606296]

    Laboratory literature summary: Candidate hormones of the gut. V. Vasoactive intestinal peptide (VIP). Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  233. Sahir N et al. (2006). Neonatal mice of the Down syndrome model, Ts65Dn, exhibit upregulated VIP measures and… [PMID: 17401158]

    Laboratory literature summary: Neonatal mice of the Down syndrome model, Ts65Dn, exhibit upregulated VIP measures and reduced responsiveness of cortical astrocytes to…. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  234. Suzuki Y et al. (1984). Characterization of the relaxant effects of vasoactive intestinal peptide (VIP) and… [PMID: 6549149]

    Laboratory literature summary: Characterization of the relaxant effects of vasoactive intestinal peptide (VIP) and PHI on isolated brain arteries. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  235. Gozes I et al. (1984). Studies toward the biosynthesis of vasoactive intestinal peptide (VIP) [PMID: 6473148]

    Laboratory literature summary: Studies toward the biosynthesis of vasoactive intestinal peptide (VIP). Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  236. Dimaline R et al. (1987). A novel vasoactive intestinal peptide (VIP) from elasmobranch intestine has full… [PMID: 2441759]

    Laboratory literature summary: A novel vasoactive intestinal peptide (VIP) from elasmobranch intestine has full affinity for mammalian pancreatic VIP receptors. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  237. Robberecht P et al. (1987). [D-Phe4]peptide histidine-isoleucinamide ([D-Phe4]PHI), a highly selective… [PMID: 3036504]

    Laboratory literature summary: [D-Phe4]peptide histidine-isoleucinamide ([D-Phe4]PHI), a highly selective vasoactive-intestinal-peptide (VIP) agonist, discriminates…. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  238. Ichiki Y et al. (1992). Organ distribution and characterization of porcine peptides (VIP, CGRP and PHI) that… [PMID: 1329741]

    Laboratory literature summary: Organ distribution and characterization of porcine peptides (VIP, CGRP and PHI) that increase cAMP in rat platelets. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  239. Hakoda H et al. (1990). Modulation of cholinergic neurotransmission by the peptide VIP, VIP antiserum and VIP… [PMID: 2172520]

    Laboratory literature summary: Modulation of cholinergic neurotransmission by the peptide VIP, VIP antiserum and VIP antagonists in dog and cat trachea. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  240. Grider JR et al. (1990). Vasoactive intestinal peptide (VIP) as transmitter of inhibitory motor neurons of the… [PMID: 2110976]

    Laboratory literature summary: Vasoactive intestinal peptide (VIP) as transmitter of inhibitory motor neurons of the gut: evidence from the use of selective VIP…. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  241. Liu YC et al. (1999). Neuroregulation by vasoactive intestinal peptide (VIP) of mucus secretion in ferret… [PMID: 10051131]

    Laboratory literature summary: Neuroregulation by vasoactive intestinal peptide (VIP) of mucus secretion in ferret trachea: activation of BK(Ca) channels and…. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  242. Huang M et al. (1990). PHI preferentially binds to VIP receptors in normal rat tissues [PMID: 2178244]

    Laboratory literature summary: PHI preferentially binds to VIP receptors in normal rat tissues. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  243. Zawilska JB et al. (2005). Receptors for VIP and PACAP in guinea pig cerebral cortex: effects on cyclic AMP… [PMID: 15800375]

    Laboratory literature summary: Receptors for VIP and PACAP in guinea pig cerebral cortex: effects on cyclic AMP synthesis and characterization by 125I-VIP binding. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  244. Martin JM et al. (1989). A research subjects melanoma-derived cell line (IGR39) with a very high number of… [PMID: 2538331]

    Laboratory literature summary: A research subjects melanoma-derived cell line (IGR39) with a very high number of vasoactive-intestinal-peptide (VIP) receptors. 2.…. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  245. Onyüksel H et al. (2003). Interactions of VIP with rigid phospholipid bilayers: implications for vasoreactivity [PMID: 12668213]

    Laboratory literature summary: Interactions of VIP with rigid phospholipid bilayers: implications for vasoreactivity. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  246. Uehara S et al. (1987). Fundamental and laboratory evaluation of vasoactive intestinal peptide (VIP) in… [PMID: 3317528]

    Laboratory literature summary: Fundamental and laboratory evaluation of vasoactive intestinal peptide (VIP) in pancreatitis by radioimmunoassay kit. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  247. Zimmerman RP et al. (1988). Vasoactive intestinal peptide (VIP) receptors in the canine gastrointestinal tract [PMID: 2854625]

    Laboratory literature summary: Vasoactive intestinal peptide (VIP) receptors in the canine gastrointestinal tract. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  248. Sirianni MC et al. (1992). Modulation of research subjects natural killer activity by vasoactive intestinal… [PMID: 1574603]

    Laboratory literature summary: Modulation of research subjects natural killer activity by vasoactive intestinal peptide (VIP) family. VIP, glucagon and GHRF…. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  249. Zia H et al. (1996). Breast oncology research models growth is inhibited by vasoactive intestinal peptide… [PMID: 8758916]

    Laboratory literature summary: Breast oncology research models growth is inhibited by vasoactive intestinal peptide (VIP) hybrid, a synthetic VIP receptor antagonist. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  250. Field M et al. (1983). Pancreatic cholera: is the diarrhea due to VIP? [PMID: 6316137]

    Laboratory literature summary: Pancreatic cholera: is the diarrhea due to VIP?. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  251. Carretero J et al. (1996). Dopamine inhibits in vitro release of VIP and proliferation of VIP-immunoreactive… [PMID: 8868304]

    Laboratory literature summary: Dopamine inhibits in vitro release of VIP and proliferation of VIP-immunoreactive pituitary cells. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  252. Villar HV et al. (1976). Suppression of gastrin release and gastric secretion by gastric inhibitory polypeptide… [PMID: 938120]

    Laboratory literature summary: Suppression of gastrin release and gastric secretion by gastric inhibitory polypeptide (GIP) and vasoactive intestinal polypeptide (VIP). Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  253. Reale V et al. (1987). Vasoactive intestinal peptide (VIP) induces a K+ current in the Xenopus oocyte membrane [PMID: 2450310]

    Laboratory literature summary: Vasoactive intestinal peptide (VIP) induces a K+ current in the Xenopus oocyte membrane. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  254. Kidane AH et al. (2007). Actions of PACAP and VIP on melanotrope cells of Xenopus laevis [PMID: 17482316]

    Laboratory literature summary: Actions of PACAP and VIP on melanotrope cells of Xenopus laevis. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  255. Robberecht P et al. (1990). Heterogeneity of VIP receptors [PMID: 2164799]

    Laboratory literature summary: Heterogeneity of VIP receptors. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  256. Hvidsten D et al. (1989). Clearance of vasoactive intestinal polypeptide (VIP) in the porcine pulmonary circulation [PMID: 2623191]

    Laboratory literature summary: Clearance of vasoactive intestinal polypeptide (VIP) in the porcine pulmonary circulation. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  257. Eriksson LS et al. (1989). Influence of vasoactive intestinal polypeptide (VIP) on splanchnic and central… [PMID: 2666962]

    Laboratory literature summary: Influence of vasoactive intestinal polypeptide (VIP) on splanchnic and central hemodynamics in healthy subjects. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  258. Konturek SJ et al. (1976). Cyclic AMP and bicarbonate responses of the dog pancreas to vasoactive intestinal… [PMID: 184219]

    Laboratory literature summary: Cyclic AMP and bicarbonate responses of the dog pancreas to vasoactive intestinal peptide (VIP) and secretion. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  259. Pozo D et al. (1995). Homologous regulation of vasoactive intestinal peptide (VIP) receptors on rat… [PMID: 7784261]

    Laboratory literature summary: Homologous regulation of vasoactive intestinal peptide (VIP) receptors on rat peritoneal macrophages. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  260. Calvo JR et al. (1986). Interaction of vasoactive intestinal peptide (VIP) with rat lymphoid cells [PMID: 3016677]

    Laboratory literature summary: Interaction of vasoactive intestinal peptide (VIP) with rat lymphoid cells. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  261. Haidan A et al. (1998). Research subjects adrenocortical NCI-H295 cells express VIP receptors. Steroidogenic… [PMID: 9864057]

    Laboratory literature summary: research subjects adrenocortical NCI-H295 cells express VIP receptors. Steroidogenic effect of vasoactive intestinal peptide (VIP). Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  262. Mao YK et al. (1993). VIP receptors on canine submucosal synaptosomes [PMID: 8134296]

    Laboratory literature summary: VIP receptors on canine submucosal synaptosomes. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  263. Ikezaki H et al. (1998). Vasodilation elicited by liposomal VIP is unimpeded by anti-VIP antibody in hamster… [PMID: 9688960]

    Laboratory literature summary: Vasodilation elicited by liposomal VIP is unimpeded by anti-VIP antibody in hamster cheek pouch. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  264. Tan YV et al. (2004). Diffuse pharmacophoric domains of vasoactive intestinal peptide (VIP) and further… [PMID: 15247290]

    Laboratory literature summary: Diffuse pharmacophoric domains of vasoactive intestinal peptide (VIP) and further insights into the interaction of VIP with the…. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  265. Todorovic V et al. (1996). Colonic vasoactive intestinal polypeptide (VIP) in ulcerative colitis–a… [PMID: 8799381]

    Laboratory literature summary: Colonic vasoactive intestinal polypeptide (VIP) in ulcerative colitis–a radioimmunoassay and immunohistochemical study. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  266. Rostene WH et al. (1983). Modulation by vasoactive intestinal peptide (VIP) of serotonin receptors in membranes… [PMID: 6655494]

    Laboratory literature summary: Modulation by vasoactive intestinal peptide (VIP) of serotonin receptors in membranes from rat hippocampus. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  267. Lundberg JM et al. (1981). Complementary role of vasoactive intestinal polypeptide (VIP) and acetylcholine for… [PMID: 7345898]

    Laboratory literature summary: Complementary role of vasoactive intestinal polypeptide (VIP) and acetylcholine for cat submandibular gland blood flow and secretion. I.…. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  268. Tanaka Y et al. (1995). Precise localization of VIP-, NPY-, and TH-immunoreactivities of cat laryngeal glands [PMID: 7697374]

    Laboratory literature summary: Precise localization of VIP-, NPY-, and TH-immunoreactivities of cat laryngeal glands. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  269. Taton G et al. (1981). Characterization of the VIP- and secretin-stimulated adenylate cyclase system from… [PMID: 6126856]

    Laboratory literature summary: Characterization of the VIP- and secretin-stimulated adenylate cyclase system from research subjects lung. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  270. Sena M et al. (1994). High conservation of upstream regulatory sequences on the research subjects and mouse… [PMID: 7894056]

    Laboratory literature summary: High conservation of upstream regulatory sequences on the research subjects and mouse vasoactive intestinal peptide (VIP) genes. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  271. Muller JM et al. (1989). Functional vasoactive intestinal polypeptide (VIP) receptors in research subjects… [PMID: 2537287]

    Laboratory literature summary: Functional vasoactive intestinal polypeptide (VIP) receptors in research subjects neuroblastoma subclones that contain VIP precursor…. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  272. Wang SC et al. (1985). Purification of dog VIP from a single animal [PMID: 4033346]

    Laboratory literature summary: Purification of dog VIP from a single animal. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  273. Ottesen B et al. (1986). Effect of vasoactive intestinal polypeptide (VIP) on steroidogenesis in research subjects [PMID: 3562902]

    Laboratory literature summary: Effect of vasoactive intestinal polypeptide (VIP) on steroidogenesis in research subjects. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  274. Ahrén B (1984). Influence of VIP on thyroid hormone secretion [PMID: 6473158]

    Laboratory literature summary: Influence of VIP on thyroid hormone secretion. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  275. Andersson M et al. (1991). The preparation of biotinyl-epsilon-aminocaproylated forms of the vasoactive… [PMID: 1851109]

    Laboratory literature summary: The preparation of biotinyl-epsilon-aminocaproylated forms of the vasoactive intestinal polypeptide (VIP) as probes for the VIP receptor. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  276. Ottavi A et al. (1998). An improved method to obtain a single recombinant vasoactive intestinal peptide (VIP)… [PMID: 9672747]

    Laboratory literature summary: An improved method to obtain a single recombinant vasoactive intestinal peptide (VIP) analog. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  277. Leboulenger F et al. (1983). Co-localization of vasoactive intestinal peptide (VIP) and enkephalins in chromaffin… [PMID: 6131369]

    Laboratory literature summary: Co-localization of vasoactive intestinal peptide (VIP) and enkephalins in chromaffin cells of the adrenal gland of amphibia. Stimulation…. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  278. Mikkelsen JD (1989). Immunohistochemical localization of vasoactive intestinal peptide (VIP) in the… [PMID: 2924334]

    Laboratory literature summary: Immunohistochemical localization of vasoactive intestinal peptide (VIP) in the circumventricular organs of the rat. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  279. Sims KB et al. (1980). Vasoactive intestinal polypeptide (VIP) in mouse and rat brain: an immunocytochemical… [PMID: 6986955]

    Laboratory literature summary: Vasoactive intestinal polypeptide (VIP) in mouse and rat brain: an immunocytochemical study. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  280. Said SI (1994). VIP and messenger plasticity [PMID: 7526504]

    Laboratory literature summary: VIP and messenger plasticity. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  281. Fernandez-Moreno MD et al. (1987). Ileal vasoactive intestinal peptide (VIP) levels and VIP receptor/effector system in… [PMID: 2823853]

    Laboratory literature summary: Ileal vasoactive intestinal peptide (VIP) levels and VIP receptor/effector system in ileal epithelial cells after colectomy in the rat. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  282. Wiik P et al. (1988). Receptors for vasoactive intestinal peptide (VIP) on research subjects mononuclear… [PMID: 2834700]

    Laboratory literature summary: Receptors for vasoactive intestinal peptide (VIP) on research subjects mononuclear leucocytes are upregulated during prolonged strain…. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  283. Mazzocchi G et al. (1994). Stimulatory effect of vasoactive intestinal peptide (VIP) on the secretory activity of… [PMID: 8180111]

    Laboratory literature summary: Stimulatory effect of vasoactive intestinal peptide (VIP) on the secretory activity of dispersed rat adrenocortical cells. Evidence for…. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  284. Ichinose M et al. (1994). Inhibitory effect of vasoactive intestinal peptide (VIP) on phagocytosis in mouse… [PMID: 7536335]

    Laboratory literature summary: Inhibitory effect of vasoactive intestinal peptide (VIP) on phagocytosis in mouse peritoneal macrophages. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  285. Wharton J et al. (1980). Enkephalin-, VIP- and substance P-like immunoreactivity in the carotid body [PMID: 6153760]

    Laboratory literature summary: Enkephalin-, VIP- and substance P-like immunoreactivity in the carotid body. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  286. Leys K et al. (1986). Autoradiographic localisation of VIP receptors in research subjects lung [PMID: 3009219]

    Laboratory literature summary: Autoradiographic localisation of VIP receptors in research subjects lung. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  287. Mao YK et al. (1991). Distribution of vasoactive intestinal polypeptide (VIP) binding in circular muscle and… [PMID: 1653848]

    Laboratory literature summary: Distribution of vasoactive intestinal polypeptide (VIP) binding in circular muscle and characterization of VIP binding in canine small…. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  288. Hansen V et al. (1988). Effects of VIP and PHM in research subjects intracervical arteries [PMID: 3250182]

    Laboratory literature summary: Effects of VIP and PHM in research subjects intracervical arteries. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  289. Vaisrub S (1975). Editorial: VIP and WDHA [PMID: 171461]

    Laboratory literature summary: Editorial: VIP and WDHA. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  290. Houtz J et al. (2014). VIP pipes up: neuronal signals direct tubulogenesis [PMID: 25158849]

    Laboratory literature summary: VIP pipes up: neuronal signals direct tubulogenesis. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  291. Lundberg JM et al. (1981). Complementary role of vasoactive intestinal polypeptide (VIP) and acetylcholine for… [PMID: 7345899]

    Laboratory literature summary: Complementary role of vasoactive intestinal polypeptide (VIP) and acetylcholine for cat submandibular gland blood flow and secretion.…. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  292. Day R et al. (1983). Asbestos-related increase in pulmonary levels of vasoactive intestinal peptide (VIP) [PMID: 6196589]

    Laboratory literature summary: Asbestos-related increase in pulmonary levels of vasoactive intestinal peptide (VIP). Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  293. Yamaguchi K et al. (1995). [Vasoactive intestinal polypeptide (VIP)] [PMID: 8753319]

    Laboratory literature summary: [Vasoactive intestinal polypeptide (VIP)]. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  294. Ottesen B et al. (1987). Vasoactive intestinal polypeptide (VIP) provokes vaginal lubrication in normal… [PMID: 3432128]

    Laboratory literature summary: Vasoactive intestinal polypeptide (VIP) provokes vaginal lubrication in normal research subjects. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  295. Bolin DR et al. (1993). Structure-activity studies of vasoactive intestinal peptide (VIP): cyclic disulfide… [PMID: 8384606]

    Laboratory literature summary: Structure-activity studies of vasoactive intestinal peptide (VIP): cyclic disulfide analogs. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  296. Zhang M et al. (2000). Vasoactive intestinal peptide (VIP) exacerbates endotoxin-induced uveitis (EIU) in mice [PMID: 11262614]

    Laboratory literature summary: Vasoactive intestinal peptide (VIP) exacerbates endotoxin-induced uveitis (EIU) in mice. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  297. Laburthe M et al. (1977). Vasoactive intestinal peptide (VIP): variation of the jejuno-ileal content in the… [PMID: 576532]

    Laboratory literature summary: Vasoactive intestinal peptide (VIP): variation of the jejuno-ileal content in the developing rat as measured by radioreceptorassay. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  298. Nguyen TD (1988). Peptide T from research subjects immunodeficiency virus envelope does not interact… [PMID: 2836827]

    Laboratory literature summary: Peptide T from research subjects immunodeficiency virus envelope does not interact with hepatic, intestinal and colonic vasoactive…. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  299. Woltering EA et al. (1986). The response of a non-functional VIP- and somatostatin-containing oncology research… [PMID: 2876496]

    Laboratory literature summary: The response of a non-functional VIP- and somatostatin-containing oncology research models to tolbutamide in vitro. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  300. Woie L et al. (1986). Increase in plasma vasoactive intestinal polypeptide (VIP) in muscular exercise in… [PMID: 3721187]

    Laboratory literature summary: Increase in plasma vasoactive intestinal polypeptide (VIP) in muscular exercise in research subjects. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  301. Takashima A et al. (1993). Vasoactive intestinal peptide (VIP) causes memory impairment in passive avoidance… [PMID: 8284258]

    Laboratory literature summary: Vasoactive intestinal peptide (VIP) causes memory impairment in passive avoidance responding of the rat. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  302. Ashur-Fabian O et al. (1999). SNV, a lipophilic superactive VIP analog, acts through cGMP to promote neuronal survival [PMID: 10465516]

    Laboratory literature summary: SNV, a lipophilic superactive VIP analog, acts through cGMP to promote neuronal survival. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  303. Gall C et al. (1986). Distribution of VIP- and NPY-like immunoreactivities in rat main olfactory bulb [PMID: 2424562]

    Laboratory literature summary: Distribution of VIP- and NPY-like immunoreactivities in rat main olfactory bulb. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  304. Crimi N et al. (1988). Effect of vasoactive intestinal peptide (VIP) on propranolol-induced bronchoconstriction [PMID: 2971708]

    Laboratory literature summary: Effect of vasoactive intestinal peptide (VIP) on propranolol-induced bronchoconstriction. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  305. Brook CW et al. (1988). Hepatic metabolism of vasoactive intestinal polypeptide (VIP) in the rat [PMID: 3368582]

    Laboratory literature summary: Hepatic metabolism of vasoactive intestinal polypeptide (VIP) in the rat. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  306. Mandel KG et al. (1986). Ba2+ inhibition of VIP- and A23187-stimulated Cl- secretion by T84 cell monolayers [PMID: 2420200]

    Laboratory literature summary: Ba2+ inhibition of VIP- and A23187-stimulated Cl- secretion by T84 cell monolayers. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  307. Brenneman DE et al. (1985). Neurotrophic action of VIP on spinal cord cultures [PMID: 4080617]

    Laboratory literature summary: Neurotrophic action of VIP on spinal cord cultures. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  308. Grider JR et al. (1992). Stimulation of nitric oxide from muscle cells by VIP: prejunctional enhancement of VIP… [PMID: 1566853]

    Laboratory literature summary: Stimulation of nitric oxide from muscle cells by VIP: prejunctional enhancement of VIP release. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  309. Jansson R et al. (1978). Effects of intravenous vasoactive intestinal peptide (VIP) on gallbladder function in… [PMID: 401095]

    Laboratory literature summary: Effects of intravenous vasoactive intestinal peptide (VIP) on gallbladder function in the cat. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  310. Drucker-Colín R et al. (1984). Is vasoactive intestinal polypeptide (VIP) a sleep factor? [PMID: 6494029]

    Laboratory literature summary: Is vasoactive intestinal polypeptide (VIP) a sleep factor?. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  311. Carmena MJ et al. (1987). Effect of gastroduodenostomy on intestinal vasoactive intestinal peptide (VIP) levels,… [PMID: 2440464]

    Laboratory literature summary: Effect of gastroduodenostomy on intestinal vasoactive intestinal peptide (VIP) levels, and VIP binding and VIP stimulation of cyclic AMP…. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  312. Quik M et al. (1978). Effect of vasoactive intestinal peptide (VIP) and other peptides on cAMP accumulation… [PMID: 83146]

    Laboratory literature summary: Effect of vasoactive intestinal peptide (VIP) and other peptides on cAMP accumulation in rat brain. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  313. Yaksh TL et al. (1987). Cortical vasodilatation produced by vasoactive intestinal polypeptide (VIP) and by… [PMID: 3108270]

    Laboratory literature summary: Cortical vasodilatation produced by vasoactive intestinal polypeptide (VIP) and by physiological stimuli in the cat. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  314. Lundberg JM et al. (1979). Substance P-, VIP-, and enkephalin-like immunoreactivity in the research subjects… [PMID: 378753]

    Laboratory literature summary: Substance P-, VIP-, and enkephalin-like immunoreactivity in the research subjects vagus nerve. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  315. Ohta T et al. (1991). Effects of vasoactive intestinal peptide (VIP) on contractile responses of smooth… [PMID: 1364828]

    Laboratory literature summary: Effects of vasoactive intestinal peptide (VIP) on contractile responses of smooth muscle in rat stomach. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  316. Pelletier G et al. (1981). Electron immunocytochemistry in vasoactive intestinal peptide (VIP) in the rat brain [PMID: 7013904]

    Laboratory literature summary: Electron immunocytochemistry in vasoactive intestinal peptide (VIP) in the rat brain. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  317. Gafvelin G (1990). Isolation and primary structure of VIP from sheep brain [PMID: 2235680]

    Laboratory literature summary: Isolation and primary structure of VIP from sheep brain. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  318. Falsetti L et al. (1988). Vasoactive intestinal polypeptide (VIP) selectively stimulates prolactin release in… [PMID: 3140588]

    Laboratory literature summary: Vasoactive intestinal polypeptide (VIP) selectively stimulates prolactin release in healthy research subjects. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  319. Csillag A et al. (1993). Matching localization of vasoactive intestinal polypeptide (VIP) and VIP-receptor at… [PMID: 8393920]

    Laboratory literature summary: Matching localization of vasoactive intestinal polypeptide (VIP) and VIP-receptor at pre- and postsynaptic sites in the mouse visual cortex. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  320. Morris JL et al. (1989). Porcine VIP is more potent than guinea pig VIP in relaxing the guinea pig uterine artery [PMID: 2587428]

    Laboratory literature summary: Porcine VIP is more potent than guinea pig VIP in relaxing the guinea pig uterine artery. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  321. Leboulenger F et al. (1984). Action of vasoactive intestinal peptide (VIP) on amphibian adrenocortical function, in… [PMID: 6473157]

    Laboratory literature summary: Action of vasoactive intestinal peptide (VIP) on amphibian adrenocortical function, in vitro. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  322. Watanabe S (2005). [Vasoactive intestinal polypeptide (VIP)] [PMID: 16149562]

    Laboratory literature summary: [Vasoactive intestinal polypeptide (VIP)]. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  323. Woodward RM et al. (1987). Membrane currents elicited by porcine vasoactive intestinal peptide (VIP) in… [PMID: 2447588]

    Laboratory literature summary: Membrane currents elicited by porcine vasoactive intestinal peptide (VIP) in follicle-enclosed Xenopus oocytes. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  324. Ahrén B et al. (1981). Effects of vasoactive intestinal polypeptide (VIP), secretin and gastrin on insulin… [PMID: 7009286]

    Laboratory literature summary: Effects of vasoactive intestinal polypeptide (VIP), secretin and gastrin on insulin secretion in the mouse. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  325. Yang S (1991). [Vasoactive intestinal peptide (VIP) concentration in ischemic rat brain microvessels] [PMID: 1831732]

    Laboratory literature summary: [Vasoactive intestinal peptide (VIP) concentration in ischemic rat brain microvessels]. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  326. Gozes I et al. (1998). Protection against developmental deficiencies by a lipophilic VIP analogue [PMID: 9566607]

    Laboratory literature summary: Protection against developmental deficiencies by a lipophilic VIP analogue. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  327. Nagata S et al. (1992). RDC1 may not be VIP receptor [PMID: 1315461]

    Laboratory literature summary: RDC1 may not be VIP receptor. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  328. Hellstrand P et al. (1985). Role of vasoactive intestinal polypeptide (VIP) in the neurogenic vasodilatation of… [PMID: 3911302]

    Laboratory literature summary: Role of vasoactive intestinal polypeptide (VIP) in the neurogenic vasodilatation of the portal vein in the rabbit. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  329. Hamidi SA et al. (2006). Clues to VIP function from knockout mice [PMID: 16888146]

    Laboratory literature summary: Clues to VIP function from knockout mice. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  330. Lundberg JM et al. (1981). Characteristics of the axonal transport of vasoactive intestinal polypeptide (VIP) in… [PMID: 7315423]

    Laboratory literature summary: Characteristics of the axonal transport of vasoactive intestinal polypeptide (VIP) in nerves of the cat. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  331. Moore TC et al. (1988). Depression of lymphocyte traffic in sheep by vasoactive intestinal peptide (VIP) [PMID: 3410493]

    Laboratory literature summary: Depression of lymphocyte traffic in sheep by vasoactive intestinal peptide (VIP). Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  332. Samejima M et al. (1993). Identification of vasoactive intestinal polypeptide (VIP) binding protein in bovine… [PMID: 8513286]

    Laboratory literature summary: Identification of vasoactive intestinal polypeptide (VIP) binding protein in bovine pineal gland. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  333. Larsen JJ et al. (1981). Vasoactive intestinal polypeptide (VIP) in the research models genitourinary tract:… [PMID: 7298295]

    Laboratory literature summary: Vasoactive intestinal polypeptide (VIP) in the research models genitourinary tract: concentration and motor effect. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  334. Author et al. (1975). Editorial: VIP and watery diarrhoea [PMID: 1174913]

    Laboratory literature summary: Editorial: VIP and watery diarrhoea. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  335. Willis EA et al. (1983). Vasoactive intestinal polypeptide (VIP) as a putative neurotransmitter in penile erection [PMID: 6410140]

    Laboratory literature summary: Vasoactive intestinal polypeptide (VIP) as a putative neurotransmitter in penile erection. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  336. Dalcik H et al. (1993). Median eminence-afferent vasoactive intestinal peptide (VIP) neurons in the… [PMID: 8284257]

    Laboratory literature summary: Median eminence-afferent vasoactive intestinal peptide (VIP) neurons in the hypothalamus: localization by simultaneous tract tracing and…. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  337. Kataoka K (1978). [Recent findings on neural VIP] [PMID: 416249]

    Laboratory literature summary: [Recent findings on neural VIP]. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  338. Author et al. (1975). Letter: Pancreatic cholera and vip [PMID: 1160944]

    Laboratory literature summary: Letter: Pancreatic cholera and vip. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  339. Iwanaga T (2002). [Vasoactive intestinal polypeptide (VIP)] [PMID: 12166175]

    Laboratory literature summary: [Vasoactive intestinal polypeptide (VIP)]. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  340. Watanabe S (1999). [Vasoactive intestinal polypeptide (VIP)] [PMID: 10778131]

    Laboratory literature summary: [Vasoactive intestinal polypeptide (VIP)]. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  341. Lissbrant E et al. (1997). Effects of vasoactive intestinal peptide (VIP) on the testicular vasculature of the rat [PMID: 9568528]

    Laboratory literature summary: Effects of vasoactive intestinal peptide (VIP) on the testicular vasculature of the rat. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  342. Seifert P et al. (1999). Vasoactive intestinal polypeptide (VIP) innervation of the research subjects eyelid glands [PMID: 10375432]

    Laboratory literature summary: Vasoactive intestinal polypeptide (VIP) innervation of the research subjects eyelid glands. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  343. Uddman R et al. (1978). Peptidergic (VIP) innervation of the esophagus [PMID: 401096]

    Laboratory literature summary: Peptidergic (VIP) innervation of the esophagus. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  344. Fernández-Moreno MD et al. (1989). The effects of experimental uremia in rats on duodenal VIP levels and the interaction… [PMID: 2548635]

    Laboratory literature summary: The effects of experimental uremia in rats on duodenal VIP levels and the interaction of VIP with duodenal epithelial cells. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  345. Miyata A et al. (2010). The 9th International Symposium on VIP, PACAP, and Related Peptides [PMID: 20535644]

    Laboratory literature summary: The 9th International Symposium on VIP, PACAP, and Related Peptides. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  346. Markos F et al. (2001). The potentiation of sinus arrhythmia by vasoactive intestinal polypeptide (VIP) in the… [PMID: 12030808]

    Laboratory literature summary: The potentiation of sinus arrhythmia by vasoactive intestinal polypeptide (VIP) in the anaesthetized dog. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  347. Ahrén B et al. (1982). Interaction of vasoactive intestinal peptide (VIP) with cholinergic stimulation of… [PMID: 7042382]

    Laboratory literature summary: Interaction of vasoactive intestinal peptide (VIP) with cholinergic stimulation of glucagon secretion. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  348. Karlsson JA et al. (1984). Neither vasoactive intestinal peptide (VIP) nor purine derivatives may mediate… [PMID: 6098141]

    Laboratory literature summary: Neither vasoactive intestinal peptide (VIP) nor purine derivatives may mediate non-adrenergic tracheal inhibition. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  349. Bozou JC et al. (1987). Phorbol ester induces loss of VIP stimulation of adenylate cyclase and VIP-binding… [PMID: 3026847]

    Laboratory literature summary: Phorbol ester induces loss of VIP stimulation of adenylate cyclase and VIP-binding sites in HT29 cells. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  350. Wasowicz K et al. (2001). Influence of active immunization against GnRH on VIP- and NPY-positive innervation of… [PMID: 11534784]

    Laboratory literature summary: Influence of active immunization against GnRH on VIP- and NPY-positive innervation of the porcine testis. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  351. Cormio L et al. (2005). Vasoactive intestinal polypeptide (VIP) is not an androgen-dependent neuromediator of… [PMID: 15526009]

    Laboratory literature summary: Vasoactive intestinal polypeptide (VIP) is not an androgen-dependent neuromediator of penile erection. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  352. Ito Y et al. (1990). Modulation of cholinergic neurotransmission by VIP, VIP-antiserum and VIP-antagonists… [PMID: 1964363]

    Laboratory literature summary: Modulation of cholinergic neurotransmission by VIP, VIP-antiserum and VIP-antagonists in dog and cat trachea: VIP plays a role of…. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  353. Ottesen B et al. (1986). Release of vasoactive intestinal polypeptide (VIP) in breast-feeding research subjects [PMID: 3770283]

    Laboratory literature summary: Release of vasoactive intestinal polypeptide (VIP) in breast-feeding research subjects. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  354. Gomariz RP et al. (1992). Occurrence of vasoactive intestinal peptide (VIP) in lymphoid organs from rat and mouse [PMID: 1605471]

    Laboratory literature summary: Occurrence of vasoactive intestinal peptide (VIP) in lymphoid organs from rat and mouse. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  355. Edvinsson L et al. (1984). Distribution and dilatory effect of vasoactive intestinal polypeptide (VIP) in… [PMID: 6382196]

    Laboratory literature summary: Distribution and dilatory effect of vasoactive intestinal polypeptide (VIP) in research subjects cerebral arteries. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  356. Kniaz D et al. (1991). High-affinity binding sites for VIP in renal cortical membranes: possible role of VIP… [PMID: 1848330]

    Laboratory literature summary: High-affinity binding sites for VIP in renal cortical membranes: possible role of VIP in renal transport. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  357. Kameda Y (1989). Distribution of CGRP-, somatostatin-, galanin-, VIP-, and substance P-immunoreactive… [PMID: 2477154]

    Laboratory literature summary: Distribution of CGRP-, somatostatin-, galanin-, VIP-, and substance P-immunoreactive nerve fibers in the chicken carotid body. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  358. Bodanszky M et al. (1977). Synthesis and pharmacological properties of the N-terminal decapeptide of the… [PMID: 915906]

    Laboratory literature summary: Synthesis and pharmacological properties of the N-terminal decapeptide of the vasoactive intestinal peptide (VIP). Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  359. Galbo H et al. (1979). Fasting and prolonged exercise increase vasoactive intestinal polypeptide (VIP) in plasma [PMID: 443066]

    Laboratory literature summary: Fasting and prolonged exercise increase vasoactive intestinal polypeptide (VIP) in plasma. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  360. Longshore MA et al. (1981). Stimulation of retinal adenylate cyclase by vasoactive intestinal peptide (VIP) [PMID: 7262187]

    Laboratory literature summary: Stimulation of retinal adenylate cyclase by vasoactive intestinal peptide (VIP). Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  361. Beyer C et al. (1991). Vasoactive intestinal polypeptide (VIP) potentiates the behavioral effect of substance… [PMID: 1723799]

    Laboratory literature summary: Vasoactive intestinal polypeptide (VIP) potentiates the behavioral effect of substance P intrathecal administration. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  362. Onoue S et al. (2004). Structure-activity relationship of synthetic truncated analogues of vasoactive… [PMID: 14729396]

    Laboratory literature summary: Structure-activity relationship of synthetic truncated analogues of vasoactive intestinal peptide (VIP): an enhancement in the activity…. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  363. Mack D et al. (1997). Vasoactive intestinal polypeptide (VIP) and neuropeptide tyrosine (NPY) in prostate… [PMID: 9135509]

    Laboratory literature summary: Vasoactive intestinal polypeptide (VIP) and neuropeptide tyrosine (NPY) in prostate carcinoma. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  364. Fahrenkrug J et al. (1978). Radioimmunoassay of vasoactive intestinal polypeptide (VIP) in plasma [PMID: 717170]

    Laboratory literature summary: Radioimmunoassay of vasoactive intestinal polypeptide (VIP) in plasma. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  365. Hajós F et al. (1990). Vasoactive intestinal polypeptide (VIP) containing cells in the developing rat… [PMID: 2240594]

    Laboratory literature summary: Vasoactive intestinal polypeptide (VIP) containing cells in the developing rat occipital hemisphere. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  366. Fahrenkrug J et al. (1977). Vasoactive intestinal polypeptide (VIP) in research subjects cerebrospinal fluid [PMID: 851866]

    Laboratory literature summary: Vasoactive intestinal polypeptide (VIP) in research subjects cerebrospinal fluid. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  367. Sagar SM (1987). Vasoactive intestinal polypeptide (VIP) immunohistochemistry in the rabbit retina [PMID: 3319043]

    Laboratory literature summary: Vasoactive intestinal polypeptide (VIP) immunohistochemistry in the rabbit retina. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  368. Morris JL et al. (1989). Analogues of vasoactive intestinal peptide (VIP) contract the guinea-pig uterine… [PMID: 2542061]

    Laboratory literature summary: Analogues of vasoactive intestinal peptide (VIP) contract the guinea-pig uterine artery but do not antagonize VIP-induced relaxations. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  369. Lundberg JM et al. (1979). Peptides in the cat carotid body (glomus caroticum): VIP-, enkephalin-, and substance… [PMID: 94238]

    Laboratory literature summary: Peptides in the cat carotid body (glomus caroticum): VIP-, enkephalin-, and substance P-like immunoreactivity. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  370. el Battari A et al. (1985). Modification of HT 29 cell response to the vasoactive intestinal peptide (VIP) by… [PMID: 3006797]

    Laboratory literature summary: Modification of HT 29 cell response to the vasoactive intestinal peptide (VIP) by membrane fluidization. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  371. Hill JM et al. (1994). Blockade of VIP during neonatal development induces neuronal damage and increases VIP… [PMID: 7832475]

    Laboratory literature summary: Blockade of VIP during neonatal development induces neuronal damage and increases VIP and VIP receptors in brain. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  372. Kawatani M et al. (1985). Selective facilitatory effect of vasoactive intestinal polypeptide (VIP) on muscarinic… [PMID: 3891019]

    Laboratory literature summary: Selective facilitatory effect of vasoactive intestinal polypeptide (VIP) on muscarinic firing in vesical ganglia of the cat. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  373. Fahrenkrug J et al. (1979). Verner-Morrison syndrome and vasoactive intestinal polypeptide (VIP) [PMID: 225790]

    Laboratory literature summary: Verner-Morrison syndrome and vasoactive intestinal polypeptide (VIP). Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  374. Fahrenkrug J et al. (1983). Multiplicity of receptors for vasoactive intestinal polypeptide (VIP): differential… [PMID: 6312430]

    Laboratory literature summary: Multiplicity of receptors for vasoactive intestinal polypeptide (VIP): differential effects of apamin on binding in brain, uterus and liver. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  375. King SC et al. (1989). Autoradiographic localization of binding sites for galanin and VIP in small intestine [PMID: 2474152]

    Laboratory literature summary: Autoradiographic localization of binding sites for galanin and VIP in small intestine. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  376. Hossdorf T et al. (1982). Radioimmunoassay for vasoactive intestinal polypeptide (VIP) in plasma before and… [PMID: 7129338]

    Laboratory literature summary: Radioimmunoassay for vasoactive intestinal polypeptide (VIP) in plasma before and during endoscopic examinations. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  377. Pincus DW et al. (1994). Trophic mechanisms regulate mitotic neuronal precursors: role of vasoactive intestinal… [PMID: 7850470]

    Laboratory literature summary: Trophic mechanisms regulate mitotic neuronal precursors: role of vasoactive intestinal peptide (VIP). Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  378. Yamaguchi Y et al. (1994). Effects of vasoactive intestinal peptide (VIP) on scopolamine-induced amnesia in the rat [PMID: 8208360]

    Laboratory literature summary: Effects of vasoactive intestinal peptide (VIP) on scopolamine-induced amnesia in the rat. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  379. Ngezahayo A et al. (1994). Regulation of gap junctional coupling in isolated pancreatic acinar cell pairs by… [PMID: 7520502]

    Laboratory literature summary: Regulation of gap junctional coupling in isolated pancreatic acinar cell pairs by cholecystokinin-octapeptide, vasoactive intestinal…. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  380. Carlquist M et al. (1979). Isolation and characterization of bovine vasoactive intestinal peptide (VIP) [PMID: 520589]

    Laboratory literature summary: Isolation and characterization of bovine vasoactive intestinal peptide (VIP). Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  381. Makhlouf GM et al. (1978). Effects of synthetic vasoactive intestinal peptide (VIP), secretin and their partial… [PMID: 349569]

    Laboratory literature summary: Effects of synthetic vasoactive intestinal peptide (VIP), secretin and their partial sequences on gastric secretion. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  382. Helm G et al. (1985). Changes in oviductal VIP content induced by sex steroids and inhibitory effect of VIP… [PMID: 4072707]

    Laboratory literature summary: Changes in oviductal VIP content induced by sex steroids and inhibitory effect of VIP on spontaneous oviductal contractility. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  383. Paul S et al. (1986). Solubilization of active receptors for VIP from guinea pig lung [PMID: 3018692]

    Laboratory literature summary: Solubilization of active receptors for VIP from guinea pig lung. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  384. Katayama T (1989). [The effect of vasoactive intestinal polypeptide (VIP) on ocular inflammation in… [PMID: 2546409]

    Laboratory literature summary: [The effect of vasoactive intestinal polypeptide (VIP) on ocular inflammation in rabbit ocular tissue]. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  385. Kato Y et al. (1984). Role of vasoactive intestinal polypeptide (VIP) in regulating the pituitary function… [PMID: 6089138]

    Laboratory literature summary: Role of vasoactive intestinal polypeptide (VIP) in regulating the pituitary function in man. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  386. Sundler F et al. (1977). Neuronal localization of pancreatic polypeptide (PP) and vasoactive intestinal peptide… [PMID: 861774]

    Laboratory literature summary: Neuronal localization of pancreatic polypeptide (PP) and vasoactive intestinal peptide (VIP) immunoreactivity in the earthworm…. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  387. Eiden LE et al. (1983). Primary cultures of bovine chromaffin cells synthesize and secrete vasoactive… [PMID: 6888186]

    Laboratory literature summary: Primary cultures of bovine chromaffin cells synthesize and secrete vasoactive intestinal polypeptide (VIP). Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  388. Schaffalitzky de Muckadell OB et al. (1977). Release of vasoactive intestinal polypeptide (VIP) by electric stimulation of the… [PMID: 830595]

    Laboratory literature summary: Release of vasoactive intestinal polypeptide (VIP) by electric stimulation of the vagal nerves. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  389. Schmidt P et al. (1993). Release of immunoreactive somatostatin, vasoactive intestinal polypeptide (VIP), and… [PMID: 7683399]

    Laboratory literature summary: Release of immunoreactive somatostatin, vasoactive intestinal polypeptide (VIP), and galanin during propulsive complexes in isolated pig…. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  390. Fedele D et al. (1988). Laboratory research record on VIP (Vasoactive Intestinal ) [PMID: 3063932]

    PubMed laboratory record discussing VIP (Vasoactive Intestinal ) in a research context. Review the full methods and limitations on PubMed; research use only.

  391. Fabre C et al. (1993). Glycosylation of VIP receptors: a molecular basis for receptor heterogeneity [PMID: 8392717]

    Laboratory literature summary: Glycosylation of VIP receptors: a molecular basis for receptor heterogeneity. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  392. Pawelzik H et al. (1992). Actions of vasoactive intestinal polypeptide (VIP) on neocortical neurons of the rat… [PMID: 1491801]

    Laboratory literature summary: Actions of vasoactive intestinal polypeptide (VIP) on neocortical neurons of the rat in vitro. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  393. Takeyama M et al. (1989). Immuno-affinity purification of specific antibodies against vasoactive intestinal… [PMID: 2752498]

    Laboratory literature summary: Immuno-affinity purification of specific antibodies against vasoactive intestinal polypeptide (VIP) on VIP (1-10)-linked…. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  394. Charpentier G et al. (1982). VIP test in prolactinomas and in normal subjects [PMID: 7126775]

    Laboratory literature summary: VIP test in prolactinomas and in normal subjects. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  395. Markos F et al. (2006). Vagal postganglionic origin of vasoactive intestinal polypeptide (VIP) mediating the… [PMID: 16896725]

    Laboratory literature summary: Vagal postganglionic origin of vasoactive intestinal polypeptide (VIP) mediating the vagal tachycardia. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  396. Krowicki Z et al. (1983). [Cholecystokinin and vasoactive intestinal polypeptide (VIP) in the central nervous… [PMID: 6138762]

    Laboratory literature summary: [Cholecystokinin and vasoactive intestinal polypeptide (VIP) in the central nervous system]. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  397. Bornstein SR et al. (1996). Cellular communication in the neuro-adrenocortical axis: role of vasoactive intestinal… [PMID: 8969945]

    Laboratory literature summary: Cellular communication in the neuro-adrenocortical axis: role of vasoactive intestinal polypeptide (VIP). Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  398. Thulin L et al. (1984). Circulatory effects of VIP in anesthetized man [PMID: 6473160]

    Laboratory literature summary: Circulatory effects of VIP in anesthetized man. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  399. Naruse S et al. (1992). Vasodilator action of guinea pig vasoactive intestinal polypeptide (VIP): comparison… [PMID: 1289976]

    Laboratory literature summary: Vasodilator action of guinea pig vasoactive intestinal polypeptide (VIP): comparison with common mammalian VIP. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  400. Prost A et al. (1984). Activation of the cAMP-generating system by vasoactive intestinal polypeptide (VIP) in… [PMID: 6085015]

    Laboratory literature summary: Activation of the cAMP-generating system by vasoactive intestinal polypeptide (VIP) in the research subjects laryngeal malignant cell…. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  401. Vandermeers A et al. (1984). Purification of a novel pancreatic secretory factor (PSF) and a novel peptide with… [PMID: 6692928]

    Laboratory literature summary: Purification of a novel pancreatic secretory factor (PSF) and a novel peptide with VIP- and secretin-like properties (helodermin) from…. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  402. Scheibel E et al. (1982). Vasoactive intestinal polypeptide (VIP) in children with neural crest tumours [PMID: 6295059]

    Laboratory literature summary: Vasoactive intestinal polypeptide (VIP) in children with neural crest tumours. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  403. Hirata Y et al. (1982). [Vasoactive intestinal peptide (VIP) and epidermal growth factor (EGF)] [PMID: 6981718]

    Laboratory literature summary: [Vasoactive intestinal peptide (VIP) and epidermal growth factor (EGF)]. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  404. Nicosia S et al. (1983). The role of vasoactive intestinal polypeptide (VIP) as a hypothalamic neurohormone [PMID: 6311891]

    Laboratory literature summary: The role of vasoactive intestinal polypeptide (VIP) as a hypothalamic neurohormone. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  405. Eiden LE et al. (1982). Distribution of vasoactive intestinal polypeptide (VIP) in the rat brain stem nuclei [PMID: 7055688]

    Laboratory literature summary: Distribution of vasoactive intestinal polypeptide (VIP) in the rat brain stem nuclei. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  406. Maletti M et al. (1980). Ontogeny and immunoreactive forms of vasoactive intestinal peptide (VIP) in rat brain [PMID: 7386117]

    Laboratory literature summary: Ontogeny and immunoreactive forms of vasoactive intestinal peptide (VIP) in rat brain. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  407. Shirahase H et al. (1994). Structure-activity relationships for relaxation of smooth muscle by VIP [PMID: 8008642]

    Laboratory literature summary: Structure-activity relationships for relaxation of smooth muscle by VIP. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  408. Altiere RJ et al. (1984). VIP as a bronchodilator [PMID: 6140466]

    Laboratory literature summary: VIP as a bronchodilator. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  409. Uddman R et al. (1980). Vasoactive intestinal peptide (VIP) occurs in nerves of the pineal gland [PMID: 6998720]

    Laboratory literature summary: Vasoactive intestinal peptide (VIP) occurs in nerves of the pineal gland. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  410. Goadsby PJ et al. (1985). Extracranial vasodilation mediated by vasoactive intestinal polypeptide (VIP) [PMID: 2983841]

    Laboratory literature summary: Extracranial vasodilation mediated by vasoactive intestinal polypeptide (VIP). Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  411. Bloom S et al. (1978). Effect of vasoactive intestinal peptide (VIP) and other neuropeptides on cAMP… [PMID: 205298]

    Laboratory literature summary: Effect of vasoactive intestinal peptide (VIP) and other neuropeptides on cAMP accumulation in brain slices [proceedings]. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  412. Poulin P et al. (1986). Autoradiographic localization of binding sites for vasoactive intestinal peptide (VIP)… [PMID: 3756513]

    Laboratory literature summary: Autoradiographic localization of binding sites for vasoactive intestinal peptide (VIP) in bovine cerebral arteries. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  413. Bodanszky M et al. (1974). Synthesis of the vasoactive intestinal peptide (VIP) [PMID: 4854585]

    Laboratory literature summary: Synthesis of the vasoactive intestinal peptide (VIP). Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  414. Ottesen B et al. (1985). Vasoactive intestinal polypeptide (VIP) and peripheral vasodilation [PMID: 3993388]

    Laboratory literature summary: Vasoactive intestinal polypeptide (VIP) and peripheral vasodilation. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  415. Juarranz MG et al. (1992). Somatostatin inhibits VIP- and forskolin-stimulated cyclic AMP accumulation in… [PMID: 1364040]

    Laboratory literature summary: Somatostatin inhibits VIP- and forskolin-stimulated cyclic AMP accumulation in enterocytes from rat jejunum. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  416. Tumilasci OR et al. (1986). Thyroid hormone modulation of VIP's induced salivary secretion in the submaxillary… [PMID: 3700977]

    Laboratory literature summary: Thyroid hormone modulation of VIP's induced salivary secretion in the submaxillary glands of rats. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  417. Rossiter A et al. (1994). Is VIP a key neuropeptide in achalasia? [PMID: 8174904]

    Laboratory literature summary: Is VIP a key neuropeptide in achalasia?. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  418. Fischer J et al. (1989). [The significance of vasoactive intestinal polypeptide (VIP) in analytical assessment… [PMID: 2608648]

    Laboratory literature summary: [The significance of vasoactive intestinal polypeptide (VIP) in analytical assessment of sleep apnea syndrome]. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  419. Hagiwara M et al. (1990). Vasoactive intestinal polypeptide (VIP) stimulates fibrinolytic system in the rat [PMID: 2273652]

    Laboratory literature summary: Vasoactive intestinal polypeptide (VIP) stimulates fibrinolytic system in the rat. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  420. Gu J et al. (1984). Decrease of vasoactive intestinal polypeptide (VIP) in the penises from impotent… [PMID: 6146864]

    Laboratory literature summary: Decrease of vasoactive intestinal polypeptide (VIP) in the penises from impotent research subjects. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  421. Yoshihara S et al. (1989). [Using specific radioimmunoassay for guinea pig VIP (GP VIP), immunoreactive GP VIP… [PMID: 2818211]

    Laboratory literature summary: [Using specific radioimmunoassay for guinea pig VIP (GP VIP), immunoreactive GP VIP levels in respiratory tract tissue of normal and…. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  422. Uddman R et al. (1980). The origin of vasoactive intestinal polypeptide (VIP) nerves in the feline nasal mucosa [PMID: 7405573]

    Laboratory literature summary: The origin of vasoactive intestinal polypeptide (VIP) nerves in the feline nasal mucosa. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  423. Krowicki Z et al. (1983). [Gastrointestinal hormones and related neuropeptides. III. The secretin group:… [PMID: 6387678]

    Laboratory literature summary: [Gastrointestinal hormones and related neuropeptides. III. The secretin group: vasoactive intestinal polypeptide (VIP)]. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  424. Fernández-Moreno MD et al. (1989). Effect of intestinal ischaemia on intestinal VIP levels and VIP interaction with… [PMID: 2573460]

    Laboratory literature summary: Effect of intestinal ischaemia on intestinal VIP levels and VIP interaction with intestinal epithelial cells from rat. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  425. Makhlouf GM (1977). Distinct mechanisms for stimulation of intestinal secretion by vasoactive intestinal… [PMID: 830592]

    Laboratory literature summary: Distinct mechanisms for stimulation of intestinal secretion by vasoactive intestinal peptide (VIP) and glucagon. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  426. Gianotti A et al. (1987). [Changes induced by vasointestinal peptide (VIP) and diltiazem on bronchoreactivity… [PMID: 3508572]

    Laboratory literature summary: [Changes induced by vasointestinal peptide (VIP) and diltiazem on bronchoreactivity specific and aspecific aspects]. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  427. Kachelhoffer J et al. (1979). [Vasoactive intestinal polypeptide (VIP) (author's transl)] [PMID: 499699]

    Laboratory literature summary: [Vasoactive intestinal polypeptide (VIP) (author's transl)]. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  428. Larsson LI (1977). Ultrastructural localization of a new neuronal peptide (VIP) [PMID: 336585]

    Laboratory literature summary: Ultrastructural localization of a new neuronal peptide (VIP). Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  429. Mitchell SJ et al. (1982). The pharmacokinetics of VIP in dog and pig [PMID: 7128757]

    Laboratory literature summary: The pharmacokinetics of VIP in dog and pig. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  430. Wiik P et al. (1985). Binding of vasoactive intestinal polypeptide (VIP) by research subjects blood… [PMID: 2999883]

    Laboratory literature summary: Binding of vasoactive intestinal polypeptide (VIP) by research subjects blood monocytes: demonstration of specific binding sites. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  431. Beyerman HC et al. (1981). Synthesis, biological and immunochemical properties of analogues of secretin and… [PMID: 7300581]

    Laboratory literature summary: Synthesis, biological and immunochemical properties of analogues of secretin and vasoactive intestinal peptide (VIP): the vasectrins. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  432. Miller RJ (1980). Vasoactive intestinal polypeptide (VIP) [PMID: 7266081]

    Laboratory literature summary: Vasoactive intestinal polypeptide (VIP). Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  433. Robberecht P (1978). [Membrane receptors of vasoactive intestinal peptide (VIP): hormone and… [PMID: 84566]

    Laboratory literature summary: [Membrane receptors of vasoactive intestinal peptide (VIP): hormone and neurotransmitter (proceedings)]. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  434. Riederer A et al. (1995). [Current immunohistochemical results of localization of vasoactive intestinal… [PMID: 8672200]

    Laboratory literature summary: [Current immunohistochemical results of localization of vasoactive intestinal polypeptide (VIP) in nasal mucosa of the research subjects]. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  435. Marongiu L et al. (1993). Peptidergic (VIP) nerves in normal research subjects pancreas and in pancreatitis: an… [PMID: 8443423]

    Laboratory literature summary: Peptidergic (VIP) nerves in normal research subjects pancreas and in pancreatitis: an immunohistochemical study. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  436. Laburthe M (1985). [Vasoactive intestinal peptide (VIP): a ubiquitous neuropeptide member of structural… [PMID: 3006796]

    Laboratory literature summary: [Vasoactive intestinal peptide (VIP): a ubiquitous neuropeptide member of structural family of regulatory peptides]. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  437. Watanabe S (2010). [Vasoactive intestinal polypeptide (VIP)] [PMID: 20963892]

    Laboratory literature summary: [Vasoactive intestinal polypeptide (VIP)]. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  438. Yamaguchi K et al. (1980). The pressence of macromolecular vasoactive intestinal polypeptide (VIP) in… [PMID: 7409387]

    Laboratory literature summary: The pressence of macromolecular vasoactive intestinal polypeptide (VIP) in VIP-producing tumors. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  439. Maggi CA et al. (1989). Release of VIP- but not CGRP-like immunoreactivity by capsaicin from the research… [PMID: 2786168]

    Laboratory literature summary: Release of VIP- but not CGRP-like immunoreactivity by capsaicin from the research subjects isolated small intestine. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  440. Author et al. (1982). VIP as biochemical marker for PMNs [PMID: 7061922]

    Laboratory literature summary: VIP as biochemical marker for PMNs. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  441. Vagne M et al. (1976). Effect of secretin, glucagon and VIP on gallbladder contraction [PMID: 955325]

    Laboratory literature summary: Effect of secretin, glucagon and VIP on gallbladder contraction. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  442. Brayden JE et al. (1986). Evidence that vasoactive intestinal polypeptide (VIP) mediates neurogenic vasodilation… [PMID: 3810719]

    Laboratory literature summary: Evidence that vasoactive intestinal polypeptide (VIP) mediates neurogenic vasodilation of feline cerebral arteries. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  443. Kashimoto K et al. (1996). Structure-activity relationship studies of PACAP-27 and VIP analogues [PMID: 8993431]

    Laboratory literature summary: Structure-activity relationship studies of PACAP-27 and VIP analogues. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  444. Sandström R et al. (1981). Vasoactive intestinal peptide (VIP) secreting oncology research models of the pancreas [PMID: 6275768]

    Laboratory literature summary: Vasoactive intestinal peptide (VIP) secreting oncology research models of the pancreas. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  445. McFarlin DR et al. (1995). Sequence of a cDNA encoding chicken vasoactive intestinal peptide (VIP) [PMID: 7890166]

    Laboratory literature summary: Sequence of a cDNA encoding chicken vasoactive intestinal peptide (VIP). Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  446. Emson PC et al. (1978). Vasoactive intestinal polypeptide (VIP): vesicular localization and potassium evoked… [PMID: 630399]

    Laboratory literature summary: Vasoactive intestinal polypeptide (VIP): vesicular localization and potassium evoked release from rat hypothalamus. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  447. Emson PC et al. (1979). Development of vasoactive intestinal polypeptide (VIP) containing neurones in the rat… [PMID: 387178]

    Laboratory literature summary: Development of vasoactive intestinal polypeptide (VIP) containing neurones in the rat brain. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  448. Zeytin FN et al. (1985). Rat hypothalamic GRF elicits its biologic action in GH3 cells by interaction with VIP-… [PMID: 2985067]

    Laboratory literature summary: Rat hypothalamic GRF elicits its biologic action in GH3 cells by interaction with VIP- preferring receptor site(s). Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  449. Author et al. (2006). VIP, PACAP, and related peptides: from gene to research protocol. Proceedings of the… [PMID: 16991209]

    Laboratory literature summary: VIP, PACAP, and related peptides: from gene to research protocol. Proceedings of the 7th International Symposium on VIP, PACAP, and…. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  450. Borghi C et al. (1979). Vasoactive intestinal polypeptide (VIP) stimulates adenylate cyclase in selected areas… [PMID: 763070]

    Laboratory literature summary: Vasoactive intestinal polypeptide (VIP) stimulates adenylate cyclase in selected areas of rat brain. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  451. McGregor GP et al. (1984). Comparative distribution of vasoactive intestinal polypeptide (VIP), substance P and… [PMID: 6202546]

    Laboratory literature summary: Comparative distribution of vasoactive intestinal polypeptide (VIP), substance P and PHI in the enteric sphincters of the cat. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  452. Author et al. (1983). Abstracts of the First International Symposium on Vasoactive Intestinal Peptide (VIP)… [PMID: 6688676]

    Laboratory literature summary: Abstracts of the First International Symposium on Vasoactive Intestinal Peptide (VIP) and Related Peptides. Brussels, Belgium, September…. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  453. Kalfin R et al. (1991). The effect of vasoactive intestinal polypeptide (VIP) on the canine gallbladder motility [PMID: 1687549]

    Laboratory literature summary: The effect of vasoactive intestinal polypeptide (VIP) on the canine gallbladder motility. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  454. Bloom SR et al. (1973). Proceedings: The distribution of vasoactive intestinal peptide (VIP) in the primate… [PMID: 4202273]

    Laboratory literature summary: Proceedings: The distribution of vasoactive intestinal peptide (VIP) in the primate gastrointestinal tract and characterization of VIP…. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  455. Kuroshima A et al. (1986). Absence of vasoactive intestinal peptide (VIP) innervation of adipose tissues [PMID: 3527922]

    Laboratory literature summary: Absence of vasoactive intestinal peptide (VIP) innervation of adipose tissues. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  456. Modlin IM et al. (1978). Plasma vasoactive intestinal polypeptide (VIP) levels and intestinal ischaemia [PMID: 639959]

    Laboratory literature summary: Plasma vasoactive intestinal polypeptide (VIP) levels and intestinal ischaemia. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  457. Messell T et al. (1991). Neuropeptide Y (NPY) and vasoactive intestinal polypeptide (VIP), but not galanin, are… [PMID: 1721082]

    Laboratory literature summary: Neuropeptide Y (NPY) and vasoactive intestinal polypeptide (VIP), but not galanin, are autonomic cotransmitters in the porcine pancreas. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  458. Said SI (1991). Vasoactive intestinal polypeptide (VIP) in lung function and disease [PMID: 1687288]

    Laboratory literature summary: Vasoactive intestinal polypeptide (VIP) in lung function and disease. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  459. Bottino G et al. (1990). [Variations of vasoactive intestinal peptide (VIP) concentration in the lung of… [PMID: 2080314]

    Laboratory literature summary: [Variations of vasoactive intestinal peptide (VIP) concentration in the lung of asthmatic research subjects]. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  460. Emson PC et al. (1979). Vasoactive intestinal polypeptide (VIP): distribution in normal research subjects… [PMID: 158404]

    Laboratory literature summary: Vasoactive intestinal polypeptide (VIP): distribution in normal research subjects brain and in Huntington's disease. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  461. Lundberg JM et al. (1984). Neuropeptides with vascular activity: VIP, PHI, NPY and substance P [PMID: 6085266]

    Laboratory literature summary: Neuropeptides with vascular activity: VIP, PHI, NPY and substance P. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  462. Sjöqvist A et al. (1983). Effect of apamin on release of vasoactive intestinal polypeptide (VIP) from the cat… [PMID: 6139935]

    Laboratory literature summary: Effect of apamin on release of vasoactive intestinal polypeptide (VIP) from the cat intestines. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  463. Ebeid AM et al. (1977). Release of vasoactive intestinal peptide (VIP) by intraluminal osmotic stimuli [PMID: 875384]

    Laboratory literature summary: Release of vasoactive intestinal peptide (VIP) by intraluminal osmotic stimuli. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  464. Bataille D et al. (1981). [Effect of vasoactive intestinal peptide (VIP) on prolactin secretion in man] [PMID: 6786785]

    Laboratory literature summary: [Effect of vasoactive intestinal peptide (VIP) on prolactin secretion in man]. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  465. Larsson LI et al. (1976). Immunohistochemical localization of a vasodilatory polypeptide (VIP) in… [PMID: 953744]

    Laboratory literature summary: Immunohistochemical localization of a vasodilatory polypeptide (VIP) in cerebrovascular nerves. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  466. Triepel J (1982). Vasoactive intestinal polypeptide (VIP) in the medulla oblongata of the guinea pig [PMID: 7041012]

    Laboratory literature summary: Vasoactive intestinal polypeptide (VIP) in the medulla oblongata of the guinea pig. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  467. Said SI (1976). Letter: Cautious interpretation of plasma vip levels [PMID: 1250287]

    Laboratory literature summary: Letter: Cautious interpretation of plasma vip levels. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  468. Dupont C et al. (1978). [Receptors for vasoactic intestinal peptide (VIP) in research subjects colonic… [PMID: 206381]

    Laboratory literature summary: [Receptors for vasoactic intestinal peptide (VIP) in research subjects colonic adenocarcinoma membranes: specific binding and…. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  469. Ohta H et al. (1985). Inhibition by antiserum to vasoactive intestinal polypeptide (VIP) of prolactin… [PMID: 3872804]

    Laboratory literature summary: Inhibition by antiserum to vasoactive intestinal polypeptide (VIP) of prolactin secretion induced by serotonin in the rat. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  470. Zhang RX (1993). [Study on plasma levels of vasoactive intestinal peptide (VIP) in research subjects… [PMID: 8217299]

    Laboratory literature summary: [Study on plasma levels of vasoactive intestinal peptide (VIP) in research subjects with allergic rhinitis]. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  471. Davison JS et al. (1991). Evidence that vasoactive intestinal peptide (VIP) is an inhibitory transmitter in the… [PMID: 1686329]

    Laboratory literature summary: Evidence that vasoactive intestinal peptide (VIP) is an inhibitory transmitter in the ferret gastric corpus. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  472. Ruberg M et al. (1978). Stimulation of prolactin release by vasoactive intestinal peptide (VIP) [PMID: 710507]

    Laboratory literature summary: Stimulation of prolactin release by vasoactive intestinal peptide (VIP). Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  473. Fontaine JL et al. (1977). [Sympathoma and diarrhea caused by hypersecretion of vasoactive intestinal peptide… [PMID: 907439]

    Laboratory literature summary: [Sympathoma and diarrhea caused by hypersecretion of vasoactive intestinal peptide (VIP). Apropos of a further case]. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  474. Devine BL et al. (1978). Cyclical release of vasoactive intestinal polypeptide (VIP) from a pancreatic islet… [PMID: 215990]

    Laboratory literature summary: Cyclical release of vasoactive intestinal polypeptide (VIP) from a pancreatic islet cell apudoma. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  475. Ottaway CA (1995). Interaction of a sulfhydryl analogue of vasoactive intestinal peptide (VIP) with… [PMID: 8525988]

    Laboratory literature summary: Interaction of a sulfhydryl analogue of vasoactive intestinal peptide (VIP) with murine lymphocytes. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  476. Ottesen B et al. (1984). Increased endometrial clearance of 85krypton evoked by VIP in rabbits [PMID: 6147955]

    Laboratory literature summary: Increased endometrial clearance of 85krypton evoked by VIP in rabbits. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  477. Leupold D et al. (1977). [Chronic diarrhea, ganglioneuroma and vasoactive intestinal polypeptide (VIP)] [PMID: 876203]

    Laboratory literature summary: [Chronic diarrhea, ganglioneuroma and vasoactive intestinal polypeptide (VIP)]. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  478. Bundgaard A et al. (1983). Pretreatment of exercise-induced asthma with inhaled vasoactive intestinal peptide (VIP) [PMID: 6578098]

    Laboratory literature summary: Pretreatment of exercise-induced asthma with inhaled vasoactive intestinal peptide (VIP). Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  479. Willis E et al. (1981). Vasoactive intestinal polypeptide (VIP) as a possible neurotransmitter involved in… [PMID: 7348038]

    Laboratory literature summary: Vasoactive intestinal polypeptide (VIP) as a possible neurotransmitter involved in penile erection. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  480. Vertongen P et al. (1998). Autoradiographic visualization of the receptor subclasses for vasoactive intestinal… [PMID: 9928040]

    Laboratory literature summary: Autoradiographic visualization of the receptor subclasses for vasoactive intestinal polypeptide (VIP) in rat brain. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  481. Suzuki Y et al. (1983). Vasodilatory effects of vasoactive intestinal polypeptide (VIP) on isolated rat arteries [PMID: 6889362]

    Laboratory literature summary: Vasodilatory effects of vasoactive intestinal polypeptide (VIP) on isolated rat arteries. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  482. Burhol PG et al. (1985). Diurnal profiles of plasma cholecystokinin (CCK) and vasoactive intestinal polypeptide… [PMID: 4040993]

    Laboratory literature summary: Diurnal profiles of plasma cholecystokinin (CCK) and vasoactive intestinal polypeptide (VIP) in man. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  483. Prieto JC et al. (1980). No effect of starvation on vasoactive intestinal peptide (VIP) receptors in intestinal… [PMID: 6248446]

    Laboratory literature summary: No effect of starvation on vasoactive intestinal peptide (VIP) receptors in intestinal epithelial cells. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  484. Raiteri M et al. (1987). Vasoactive intestinal polypeptide (VIP) potentiates the muscarinic stimulation of… [PMID: 3030770]

    Laboratory literature summary: Vasoactive intestinal polypeptide (VIP) potentiates the muscarinic stimulation of phosphoinositide turnover in rat cerebral cortex. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  485. Sundler F et al. (1979). Cellular localization and ontogeny of immunoreactive vasoactive intestinal polypeptide… [PMID: 421252]

    Laboratory literature summary: Cellular localization and ontogeny of immunoreactive vasoactive intestinal polypeptide (VIP) in the chicken gut. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  486. Christophe J et al. (1984). [Is vasoactive intestinal peptide (VIP) an essential neuropeptide for the heart?] [PMID: 6100236]

    Laboratory literature summary: [Is vasoactive intestinal peptide (VIP) an essential neuropeptide for the heart?]. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  487. Borghi C et al. (1979). Adenylate cyclase of rat pituitary gland: stimulation by vasoactive intestinal… [PMID: 520579]

    Laboratory literature summary: Adenylate cyclase of rat pituitary gland: stimulation by vasoactive intestinal polypeptide (VIP). Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  488. Lezoche E (1978). Vasoactive intestinal polypeptide (VIP) concentration after small bowel resection [PMID: 640355]

    Laboratory literature summary: Vasoactive intestinal polypeptide (VIP) concentration after small bowel resection. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  489. Piga M et al. (1984). Vasoactive intestinal polypeptide (VIP) plasma levels in chronic renal failure [PMID: 6512602]

    Laboratory literature summary: Vasoactive intestinal polypeptide (VIP) plasma levels in chronic renal failure. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  490. Leonardi R et al. (1981). [The vasoactive intestinal polypeptide (VIP). Its role in the physiology of the… [PMID: 6111769]

    Laboratory literature summary: [The vasoactive intestinal polypeptide (VIP). Its role in the physiology of the digestive system]. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  491. Warnick JE et al. (1986). Resistance of afterhyperpolarizations in hippocampal pyramidal cells to prostaglandins… [PMID: 3022195]

    Laboratory literature summary: Resistance of afterhyperpolarizations in hippocampal pyramidal cells to prostaglandins and vasoactive intestinal polypeptide (VIP). Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  492. Fahrenkrug J et al. (1978). Distribution of vasoactive intestinal polypeptide (VIP) in the porcine central nervous… [PMID: 551125]

    Laboratory literature summary: Distribution of vasoactive intestinal polypeptide (VIP) in the porcine central nervous system. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  493. Ottesen B et al. (1979). Vasoactive intestinal polypeptide (VIP) inhibits oxytocin induced activity of the… [PMID: 539459]

    Laboratory literature summary: Vasoactive intestinal polypeptide (VIP) inhibits oxytocin induced activity of the rabbit myometrium. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  494. Fujikado T et al. (1987). [Influence of vasoactive intestinal polypeptide (VIP) upon the chick ERG during… [PMID: 3448912]

    Laboratory literature summary: [Influence of vasoactive intestinal polypeptide (VIP) upon the chick ERG during development]. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  495. Denac M et al. (1987). Relaxation of ruminal smooth muscle by vasoactive intestinal polypeptide (VIP) [PMID: 3113113]

    Laboratory literature summary: Relaxation of ruminal smooth muscle by vasoactive intestinal polypeptide (VIP). Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  496. Larsson LI et al. (1978). Innervation of the pancreas by vasoactive intestinal polypeptide (VIP) immunoreactive… [PMID: 642723]

    Laboratory literature summary: Innervation of the pancreas by vasoactive intestinal polypeptide (VIP) immunoreactive nerves. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  497. Rotsztejn W et al. (1980). [Dexamethasone regulation of the prolactin release induced by vasoactive intestinal… [PMID: 6769606]

    Laboratory literature summary: [Dexamethasone regulation of the prolactin release induced by vasoactive intestinal peptide (VIP)]. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  498. Kato Y (1989). [Regulation of pituitary prolactin secretion by vasoactive intestinal polypeptide… [PMID: 2483167]

    Laboratory literature summary: [Regulation of pituitary prolactin secretion by vasoactive intestinal polypeptide (VIP) and galanin]. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  499. Jaeger E et al. (1996). Structure-activity studies on VIP: IV. The synthetic agonist… [PMID: 8993430]

    Laboratory literature summary: Structure-activity studies on VIP: IV. The synthetic agonist helodermin-fragment-(1-28)-amide is a potent VIP-agonist with prolonged…. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  500. Dodd J et al. (1979). Excitation of CA1 neurones of the rat hippocampus by the octacosapeptide, vasoactive… [PMID: 454920]

    Laboratory literature summary: Excitation of CA1 neurones of the rat hippocampus by the octacosapeptide, vasoactive intestinal polypeptide (VIP) [proceedings]. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  501. Feingold KR et al. (2000). Vasoactive Intestinal Peptide-Secreting oncology research models (VIPoma) [PMID: 25905195]

    Laboratory literature summary: Vasoactive Intestinal Peptide-Secreting oncology research models (VIPoma). Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  502. Said SI (1986). Vasoactive intestinal peptide [PMID: 2872248]

    Laboratory literature summary: Vasoactive intestinal peptide. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  503. Una Cidon E (2022). Vasoactive intestinal peptide secreting oncology research models: An overview [PMID: 35582098]

    Laboratory literature summary: Vasoactive intestinal peptide secreting oncology research models: An overview. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  504. Siddappa PK et al. (2019). Vasoactive Intestinal Peptide-Secreting Tumors: A Review [PMID: 31609932]

    Laboratory literature summary: Vasoactive Intestinal Peptide-Secreting Tumors: A Review. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  505. Henning RJ et al. (2001). Vasoactive intestinal peptide: cardiovascular effects [PMID: 11121793]

    Laboratory literature summary: Vasoactive intestinal peptide: cardiovascular effects. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  506. Gonzales J et al. (2024). The Microbiota Conducts the Vasoactive Intestinal Polypeptide Orchestra in the Small… [PMID: 38109941]

    Laboratory literature summary: The Microbiota Conducts the Vasoactive Intestinal Polypeptide Orchestra in the Small Intestine. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  507. Thomas J et al. (2024). Vasoactive Intestinal Polypeptide Secreting MS Neuroblastoma [PMID: 39691933]

    Laboratory literature summary: Vasoactive Intestinal Polypeptide Secreting MS Neuroblastoma. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  508. Said SI (1989). Vasoactive intestinal polypeptide and asthma [PMID: 2710206]

    Laboratory literature summary: Vasoactive intestinal polypeptide and asthma. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  509. Zhong HL et al. (2023). The role of vasoactive intestinal peptide in pulmonary diseases [PMID: 37742737]

    Laboratory literature summary: The role of vasoactive intestinal peptide in pulmonary diseases. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  510. Fahrenkrug J (1980). Vasoactive intestinal polypeptide [PMID: 6107190]

    Laboratory literature summary: Vasoactive intestinal polypeptide. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  511. Jiang W et al. (2016). Role of vasoactive intestinal peptide in osteoarthritis [PMID: 27553659]

    Laboratory literature summary: Role of vasoactive intestinal peptide in osteoarthritis. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  512. Sethi V et al. (2005). Liposomal vasoactive intestinal peptide [PMID: 15721392]

    Laboratory literature summary: Liposomal vasoactive intestinal peptide. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  513. Forssmann WG et al. (1988). Vasoactive intestinal peptide in the heart [PMID: 3291696]

    Laboratory literature summary: Vasoactive intestinal peptide in the heart. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  514. Goff KM et al. (2021). A Role for Vasoactive Intestinal Peptide Interneurons in Neurodevelopmental Disorders [PMID: 33794534]

    Laboratory literature summary: A Role for Vasoactive Intestinal Peptide Interneurons in Neurodevelopmental Disorders. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  515. He Y et al. (2022). Vasoactive intestinal peptide: a potential target for antiviral research protocol [PMID: 35770640]

    Laboratory literature summary: Vasoactive intestinal peptide: a potential target for antiviral research protocol. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  516. Fahrenkrug J et al. (1982). Vasoactive intestinal polypeptide: functional aspects [PMID: 6129023]

    Laboratory literature summary: Vasoactive intestinal polypeptide: functional aspects. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  517. Asano S et al. (2022). Vasoactive intestinal peptide-VIPR2 signaling regulates oncology research models cell… [PMID: 36237322]

    Laboratory literature summary: Vasoactive intestinal peptide-VIPR2 signaling regulates oncology research models cell migration. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  518. Zhang R et al. (2018). Immunomodulatory vasoactive intestinal peptide amphiphile micelles [PMID: 29896593]

    Laboratory literature summary: Immunomodulatory vasoactive intestinal peptide amphiphile micelles. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  519. Schwerdtfeger LA et al. (2020). Vasoactive intestinal peptide regulates ileal goblet cell production in mice [PMID: 32026594]

    Laboratory literature summary: Vasoactive intestinal peptide regulates ileal goblet cell production in mice. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  520. Groneberg DA et al. (2001). Vasoactive intestinal polypeptide as mediator of asthma [PMID: 11603952]

    Laboratory literature summary: Vasoactive intestinal polypeptide as mediator of asthma. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  521. Satitpitakul V et al. (2018). Vasoactive Intestinal Peptide Promotes Corneal Allograft Survival [PMID: 30097165]

    Laboratory literature summary: Vasoactive Intestinal Peptide Promotes Corneal Allograft Survival. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  522. Cakmak AI et al. (2017). Vasoactive intestinal peptide, a promising agent for myopia? [PMID: 28251078]

    Laboratory literature summary: Vasoactive intestinal peptide, a promising agent for myopia?. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  523. Shi L et al. (2021). Laboratory research record on VIP (Vasoactive Intestinal ) [PMID: 33999216]

    PubMed laboratory record discussing VIP (Vasoactive Intestinal ) in a research context. Review the full methods and limitations on PubMed; research use only.

  524. Deng G et al. (2017). The effects of vasoactive intestinal peptide in neurodegenerative disorders [PMID: 27786097]

    Laboratory literature summary: The effects of vasoactive intestinal peptide in neurodegenerative disorders. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  525. Porter JP et al. (1988). Vasoactive intestinal peptide and renin secretion [PMID: 3291698]

    Laboratory literature summary: Vasoactive intestinal peptide and renin secretion. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  526. Said SI (1988). Vasoactive intestinal peptide in the lung [PMID: 2898912]

    Laboratory literature summary: Vasoactive intestinal peptide in the lung. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  527. Hill JM (2007). Vasoactive intestinal peptide in neurodevelopmental disorders: investigational potential [PMID: 17430171]

    Laboratory literature summary: Vasoactive intestinal peptide in neurodevelopmental disorders: investigational potential. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  528. Wenger GD et al. (1990). Vasoactive intestinal peptide. Messenger in a neuroimmune axis [PMID: 2165755]

    Laboratory literature summary: Vasoactive intestinal peptide. Messenger in a neuroimmune axis. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  529. Delgado M et al. (2013). Vasoactive intestinal peptide: a neuropeptide with pleiotropic immune functions [PMID: 22139413]

    Laboratory literature summary: Vasoactive intestinal peptide: a neuropeptide with pleiotropic immune functions. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  530. Vosko AM et al. (2007). Vasoactive intestinal peptide and the mammalian circadian system [PMID: 17572414]

    Laboratory literature summary: Vasoactive intestinal peptide and the mammalian circadian system. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  531. Muñoz-Flores C et al. (2023). Immunomodulatory role of vasoactive intestinal peptide and ghrelin in Oncorhynchus mykiss [PMID: 38149209]

    Laboratory literature summary: Immunomodulatory role of vasoactive intestinal peptide and ghrelin in Oncorhynchus mykiss. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  532. Benarroch EE (1980). [VIP: not only a vasoactive intestinal polypeptide] [PMID: 22167708]

    Laboratory literature summary: [VIP: not only a vasoactive intestinal polypeptide]. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  533. Fahrenkrug J (1979). Vasoactive intestinal polypeptide: measurement, distribution and putative… [PMID: 39014]

    Laboratory literature summary: Vasoactive intestinal polypeptide: measurement, distribution and putative neurotransmitter function. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  534. Hermel M et al. (2021). Vasoactive intestinal peptide producing pheochromocytoma and intracardiac thrombosis [PMID: 33889374]

    Laboratory literature summary: Vasoactive intestinal peptide producing pheochromocytoma and intracardiac thrombosis. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  535. Li M et al. (2024). Heparin Oligosaccharides as Vasoactive Intestinal Peptide Inhibitors via their Binding… [PMID: 38284716]

    Laboratory literature summary: Heparin Oligosaccharides as Vasoactive Intestinal Peptide Inhibitors via their Binding Process Characterization. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  536. Dinsmore WW et al. (2008). Laboratory research record on VIP (Vasoactive Intestinal ) [PMID: 18485029]

    PubMed laboratory record discussing VIP (Vasoactive Intestinal ) in a research context. Review the full methods and limitations on PubMed; research use only.

  537. Leceta J et al. (2007). Vasoactive intestinal peptide regulates Th17 function in autoimmune inflammation [PMID: 18073504]

    Laboratory literature summary: Vasoactive intestinal peptide regulates Th17 function in autoimmune inflammation. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  538. Carrión M et al. (2020). Vasoactive intestinal peptide axis is dysfunctional in research subjects with Graves'… [PMID: 32747757]

    Laboratory literature summary: Vasoactive intestinal peptide axis is dysfunctional in research subjects with Graves' disease. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  539. Surrenti C et al. (1993). Colonic vasoactive intestinal polypeptide in ulcerative colitis [PMID: 8298608]

    Laboratory literature summary: Colonic vasoactive intestinal polypeptide in ulcerative colitis. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  540. Prysor-Jones RA et al. (1988). Vasoactive intestinal peptide and anterior pituitary function [PMID: 3076850]

    Laboratory literature summary: Vasoactive intestinal peptide and anterior pituitary function. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  541. Delgado M et al. (2004). The significance of vasoactive intestinal peptide in immunomodulation [PMID: 15169929]

    Laboratory literature summary: The significance of vasoactive intestinal peptide in immunomodulation. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  542. Virgolini I et al. (1995). Vasoactive intestinal peptide receptor scintigraphy [PMID: 7562036]

    Laboratory literature summary: Vasoactive intestinal peptide receptor scintigraphy. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  543. Li Q (1980). [Vasoactive intestinal polypeptide] [PMID: 6115467]

    Laboratory literature summary: [Vasoactive intestinal polypeptide]. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  544. Smitherman TC et al. (1988). Vasoactive intestinal peptide as a coronary vasodilator [PMID: 3291697]

    Laboratory literature summary: Vasoactive intestinal peptide as a coronary vasodilator. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  545. Lam KS (1991). Vasoactive intestinal peptide in the hypothalamus and pituitary [PMID: 1901391]

    Laboratory literature summary: Vasoactive intestinal peptide in the hypothalamus and pituitary. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  546. Frye BC et al. (2020). Vasoactive Intestinal Peptide in Checkpoint Inhibitor-Induced Pneumonitis [PMID: 32579820]

    Laboratory literature summary: Vasoactive Intestinal Peptide in Checkpoint Inhibitor-Induced Pneumonitis. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  547. Voice JK et al. (2002). Immunoeffector and immunoregulatory activities of vasoactive intestinal peptide [PMID: 12409234]

    Laboratory literature summary: Immunoeffector and immunoregulatory activities of vasoactive intestinal peptide. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  548. Fahrenkrug J (1993). Transmitter role of vasoactive intestinal peptide [PMID: 8103215]

    Laboratory literature summary: Transmitter role of vasoactive intestinal peptide. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  549. Reichlin S (1988). Neuroendocrine significance of vasoactive intestinal polypeptide [PMID: 2898911]

    Laboratory literature summary: Neuroendocrine significance of vasoactive intestinal polypeptide. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  550. Smith SL et al. (2002). Pheochromocytoma producing vasoactive intestinal peptide [PMID: 11795252]

    Laboratory literature summary: Pheochromocytoma producing vasoactive intestinal peptide. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  551. Li C et al. (2018). Role of vasoactive intestinal peptide in Aspergillus fumigatus-infected cornea [PMID: 29487804]

    Laboratory literature summary: Role of vasoactive intestinal peptide in Aspergillus fumigatus-infected cornea. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  552. Baraniuk JN et al. (1990). Vasoactive intestinal peptide in research subjects nasal mucosa [PMID: 2203825]

    Laboratory literature summary: Vasoactive intestinal peptide in research subjects nasal mucosa. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  553. Arranz A et al. (2008). Laboratory research record on VIP (Vasoactive Intestinal ) [PMID: 18667799]

    PubMed laboratory record discussing VIP (Vasoactive Intestinal ) in a research context. Review the full methods and limitations on PubMed; research use only.

  554. Li B et al. (2019). Investigational effect of vasoactive intestinal peptide on form-deprived amblyopic kittens [PMID: 31429729]

    Laboratory literature summary: investigational effect of vasoactive intestinal peptide on form-deprived amblyopic kittens. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  555. Mutt V (1988). Vasoactive intestinal polypeptide and related peptides. Isolation and chemistry [PMID: 3133967]

    Laboratory literature summary: Vasoactive intestinal polypeptide and related peptides. Isolation and chemistry. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  556. Delgado M et al. (1999). Vasoactive intestinal peptide in thymus: synthesis, receptors and biological actions [PMID: 9876240]

    Laboratory literature summary: Vasoactive intestinal peptide in thymus: synthesis, receptors and biological actions. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  557. Ottesen B (1983). Vasoactive intestinal polypeptide as a neurotransmitter in the research models genital… [PMID: 6137145]

    Laboratory literature summary: Vasoactive intestinal polypeptide as a neurotransmitter in the research models genital tract. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  558. Khedr MEMS et al. (2018). Vasoactive intestinal peptide induces proliferation of research subjects hepatocytes [PMID: 30028555]

    Laboratory literature summary: Vasoactive intestinal peptide induces proliferation of research subjects hepatocytes. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  559. Stone RA (1986). Vasoactive intestinal polypeptide and the ocular innervation [PMID: 3710734]

    Laboratory literature summary: Vasoactive intestinal polypeptide and the ocular innervation. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  560. Burleigh DE et al. (2007). Stimulation of intestinal secretion by vasoactive intestinal peptide and cholera toxin [PMID: 17023221]

    Laboratory literature summary: Stimulation of intestinal secretion by vasoactive intestinal peptide and cholera toxin. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  561. Alessandrini F et al. (1993). Vasoactive intestinal peptide enhances lung preservation [PMID: 8212221]

    Laboratory literature summary: Vasoactive intestinal peptide enhances lung preservation. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  562. Brenneman DE et al. (1999). Vasoactive intestinal peptide. Link between electrical activity and glia-mediated… [PMID: 10676432]

    Laboratory literature summary: Vasoactive intestinal peptide. Link between electrical activity and glia-mediated neurotrophism. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  563. Sharpless NS et al. (1984). Vasoactive intestinal peptide in cerebrospinal fluid [PMID: 6473166]

    Laboratory literature summary: Vasoactive intestinal peptide in cerebrospinal fluid. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  564. Piggins HD et al. (2003). The roles of vasoactive intestinal polypeptide in the mammalian circadian clock [PMID: 12697032]

    Laboratory literature summary: The roles of vasoactive intestinal polypeptide in the mammalian circadian clock. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  565. Kodali S et al. (2004). Vasoactive intestinal peptide modulates Langerhans cell immune function [PMID: 15528344]

    Laboratory literature summary: Vasoactive intestinal peptide modulates Langerhans cell immune function. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  566. Barrowcliffe MP et al. (1986). Pulmonary clearance of vasoactive intestinal peptide [PMID: 3010486]

    Laboratory literature summary: Pulmonary clearance of vasoactive intestinal peptide. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  567. Gonzalez-Rey E et al. (2007). Therapeutical approaches of vasoactive intestinal peptide as a pleiotropic immunomodulator [PMID: 17430175]

    Laboratory literature summary: Therapeutical approaches of vasoactive intestinal peptide as a pleiotropic immunomodulator. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  568. Bloom SR et al. (1973). Vasoactive intestinal peptide and watery-diarrhoea syndrome [PMID: 4123289]

    Laboratory literature summary: Vasoactive intestinal peptide and watery-diarrhoea syndrome. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  569. Grider JR et al. (1988). Vasoactive intestinal peptide. Transmitter of inhibitory motor neurons of the gut [PMID: 2898909]

    Laboratory literature summary: Vasoactive intestinal peptide. Transmitter of inhibitory motor neurons of the gut. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  570. Gressens P (1998). [Vasoactive intestinal peptide: a novel neurotrophic factor] [PMID: 9759212]

    Laboratory literature summary: [Vasoactive intestinal peptide: a novel neurotrophic factor]. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  571. Dorsam GP et al. (2011). Vasoactive intestinal peptide signaling axis in research subjects leukemia [PMID: 21765981]

    Laboratory literature summary: Vasoactive intestinal peptide signaling axis in research subjects leukemia. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  572. Gerhold LM et al. (2001). Vasoactive intestinal peptide fibers innervate neuroendocrine dopaminergic neurons [PMID: 11689162]

    Laboratory literature summary: Vasoactive intestinal peptide fibers innervate neuroendocrine dopaminergic neurons. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  573. Zudenigo D et al. (1989). [Vasoactive intestinal polypeptide: a potential neurotransmitter] [PMID: 2576679]

    Laboratory literature summary: [Vasoactive intestinal polypeptide: a potential neurotransmitter]. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  574. Cooney DR et al. (1982). Vasoactive intestinal peptide producing neuroblastoma [PMID: 6298396]

    Laboratory literature summary: Vasoactive intestinal peptide producing neuroblastoma. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  575. Kimata H (1996). Vasoactive intestinal peptide differentially modulates research subjects… [PMID: 8790785]

    Laboratory literature summary: Vasoactive intestinal peptide differentially modulates research subjects immunoglobulin production. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  576. Bodanszky M (1988). Synthesis of vasoactive intestinal peptide and related peptides [PMID: 3291693]

    Laboratory literature summary: Synthesis of vasoactive intestinal peptide and related peptides. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  577. Buchan AM et al. (1981). Vasoactive intestinal polypeptide (VIP)-like immunoreactivity in anuran intestine [PMID: 6784927]

    Laboratory literature summary: Vasoactive intestinal polypeptide (VIP)-like immunoreactivity in anuran intestine. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  578. Hokari R et al. (2005). Vasoactive intestinal peptide upregulates MUC2 intestinal mucin via CREB/ATF1 [PMID: 16227528]

    Laboratory literature summary: Vasoactive intestinal peptide upregulates MUC2 intestinal mucin via CREB/ATF1. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  579. Marpegan L et al. (2009). Vasoactive intestinal polypeptide entrains circadian rhythms in astrocytes [PMID: 19346450]

    Laboratory literature summary: Vasoactive intestinal polypeptide entrains circadian rhythms in astrocytes. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  580. Bissonnette BM et al. (1984). Receptors for vasoactive intestinal peptide and secretin on rat pancreatic acini [PMID: 6204536]

    Laboratory literature summary: Receptors for vasoactive intestinal peptide and secretin on rat pancreatic acini. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  581. Misra BR et al. (1990). Vasoactive intestinal peptide, a singlet oxygen quencher [PMID: 2168410]

    Laboratory literature summary: Vasoactive intestinal peptide, a singlet oxygen quencher. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  582. Bloom SR et al. (1976). Letter: Vasoactive intestinal polypeptide [PMID: 59264]

    Laboratory literature summary: Letter: Vasoactive intestinal polypeptide. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  583. Lygren I et al. (1984). Vasoactive intestinal polypeptide and somatostatin in leucocytes [PMID: 6147010]

    Laboratory literature summary: Vasoactive intestinal polypeptide and somatostatin in leucocytes. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  584. Fahrenkrug J et al. (1988). Vasoactive intestinal polypeptide and the reproductive system [PMID: 3291695]

    Laboratory literature summary: Vasoactive intestinal polypeptide and the reproductive system. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  585. Brenneman DE et al. (1986). Vasoactive intestinal peptide and electrical activity influence neuronal survival [PMID: 3456568]

    Laboratory literature summary: Vasoactive intestinal peptide and electrical activity influence neuronal survival. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  586. Loh DH et al. (2008). Vasoactive intestinal peptide is critical for circadian regulation of glucocorticoids [PMID: 18562786]

    Laboratory literature summary: Vasoactive intestinal peptide is critical for circadian regulation of glucocorticoids. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  587. Hawley CM et al. (1991). Oral sodium regulates extrahepatic metabolism of vasoactive intestinal peptide [PMID: 1649728]

    Laboratory literature summary: Oral sodium regulates extrahepatic metabolism of vasoactive intestinal peptide. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  588. Grider JR et al. (1987). Prejunctional inhibition of vasoactive intestinal peptide release [PMID: 3605338]

    Laboratory literature summary: Prejunctional inhibition of vasoactive intestinal peptide release. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  589. Korleski J et al. (2026). Elevated vasoactive intestinal peptide concentrations poorly predict VIPoma [PMID: 41498509]

    Laboratory literature summary: Elevated vasoactive intestinal peptide concentrations poorly predict VIPoma. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  590. Sundler F et al. (1988). Vasoactive intestinal peptide in the peripheral nervous system [PMID: 3291690]

    Laboratory literature summary: Vasoactive intestinal peptide in the peripheral nervous system. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  591. Wilson DA et al. (1981). Vasoactive intestinal polypeptide and the canine cerebral circulation [PMID: 7438343]

    Laboratory literature summary: Vasoactive intestinal polypeptide and the canine cerebral circulation. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  592. Said SI (2012). Vasoactive intestinal peptide in pulmonary arterial hypertension [PMID: 22467806]

    Laboratory literature summary: Vasoactive intestinal peptide in pulmonary arterial hypertension. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  593. Revhaug A et al. (1988). Vasoactive intestinal peptide in sepsis and shock [PMID: 3291700]

    Laboratory literature summary: Vasoactive intestinal peptide in sepsis and shock. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  594. O'Dorisio MS et al. (1992). Vasoactive intestinal peptide: autocrine growth factor in neuroblastoma [PMID: 1313595]

    Laboratory literature summary: Vasoactive intestinal peptide: autocrine growth factor in neuroblastoma. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  595. Rostene W et al. (1997). Steroid Regulation of Vasoactive Intestinal Peptide (VIP) [PMID: 9787257]

    Laboratory literature summary: Steroid Regulation of Vasoactive Intestinal Peptide (VIP). Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  596. Mácsai M et al. (1998). Vasoactive intestinal polypeptide induces analgesia and impairs the antinociceptive… [PMID: 9920454]

    Laboratory literature summary: Vasoactive intestinal polypeptide induces analgesia and impairs the antinociceptive effect of morphine in mice. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  597. Bolin DR (1993). Vasoactive intestinal peptide: role of calmodulin and catalytic antibodies [PMID: 8220168]

    Laboratory literature summary: Vasoactive intestinal peptide: role of calmodulin and catalytic antibodies. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  598. Hultgårdh-Nilsson A et al. (1988). Growth-inhibitory properties of vasoactive intestinal polypeptide [PMID: 2902657]

    Laboratory literature summary: Growth-inhibitory properties of vasoactive intestinal polypeptide. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  599. Doi R et al. (2006). [Vasoactive intestinal peptide-producing oncology research models (ViPoma)] [PMID: 17022564]

    Laboratory literature summary: [Vasoactive intestinal peptide-producing oncology research models (ViPoma)]. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  600. Onyüksel H et al. (2000). Surface-active properties of vasoactive intestinal peptide* [PMID: 10793226]

    Laboratory literature summary: Surface-active properties of vasoactive intestinal peptide*. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  601. Mei S et al. (1991). Vasoactive intestinal peptide hydrolysis by antibody light chains [PMID: 1908455]

    Laboratory literature summary: Vasoactive intestinal peptide hydrolysis by antibody light chains. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  602. Rahmann A et al. (2008). Vasoactive intestinal peptide causes marked cephalic vasodilation, but does not induce… [PMID: 18254893]

    Laboratory literature summary: Vasoactive intestinal peptide causes marked cephalic vasodilation, but does not induce migraine. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  603. Aton SJ et al. (2005). Vasoactive intestinal polypeptide mediates circadian rhythmicity and synchrony in… [PMID: 15750589]

    Laboratory literature summary: Vasoactive intestinal polypeptide mediates circadian rhythmicity and synchrony in mammalian clock neurons. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  604. Duggan KA et al. (1987). Vasoactive intestinal peptide: a direct renal natriuretic substance [PMID: 3816077]

    Laboratory literature summary: Vasoactive intestinal peptide: a direct renal natriuretic substance. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  605. Pincelli C et al. (1991). Skin levels of vasoactive intestinal polypeptide in atopic dermatitis [PMID: 1929540]

    Laboratory literature summary: Skin levels of vasoactive intestinal polypeptide in atopic dermatitis. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  606. Metwali A et al. (2002). IL-4 inhibits vasoactive intestinal peptide production by macrophages [PMID: 12065298]

    Laboratory literature summary: IL-4 inhibits vasoactive intestinal peptide production by macrophages. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  607. Zhuo ZH et al. (2009). [Vasoactive intestinal peptidoma in a child] [PMID: 19573420]

    Laboratory literature summary: [Vasoactive intestinal peptidoma in a child]. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  608. Said SI (1993). Vasoactive intestinal peptide: involvement of calmodulin and catalytic antibodies [PMID: 8220167]

    Laboratory literature summary: Vasoactive intestinal peptide: involvement of calmodulin and catalytic antibodies. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  609. Said SI et al. (1979). Vasoactive intestinal polypeptide: release into hypophyseal portal blood [PMID: 423700]

    Laboratory literature summary: Vasoactive intestinal polypeptide: release into hypophyseal portal blood. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  610. Gonzalez-Rey E et al. (2005). Role of vasoactive intestinal peptide in inflammation and autoimmunity [PMID: 16312132]

    Laboratory literature summary: Role of vasoactive intestinal peptide in inflammation and autoimmunity. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  611. Rosselin G et al. (1988). Regulation of the vasoactive intestinal peptide receptor [PMID: 2839078]

    Laboratory literature summary: Regulation of the vasoactive intestinal peptide receptor. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  612. Ottaway CA (1988). Vasoactive intestinal peptide as a modulator of lymphocyte and immune function [PMID: 2839085]

    Laboratory literature summary: Vasoactive intestinal peptide as a modulator of lymphocyte and immune function. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  613. Ganz P et al. (1986). Vasoactive intestinal peptide: vasodilatation and cyclic AMP generation [PMID: 3010741]

    Laboratory literature summary: Vasoactive intestinal peptide: vasodilatation and cyclic AMP generation. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  614. Paul S et al. (1993). Vasoactive intestinal peptide: its interactions with calmodulin and catalytic antibodies [PMID: 8220166]

    Laboratory literature summary: Vasoactive intestinal peptide: its interactions with calmodulin and catalytic antibodies. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  615. Mohney RP et al. (1998). Vasoactive intestinal peptide enhances its own expression in sympathetic neurons after… [PMID: 9651211]

    Laboratory literature summary: Vasoactive intestinal peptide enhances its own expression in sympathetic neurons after injury. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  616. Elias E et al. (1975). Letter: Vasoactive intestinal peptide in cirrhosis [PMID: 54837]

    Laboratory literature summary: Letter: Vasoactive intestinal peptide in cirrhosis. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  617. Author et al. (1999). Vasoactive intestinal peptide/phentolamine. Invicorp, vasopotin [PMID: 10763461]

    Laboratory literature summary: Vasoactive intestinal peptide/phentolamine. Invicorp, vasopotin. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  618. Hansen JM et al. (2006). Vasoactive intestinal polypeptide evokes only a minimal headache in healthy research… [PMID: 16886936]

    Laboratory literature summary: Vasoactive intestinal polypeptide evokes only a minimal headache in healthy research subjects. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  619. Grider JR et al. (1985). Vasoactive intestinal peptide as a neural mediator of gastric relaxation [PMID: 3966563]

    Laboratory literature summary: Vasoactive intestinal peptide as a neural mediator of gastric relaxation. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  620. Tecza K et al. (2026). Vasoactive intestinal peptide advances chondrogenesis and modulates pathogenic… [PMID: 42178419]

    Laboratory literature summary: Vasoactive intestinal peptide advances chondrogenesis and modulates pathogenic mediators in research subjects osteoarthritis. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  621. Leuchte HH et al. (2008). Inhalation of vasoactive intestinal peptide in pulmonary hypertension [PMID: 18978135]

    Laboratory literature summary: Inhalation of vasoactive intestinal peptide in pulmonary hypertension. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  622. Tomkin GH et al. (1983). Vasoactive intestinal polypeptide in metabolic research models [PMID: 6345422]

    Laboratory literature summary: Vasoactive intestinal polypeptide in metabolic research models. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  623. Aggestrup S et al. (1983). Lack of vasoactive intestinal polypeptide nerves in esophageal achalasia [PMID: 6832568]

    Laboratory literature summary: Lack of vasoactive intestinal polypeptide nerves in esophageal achalasia. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  624. Varsky CG (1978). [Vasoactive intestinal polypeptide (V.I.P)] [PMID: 33518]

    Laboratory literature summary: [Vasoactive intestinal polypeptide (V.I.P)]. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  625. Sung KJ et al. (1999). Vasoactive intestinal polypeptide stimulates the proliferation of HaCaT cell via TGF-alpha [PMID: 10657522]

    Laboratory literature summary: Vasoactive intestinal polypeptide stimulates the proliferation of HaCaT cell via TGF-alpha. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  626. Nyberg B et al. (1989). Evidence that vasoactive intestinal peptide induces ductular secretion of bile in… [PMID: 2914652]

    Laboratory literature summary: Evidence that vasoactive intestinal peptide induces ductular secretion of bile in research subjects. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  627. Maggi CA et al. (1995). Neuropeptides as regulators of airway function: vasoactive intestinal peptide and the… [PMID: 7724664]

    Laboratory literature summary: Neuropeptides as regulators of airway function: vasoactive intestinal peptide and the tachykinins. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  628. Mathioudakis A et al. (2013). Vasoactive intestinal Peptide inhaled agonists: potential role in respiratory therapeutics [PMID: 23935337]

    Laboratory literature summary: Vasoactive intestinal Peptide inhaled agonists: potential role in respiratory therapeutics. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  629. Takeyama M et al. (1996). Elcatonin raises levels of vasoactive intestinal peptide in research subjects plasma [PMID: 8832504]

    Laboratory literature summary: Elcatonin raises levels of vasoactive intestinal peptide in research subjects plasma. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  630. Barnes PJ (1989). Vasoactive intestinal peptide and asthma [PMID: 2797074]

    Laboratory literature summary: Vasoactive intestinal peptide and asthma. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  631. Cugini P et al. (1991). Vasoactive intestinal peptide: a chronoimmunomodulator? [PMID: 1782019]

    Laboratory literature summary: Vasoactive intestinal peptide: a chronoimmunomodulator?. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  632. Chard MD et al. (1990). Vasoactive intestinal polypeptide in algodystrophy [PMID: 2257465]

    Laboratory literature summary: Vasoactive intestinal polypeptide in algodystrophy. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  633. Chorny A et al. (2006). Signaling mechanisms of vasoactive intestinal peptide in inflammatory conditions [PMID: 16949684]

    Laboratory literature summary: Signaling mechanisms of vasoactive intestinal peptide in inflammatory conditions. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  634. Souza-Moreira L et al. (2012). Laboratory research record on VIP (Vasoactive Intestinal ) [PMID: 23094830]

    PubMed laboratory record discussing VIP (Vasoactive Intestinal ) in a research context. Review the full methods and limitations on PubMed; research use only.

  635. Ottesen B et al. (1984). Penile erection: possible role for vasoactive intestinal polypeptide as a neurotransmitter [PMID: 6140066]

    Laboratory literature summary: Penile erection: possible role for vasoactive intestinal polypeptide as a neurotransmitter. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  636. Delgado M et al. (2005). The neuropeptide vasoactive intestinal peptide generates tolerogenic dendritic cells [PMID: 16301637]

    Laboratory literature summary: The neuropeptide vasoactive intestinal peptide generates tolerogenic dendritic cells. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  637. Campos-Salinas J et al. (2014). Investigational observed endpoints of stable analogues of vasoactive intestinal… [PMID: 24706753]

    Laboratory literature summary: investigational observed endpoints of stable analogues of vasoactive intestinal peptide against pathogens. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  638. Gozes I et al. (1989). Vasoactive intestinal peptide potentiates behavioral behavior: inhibition by novel… [PMID: 2583049]

    Laboratory literature summary: Vasoactive intestinal peptide potentiates behavioral behavior: inhibition by novel antagonist. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  639. Matsumura M et al. (1979). Effects of vasoactive intestinal peptide on glycogenolysis in cultured liver cells [PMID: 477614]

    Laboratory literature summary: Effects of vasoactive intestinal peptide on glycogenolysis in cultured liver cells. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  640. Burhol PG et al. (1978). Radioimmunoassay of vasoactive intestinal polypeptide in plasma [PMID: 725503]

    Laboratory literature summary: Radioimmunoassay of vasoactive intestinal polypeptide in plasma. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  641. Lopez-Sánchez G et al. (2016). [Adrenal pheochromocytoma producing vasoactive intestinal peptide] [PMID: 26520602]

    Laboratory literature summary: [Adrenal pheochromocytoma producing vasoactive intestinal peptide]. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  642. Ebeid AM et al. (1978). Hepatic inactivation of vasoactive intestinal peptide in man and dog [PMID: 666373]

    Laboratory literature summary: Hepatic inactivation of vasoactive intestinal peptide in man and dog. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  643. Krejs GJ (1988). Effect of vasoactive intestinal peptide in man [PMID: 2839086]

    Laboratory literature summary: Effect of vasoactive intestinal peptide in man. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  644. Harrison LH Jr et al. (1985). Vasoactive intestinal polypeptide in cardiac myxoma [PMID: 3990331]

    Laboratory literature summary: Vasoactive intestinal polypeptide in cardiac myxoma. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  645. Prasse A et al. (2010). Inhaled vasoactive intestinal peptide exerts immunoregulatory effects in sarcoidosis [PMID: 20442436]

    Laboratory literature summary: Inhaled vasoactive intestinal peptide exerts immunoregulatory effects in sarcoidosis. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  646. Hajos F et al. (2008). Inhalable liposomal formulation for vasoactive intestinal peptide [PMID: 18328650]

    Laboratory literature summary: Inhalable liposomal formulation for vasoactive intestinal peptide. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  647. Chang TM et al. (1979). Radioimmunoassay of vasoactive intestinal polypeptide [PMID: 525792]

    Laboratory literature summary: Radioimmunoassay of vasoactive intestinal polypeptide. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  648. Gourlet P et al. (1998). Vasoactive intestinal peptide modification at position 22 allows discrimination… [PMID: 9650836]

    Laboratory literature summary: Vasoactive intestinal peptide modification at position 22 allows discrimination between receptor subtypes. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  649. Swedlund AP et al. (1990). Characterization of vasoactive intestinal peptide receptors in retina [PMID: 2169429]

    Laboratory literature summary: Characterization of vasoactive intestinal peptide receptors in retina. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  650. Soon-Shiong P et al. (1981). Non-vasoactive intestinal polypeptide, nonsomatostatin fundic inhibitoy mechanism [PMID: 6113305]

    Laboratory literature summary: Non-vasoactive intestinal polypeptide, nonsomatostatin fundic inhibitoy mechanism. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  651. Stadelmann AM et al. (1996). Expression of mRNA for vasoactive intestinal peptide in rat small intestine [PMID: 8822262]

    Laboratory literature summary: Expression of mRNA for vasoactive intestinal peptide in rat small intestine. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  652. Author et al. (1988). Vasoactive intestinal peptide and related peptides [PMID: 3389646]

    Laboratory literature summary: Vasoactive intestinal peptide and related peptides. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  653. Said SI (1991). Vasoactive intestinal polypeptide: biologic role in health and disease [PMID: 18411175]

    Laboratory literature summary: Vasoactive intestinal polypeptide: biologic role in health and disease. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  654. Rattan S et al. (1977). Effect of vasoactive intestinal polypeptide [PMID: 859880]

    Laboratory literature summary: Effect of vasoactive intestinal polypeptide. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  655. Taylor DP et al. (1979). Vasoactive intestinal polypeptide: specific binding to rat brain membranes [PMID: 218214]

    Laboratory literature summary: Vasoactive intestinal polypeptide: specific binding to rat brain membranes. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  656. Rattan S et al. (1982). Vasoactive intestinal peptide causes peristaltic contractions in the esophageal body [PMID: 7078354]

    Laboratory literature summary: Vasoactive intestinal peptide causes peristaltic contractions in the esophageal body. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  657. De Souza EB et al. (1985). Vasoactive intestinal peptide receptor localization in rat forebrain by autoradiography [PMID: 2989737]

    Laboratory literature summary: Vasoactive intestinal peptide receptor localization in rat forebrain by autoradiography. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  658. Basson MD et al. (1989). Does vasoactive intestinal polypeptide mediate the pathophysiology of bowel obstruction? [PMID: 2910115]

    Laboratory literature summary: Does vasoactive intestinal polypeptide mediate the pathophysiology of bowel obstruction?. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  659. Shinohara K et al. (1995). Photic information coded by vasoactive intestinal polypeptide and neuropeptide Y [PMID: 7566737]

    Laboratory literature summary: Photic information coded by vasoactive intestinal polypeptide and neuropeptide Y. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  660. Kulkosky PJ et al. (1989). Vasoactive intestinal peptide: behavioral effects in the rat and hamster [PMID: 2622995]

    Laboratory literature summary: Vasoactive intestinal peptide: behavioral effects in the rat and hamster. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  661. Rayan GM et al. (1991). Vasoactive intestinal peptide and nerve regeneration [PMID: 1791362]

    Laboratory literature summary: Vasoactive intestinal peptide and nerve regeneration. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  662. O'Dorisio MS et al. (1981). Vasoactive intestinal polypeptide modulation of lymphocyte adenylate cyclase [PMID: 6975328]

    Laboratory literature summary: Vasoactive intestinal polypeptide modulation of lymphocyte adenylate cyclase. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  663. Lundeberg L et al. (1999). Vasoactive intestinal polypeptide in allergic contact dermatitis: an… [PMID: 10335916]

    Laboratory literature summary: Vasoactive intestinal polypeptide in allergic contact dermatitis: an immunohistochemical and radioimmunoassay study. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  664. Domschke S et al. (1978). Vasoactive intestinal peptide in man: pharmacokinetics, metabolic and circulatory effects [PMID: 730072]

    Laboratory literature summary: Vasoactive intestinal peptide in man: pharmacokinetics, metabolic and circulatory effects. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  665. Kusunoki M et al. (1986). Vasoactive intestinal polypeptide provokes acetylcholine release from the myenteric plexus [PMID: 3728677]

    Laboratory literature summary: Vasoactive intestinal polypeptide provokes acetylcholine release from the myenteric plexus. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  666. Grisoni E et al. (1993). Vasoactive intestinal polypeptide causes relaxation of the pyloric sphincter in the rabbit [PMID: 8308673]

    Laboratory literature summary: Vasoactive intestinal polypeptide causes relaxation of the pyloric sphincter in the rabbit. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  667. Paul S et al. (1989). Catalytic hydrolysis of vasoactive intestinal peptide by research subjects autoantibody [PMID: 2727702]

    Laboratory literature summary: Catalytic hydrolysis of vasoactive intestinal peptide by research subjects autoantibody. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  668. Biancani P et al. (1984). Vasoactive intestinal polypeptide. A neurotransmitter for lower esophageal sphincter… [PMID: 6142903]

    Laboratory literature summary: Vasoactive intestinal polypeptide. A neurotransmitter for lower esophageal sphincter relaxation. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  669. Noda Y et al. (1994). Partitioning of vasoactive intestinal polypeptide into lipid bilayers [PMID: 8172918]

    Laboratory literature summary: Partitioning of vasoactive intestinal polypeptide into lipid bilayers. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  670. Williams RO (2002). Investigational effect of vasoactive intestinal peptide in collagen-induced arthritis [PMID: 11817602]

    Laboratory literature summary: investigational effect of vasoactive intestinal peptide in collagen-induced arthritis. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  671. Grisoni ER et al. (1990). Plasma vasoactive intestinal polypeptide in the newborn infant [PMID: 2303969]

    Laboratory literature summary: Plasma vasoactive intestinal polypeptide in the newborn infant. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  672. Giachetti A et al. (1976). Vasoactive intestinal polypeptide in brain synaptosomes [PMID: 61421]

    Laboratory literature summary: Vasoactive intestinal polypeptide in brain synaptosomes. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  673. Rayan GM et al. (1988). Vasoactive intestinal peptide and compression neuropathy [PMID: 3347676]

    Laboratory literature summary: Vasoactive intestinal peptide and compression neuropathy. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  674. O'Dorisio MS et al. (1980). Vasoactive intestinal polypeptide as a biochemical marker for polymorphonuclear leukocytes [PMID: 6932456]

    Laboratory literature summary: Vasoactive intestinal polypeptide as a biochemical marker for polymorphonuclear leukocytes. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  675. Pence JC et al. (1992). Autoregulation of neuroblastoma growth by vasoactive intestinal peptide [PMID: 1328588]

    Laboratory literature summary: Autoregulation of neuroblastoma growth by vasoactive intestinal peptide. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  676. Kordasti S et al. (2004). Serotonin and vasoactive intestinal peptide antagonists attenuate rotavirus diarrhoea [PMID: 15194642]

    Laboratory literature summary: Serotonin and vasoactive intestinal peptide antagonists attenuate rotavirus diarrhoea. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  677. Davis RE et al. (1995). Vasoactive intestinal peptide regulates angiotensin II catabolism in the rabbit [PMID: 7625178]

    Laboratory literature summary: Vasoactive intestinal peptide regulates angiotensin II catabolism in the rabbit. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  678. Bangale Y et al. (2002). Vasoactive intestinal peptide binding autoantibodies in autoimmune research subjects… [PMID: 12535706]

    Laboratory literature summary: Vasoactive intestinal peptide binding autoantibodies in autoimmune research subjects and mice. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  679. Ebeid AM et al. (1976). Radioimmunoassay of vasoactive intestinal peptide [PMID: 933489]

    Laboratory literature summary: Radioimmunoassay of vasoactive intestinal peptide. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  680. Chaudhury D et al. (2008). Select cognitive deficits in vasoactive intestinal peptide deficient mice [PMID: 18616823]

    Laboratory literature summary: Select cognitive deficits in vasoactive intestinal peptide deficient mice. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  681. Kiely EA et al. (1986). Vasoactive intestinal polypeptide during penile erection [PMID: 2871266]

    Laboratory literature summary: Vasoactive intestinal polypeptide during penile erection. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  682. Li GH et al. (2007). Effect of vasoactive intestinal peptide on gastric adenocarcinoma [PMID: 17559364]

    Laboratory literature summary: Effect of vasoactive intestinal peptide on gastric adenocarcinoma. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  683. Wikkelsø C et al. (1985). Dementia of different etiologies: vasoactive intestinal polypeptide in CSF [PMID: 3982653]

    Laboratory literature summary: Dementia of different etiologies: vasoactive intestinal polypeptide in CSF. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  684. Sharma A et al. (2001). A vasoactive intestinal peptide antagonist inhibits the growth of glioblastoma cells [PMID: 11859929]

    Laboratory literature summary: A vasoactive intestinal peptide antagonist inhibits the growth of glioblastoma cells. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  685. Rukwied R et al. (1999). Administration of acetylcholine and vasoactive intestinal polypeptide to atopic eczema… [PMID: 10206720]

    Laboratory literature summary: Administration of acetylcholine and vasoactive intestinal polypeptide to atopic eczema research subjects. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  686. DeLamarter JF et al. (1985). Vasoactive intestinal peptide: expression of the prohormone in bacterial cells [PMID: 2995945]

    Laboratory literature summary: Vasoactive intestinal peptide: expression of the prohormone in bacterial cells. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  687. Pulsatelli L et al. (2006). Synovial expression of vasoactive intestinal peptide in polymyalgia rheumatica [PMID: 17181926]

    Laboratory literature summary: Synovial expression of vasoactive intestinal peptide in polymyalgia rheumatica. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  688. Kan S et al. (1994). Specific receptor for vasoactive intestinal contractor in myenteric cholinergic neurones [PMID: 7925592]

    Laboratory literature summary: Specific receptor for vasoactive intestinal contractor in myenteric cholinergic neurones. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  689. Wernig K et al. (2008). Depot formulation of vasoactive intestinal peptide by protamine-based biodegradable… [PMID: 18601963]

    Laboratory literature summary: Depot formulation of vasoactive intestinal peptide by protamine-based biodegradable nanoparticles. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  690. Kuncová J et al. (2000). Vasoactive intestinal polypeptide in rat heart atria: the effect of hyperthyroidism [PMID: 11072802]

    Laboratory literature summary: Vasoactive intestinal polypeptide in rat heart atria: the effect of hyperthyroidism. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  691. Ivanova M et al. (2008). Hippocampal asymmetry in exploratory behavior to vasoactive intestinal polypeptide [PMID: 18321609]

    Laboratory literature summary: Hippocampal asymmetry in exploratory behavior to vasoactive intestinal polypeptide. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  692. Kato Y et al. (1978). Prolactin release by vasoactive intestinal polypeptide in rats [PMID: 744101]

    Laboratory literature summary: Prolactin release by vasoactive intestinal polypeptide in rats. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  693. Larsson LI (1976). Research subjects pancreatic polypeptide and vasoactive intestinal polypeptide [PMID: 73783]

    Laboratory literature summary: research subjects pancreatic polypeptide and vasoactive intestinal polypeptide. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  694. Hansson E et al. (1988). Interaction between catecholamines and vasoactive intestinal peptide in cultured… [PMID: 2836754]

    Laboratory literature summary: Interaction between catecholamines and vasoactive intestinal peptide in cultured astrocytes. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  695. Kim DH et al. (2011). Alterations of vasoactive intestinal polypeptide receptors in allergic rhinitis [PMID: 21711977]

    Laboratory literature summary: Alterations of vasoactive intestinal polypeptide receptors in allergic rhinitis. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  696. Stone RA et al. (1988). Increase in retinal vasoactive intestinal polypeptide after eyelid fusion in primates [PMID: 2448769]

    Laboratory literature summary: Increase in retinal vasoactive intestinal polypeptide after eyelid fusion in primates. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  697. Cugini P et al. (1991). Vasoactive intestinal peptide fluctuates in research subjects blood with a circadian… [PMID: 1924885]

    Laboratory literature summary: Vasoactive intestinal peptide fluctuates in research subjects blood with a circadian rhythm. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  698. Chiodera P et al. (1998). Oxytocin enhances the prolactin response to vasoactive intestinal polypeptide in… [PMID: 9757887]

    Laboratory literature summary: Oxytocin enhances the prolactin response to vasoactive intestinal polypeptide in healthy research subjects. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  699. Schwarzschild MA et al. (1989). Secretin and vasoactive intestinal peptide activate tyrosine hydroxylase in… [PMID: 2563276]

    Laboratory literature summary: Secretin and vasoactive intestinal peptide activate tyrosine hydroxylase in sympathetic nerve endings. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  700. Fahrenkrug J et al. (1979). Vasoactive intestinal polypeptide in vagally mediated pancreatic secretion of fluid… [PMID: 517650]

    Laboratory literature summary: Vasoactive intestinal polypeptide in vagally mediated pancreatic secretion of fluid and HCO3. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  701. Brenneman DE et al. (1990). Vasoactive intestinal peptide: a neurotrophic releasing agent and an astroglial mitogen [PMID: 2325164]

    Laboratory literature summary: Vasoactive intestinal peptide: a neurotrophic releasing agent and an astroglial mitogen. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  702. Brenneman DE et al. (1997). Identity of neurotrophic molecules released from astroglia by vasoactive intestinal… [PMID: 9160969]

    Laboratory literature summary: Identity of neurotrophic molecules released from astroglia by vasoactive intestinal peptide. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  703. Tyutyulkova S et al. (1996). Efficient vasoactive intestinal polypeptide hydrolyzing autoantibody light chains… [PMID: 8781541]

    Laboratory literature summary: Efficient vasoactive intestinal polypeptide hydrolyzing autoantibody light chains selected by phage display. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  704. Dupont C et al. (1985). [Vasoactive intestinal peptide: a ubiquitous neuropeptide. Implications in digestive… [PMID: 2867748]

    Laboratory literature summary: [Vasoactive intestinal peptide: a ubiquitous neuropeptide. Implications in digestive physiopathology]. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  705. Morice AH et al. (1986). Vasoactive intestinal peptide as a bronchodilator in severe asthma [PMID: 3529052]

    Laboratory literature summary: Vasoactive intestinal peptide as a bronchodilator in severe asthma. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  706. Virag R et al. (1982). Vasoactive intestinal polypeptide release during penile erection in man [PMID: 6128487]

    Laboratory literature summary: Vasoactive intestinal polypeptide release during penile erection in man. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  707. Wessels-Reiker M et al. (1991). Vasoactive intestinal polypeptide induces tyrosine hydroxylase in PC12 cells [PMID: 1674510]

    Laboratory literature summary: Vasoactive intestinal polypeptide induces tyrosine hydroxylase in PC12 cells. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  708. Rosas G et al. (2015). Asymmetric steroidogenic response by the ovaries to the vasoactive intestinal peptide [PMID: 25331816]

    Laboratory literature summary: Asymmetric steroidogenic response by the ovaries to the vasoactive intestinal peptide. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  709. Kimura H et al. (1994). Vasoactive intestinal peptide released by acetylcholine in the dog ileum [PMID: 8089398]

    Laboratory literature summary: Vasoactive intestinal peptide released by acetylcholine in the dog ileum. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  710. O'Donnell M et al. (1991). Structure-activity studies of vasoactive intestinal polypeptide [PMID: 1848854]

    Laboratory literature summary: Structure-activity studies of vasoactive intestinal polypeptide. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  711. Leoni G et al. (2000). Vasoactive intestinal peptide influences hatching of ovine blastocysts [PMID: 11194560]

    Laboratory literature summary: Vasoactive intestinal peptide influences hatching of ovine blastocysts. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  712. Contreras LN et al. (1991). Adrenal ganglioneuroma-pheochromocytoma secreting vasoactive intestinal polypeptide [PMID: 2028605]

    Laboratory literature summary: Adrenal ganglioneuroma-pheochromocytoma secreting vasoactive intestinal polypeptide. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  713. Thulin L et al. (1976). Choleretic effect of vasoactive intestinal peptide [PMID: 936953]

    Laboratory literature summary: Choleretic effect of vasoactive intestinal peptide. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  714. Lorén I et al. (1979). Distribution of vasoactive intestinal polypeptide in the rat and mouse brain [PMID: 394023]

    Laboratory literature summary: Distribution of vasoactive intestinal polypeptide in the rat and mouse brain. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  715. Taniyama K et al. (1993). Involvement of cholinergic neurons in intestinal contraction caused by vasoactive… [PMID: 8519276]

    Laboratory literature summary: Involvement of cholinergic neurons in intestinal contraction caused by vasoactive intestinal contractor. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  716. Werner H et al. (1985). High levels of vasoactive intestinal peptide in research subjects milk [PMID: 4074363]

    Laboratory literature summary: High levels of vasoactive intestinal peptide in research subjects milk. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  717. Ipp E et al. (1978). Vasoactive intestinal peptide stimulates pancreatic somatostatin release [PMID: 350630]

    Laboratory literature summary: Vasoactive intestinal peptide stimulates pancreatic somatostatin release. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  718. Azuero-Holguin MM et al. (2003). Identification and quantification of vasoactive intestinal peptide in periradicular… [PMID: 14503825]

    Laboratory literature summary: Identification and quantification of vasoactive intestinal peptide in periradicular lesions. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  719. Ghourab S et al. (2011). Intracerebroventricular administration of vasoactive intestinal peptide inhibits food… [PMID: 21802451]

    Laboratory literature summary: Intracerebroventricular administration of vasoactive intestinal peptide inhibits food intake. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  720. Paul S et al. (1995). Catalytic autoantibodies to vasoactive intestinal peptide [PMID: 7874991]

    Laboratory literature summary: Catalytic autoantibodies to vasoactive intestinal peptide. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  721. Frase LL et al. (1987). Cardiovascular effects of vasoactive intestinal peptide in healthy subjects [PMID: 3687785]

    Laboratory literature summary: Cardiovascular effects of vasoactive intestinal peptide in healthy subjects. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  722. Burleigh DE et al. (1990). Distribution and actions of galanin and vasoactive intestinal peptide in the research… [PMID: 1701228]

    Laboratory literature summary: Distribution and actions of galanin and vasoactive intestinal peptide in the research subjects colon. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  723. Brenneman DE et al. (1987). Nonneuronal cells mediate neurotrophic action of vasoactive intestinal peptide [PMID: 3584242]

    Laboratory literature summary: Nonneuronal cells mediate neurotrophic action of vasoactive intestinal peptide. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  724. Paul S (1989). Decreased selectivity of vasoactive intestinal peptide receptors by GTP [PMID: 2537088]

    Laboratory literature summary: Decreased selectivity of vasoactive intestinal peptide receptors by GTP. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  725. Cunha-Reis D et al. (2014). Endogenous inhibition of hippocampal LTD and depotentiation by vasoactive intestinal… [PMID: 24935659]

    Laboratory literature summary: Endogenous inhibition of hippocampal LTD and depotentiation by vasoactive intestinal peptide VPAC1 receptors. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  726. Bitar KN et al. (1980). Neural release of vasoactive intestinal peptide from the gut [PMID: 7439634]

    Laboratory literature summary: Neural release of vasoactive intestinal peptide from the gut. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  727. Filizola M et al. (1997). Conformational study of vasoactive intestinal peptide by computational methods [PMID: 9273888]

    Laboratory literature summary: Conformational study of vasoactive intestinal peptide by computational methods. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  728. Kawano H et al. (1989). Do the ependymal cells contain vasoactive intestinal polypeptide? [PMID: 2601880]

    Laboratory literature summary: Do the ependymal cells contain vasoactive intestinal polypeptide?. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  729. Paul S et al. (1989). Characterization of autoantibodies to vasoactive intestinal peptide in asthma [PMID: 2542371]

    Laboratory literature summary: Characterization of autoantibodies to vasoactive intestinal peptide in asthma. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  730. Phillis JW et al. (1978). Vasoactive intestinal polypeptide excitation of central neurons [PMID: 416895]

    Laboratory literature summary: Vasoactive intestinal polypeptide excitation of central neurons. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  731. El-Halawani ME et al. (2000). Active immunization with vasoactive intestinal peptide in turkey hens [PMID: 10735201]

    Laboratory literature summary: Active immunization with vasoactive intestinal peptide in turkey hens. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  732. Kaneto A et al. (1977). Effect of vasoactive intestinal polypeptide infused intrapancreatically on glucagon… [PMID: 865285]

    Laboratory literature summary: Effect of vasoactive intestinal polypeptide infused intrapancreatically on glucagon and insulin secretion. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  733. Pinna C et al. (1998). ATP and vasoactive intestinal polypeptide relaxant responses in hamster isolated… [PMID: 9720775]

    Laboratory literature summary: ATP and vasoactive intestinal polypeptide relaxant responses in hamster isolated proximal urethra. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  734. Hunt S et al. (1979). Circulating levels of vasoactive intestinal polypeptide in liver disease [PMID: 475538]

    Laboratory literature summary: Circulating levels of vasoactive intestinal polypeptide in liver disease. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  735. Hedlund B et al. (1988). Vasoactive intestinal polypeptide alters GH3/B6 pituitary cell excitability [PMID: 3357755]

    Laboratory literature summary: Vasoactive intestinal polypeptide alters GH3/B6 pituitary cell excitability. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  736. Misawa T et al. (1990). Vasoactive intestinal polypeptide response to ethanol in dogs [PMID: 2396256]

    Laboratory literature summary: Vasoactive intestinal polypeptide response to ethanol in dogs. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  737. Van Noorden S et al. (1979). Vasoactive intestinal polypeptide in the neurohypophysis [proceedings] [PMID: 458317]

    Laboratory literature summary: Vasoactive intestinal polypeptide in the neurohypophysis [proceedings]. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  738. Lothe L et al. (1987). Motilin, vasoactive intestinal peptide and gastrin in infantile colic [PMID: 3591297]

    Laboratory literature summary: Motilin, vasoactive intestinal peptide and gastrin in infantile colic. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  739. Dimaline R et al. (1984). Isolation and characterization of rat vasoactive intestinal peptide [PMID: 6473151]

    Laboratory literature summary: Isolation and characterization of rat vasoactive intestinal peptide. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  740. Chaiseha Y et al. (1998). Vasoactive intestinal peptide secretion by turkey hypothalamic explants [PMID: 9716568]

    Laboratory literature summary: Vasoactive intestinal peptide secretion by turkey hypothalamic explants. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  741. Gozes I et al. (1995). Superactive lipophilic peptides discriminate multiple vasoactive intestinal peptide… [PMID: 7714762]

    Laboratory literature summary: Superactive lipophilic peptides discriminate multiple vasoactive intestinal peptide receptors. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  742. Carlquist M et al. (1982). A porcine brain polypeptide is identical to the vasoactive intestinal polypeptide [PMID: 7084607]

    Laboratory literature summary: A porcine brain polypeptide is identical to the vasoactive intestinal polypeptide. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  743. Zdrojewicz Z et al. (1999). [The role of vasoactive intestinal peptide in research subjects body] [PMID: 10540588]

    Laboratory literature summary: [The role of vasoactive intestinal peptide in research subjects body]. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  744. Gololobov G et al. (1998). Stabilization of vasoactive intestinal peptide by lipids [PMID: 9580623]

    Laboratory literature summary: Stabilization of vasoactive intestinal peptide by lipids. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  745. Accili EA et al. (1995). Presence and actions of vasoactive intestinal peptide in the isolated rabbit heart [PMID: 7541311]

    Laboratory literature summary: Presence and actions of vasoactive intestinal peptide in the isolated rabbit heart. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  746. Maney DL et al. (1999). Effects of vasoactive intestinal peptide on plasma prolactin in passerines [PMID: 10068494]

    Laboratory literature summary: Effects of vasoactive intestinal peptide on plasma prolactin in passerines. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  747. Duckles SP et al. (1982). Vasoactive intestinal peptide as a neurotransmitter in the cerebral circulation [PMID: 6121712]

    Laboratory literature summary: Vasoactive intestinal peptide as a neurotransmitter in the cerebral circulation. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  748. Brenneman DE et al. (1996). Vasoactive intestinal peptide releases interleukin-1 from astrocytes [PMID: 8993410]

    Laboratory literature summary: Vasoactive intestinal peptide releases interleukin-1 from astrocytes. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  749. Lucia P et al. (2000). [Vasoactive intestinal peptide in heart failure] [PMID: 10834134]

    Laboratory literature summary: [Vasoactive intestinal peptide in heart failure]. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  750. Gaginella TS et al. (1981). Release of vasoactive intestinal polypeptide by electrical field stimulation of rabbit… [PMID: 7255769]

    Laboratory literature summary: Release of vasoactive intestinal polypeptide by electrical field stimulation of rabbit ileum. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  751. Brenneman DE et al. (2003). Complex array of cytokines released by vasoactive intestinal peptide [PMID: 12747943]

    Laboratory literature summary: Complex array of cytokines released by vasoactive intestinal peptide. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  752. Stark B et al. (2008). Liposomal vasoactive intestinal peptide for lung application: protection from… [PMID: 18555674]

    Laboratory literature summary: Liposomal vasoactive intestinal peptide for lung application: protection from proteolytic degradation. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  753. Park SK et al. (1996). Characterization of vasoactive intestinal peptide receptors on research subjects… [PMID: 8639831]

    Laboratory literature summary: Characterization of vasoactive intestinal peptide receptors on research subjects megakaryocytes and platelets. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  754. Grider JR et al. (1985). Vasoactive intestinal peptide. Relaxant neurotransmitter in tenia coli of the guinea pig [PMID: 2861138]

    Laboratory literature summary: Vasoactive intestinal peptide. Relaxant neurotransmitter in tenia coli of the guinea pig. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  755. Kinder RB et al. (1985). Vasoactive intestinal polypeptide in the hyper-reflexic neuropathic bladder [PMID: 4005496]

    Laboratory literature summary: Vasoactive intestinal polypeptide in the hyper-reflexic neuropathic bladder. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  756. van Noorden S et al. (1979). Vasoactive intestinal polypeptide in the pituitary pars nervosa [PMID: 471186]

    Laboratory literature summary: Vasoactive intestinal polypeptide in the pituitary pars nervosa. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  757. Wang R et al. (1993). Penile erections induced by vasoactive intestinal peptide and sodium nitroprusside [PMID: 8456543]

    Laboratory literature summary: Penile erections induced by vasoactive intestinal peptide and sodium nitroprusside. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  758. Vagne M et al. (1982). Effect of vasoactive intestinal peptide on gastric secretion in the cat [PMID: 6806139]

    Laboratory literature summary: Effect of vasoactive intestinal peptide on gastric secretion in the cat. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  759. Kar S et al. (1996). Comitogenic effects of vasoactive intestinal polypeptide on rat hepatocytes [PMID: 8647908]

    Laboratory literature summary: Comitogenic effects of vasoactive intestinal polypeptide on rat hepatocytes. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  760. Maher E et al. (1996). Laboratory research record on VIP (Vasoactive Intestinal ) [PMID: 8800898]

    PubMed laboratory record discussing VIP (Vasoactive Intestinal ) in a research context. Review the full methods and limitations on PubMed; research use only.

  761. Lindblom L et al. (2000). Importance of vasoactive intestinal polypeptide in the regulation of burn perfusion [PMID: 10812264]

    Laboratory literature summary: Importance of vasoactive intestinal polypeptide in the regulation of burn perfusion. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  762. Esposito C et al. (1999). Enzymatic synthesis of vasoactive intestinal peptide analogs by transglutaminase [PMID: 10408336]

    Laboratory literature summary: Enzymatic synthesis of vasoactive intestinal peptide analogs by transglutaminase. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  763. Bunnett NW et al. (1984). The isolation and sequence analysis of vasoactive intestinal peptide from a… [PMID: 6092409]

    Laboratory literature summary: The isolation and sequence analysis of vasoactive intestinal peptide from a ganglioneuroblastoma. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  764. Xenopoulos NP et al. (1994). Effects of vasoactive intestinal peptide on myocardial performance [PMID: 8141340]

    Laboratory literature summary: Effects of vasoactive intestinal peptide on myocardial performance. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  765. Pickoff AS et al. (1994). Vasoactive intestinal peptide: electrophysiologic activity in the newborn heart [PMID: 8165061]

    Laboratory literature summary: Vasoactive intestinal peptide: electrophysiologic activity in the newborn heart. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  766. Cui X et al. (2013). Pharmacodynamics and toxicity of vasoactive intestinal peptide for intranasal… [PMID: 23444784]

    Laboratory literature summary: Pharmacodynamics and toxicity of vasoactive intestinal peptide for intranasal administration. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  767. Wollman Y et al. (1993). Vasoactive intestinal peptide: a growth promoter in neuroblastoma cells [PMID: 8252411]

    Laboratory literature summary: Vasoactive intestinal peptide: a growth promoter in neuroblastoma cells. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  768. Schmid KW et al. (1993). Chromogranin A, secretogranin II and vasoactive intestinal peptide in… [PMID: 8354485]

    Laboratory literature summary: Chromogranin A, secretogranin II and vasoactive intestinal peptide in phaeochromocytomas and ganglioneuromas. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  769. Keino H et al. (2004). Prevention of experimental autoimmune uveoretinitis by vasoactive intestinal peptide [PMID: 15302659]

    Laboratory literature summary: Prevention of experimental autoimmune uveoretinitis by vasoactive intestinal peptide. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  770. Clark AJ et al. (1983). Vasoactive intestinal peptide in shock and heart failure [PMID: 6131249]

    Laboratory literature summary: Vasoactive intestinal peptide in shock and heart failure. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  771. Fredericks CM et al. (1985). Vasoactive intestinal polypeptide stimulates nonovarian progesterone secretion in rabbits [PMID: 3929235]

    Laboratory literature summary: Vasoactive intestinal polypeptide stimulates nonovarian progesterone secretion in rabbits. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  772. Delgado M et al. (2001). Cutting edge: is vasoactive intestinal peptide a type 2 cytokine? [PMID: 11207237]

    Laboratory literature summary: Cutting edge: is vasoactive intestinal peptide a type 2 cytokine?. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  773. Giachetti A et al. (1979). Axonal transport of vasoactive intestinal peptide in sciatic nerve [PMID: 91110]

    Laboratory literature summary: Axonal transport of vasoactive intestinal peptide in sciatic nerve. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  774. Mo N et al. (1984). Vasoactive intestinal polypeptide facilitates muscarinic transmission in mammalian… [PMID: 6152040]

    Laboratory literature summary: Vasoactive intestinal polypeptide facilitates muscarinic transmission in mammalian sympathetic ganglia. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  775. Agha-Mir-Salim S et al. (1991). Presence of vasoactive intestinal peptide receptors in nasal mucosa [PMID: 1662970]

    Laboratory literature summary: Presence of vasoactive intestinal peptide receptors in nasal mucosa. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  776. Kralios AC et al. (1990). Myocardial electrophysiological effects of vasoactive intestinal peptide in dogs [PMID: 2240253]

    Laboratory literature summary: Myocardial electrophysiological effects of vasoactive intestinal peptide in dogs. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  777. Schroeder A et al. (2011). Circadian regulation of cardiovascular function: a role for vasoactive intestinal peptide [PMID: 20952671]

    Laboratory literature summary: Circadian regulation of cardiovascular function: a role for vasoactive intestinal peptide. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  778. Smith CH et al. (1992). Cutaneous responses to vasoactive intestinal polypeptide in chronic idiopathic urticaria [PMID: 1370236]

    Laboratory literature summary: Cutaneous responses to vasoactive intestinal polypeptide in chronic idiopathic urticaria. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  779. Hinson JP et al. (1996). Vasoactive intestinal peptide is a local regulator of adrenocortical function [PMID: 8969946]

    Laboratory literature summary: Vasoactive intestinal peptide is a local regulator of adrenocortical function. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  780. Said SI (1982). Vasoactive intestinal peptide in the gut. Physiology and pathology [PMID: 6301189]

    Laboratory literature summary: Vasoactive intestinal peptide in the gut. Physiology and pathology. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  781. Itoh S et al. (1985). Antidipsogenic action of vasoactive intestinal peptide in the rat [PMID: 3837859]

    Laboratory literature summary: Antidipsogenic action of vasoactive intestinal peptide in the rat. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  782. Xin Z et al. (1997). Vasoactive intestinal peptide stimulates p59fyn kinase activity in murine thymocytes [PMID: 9396055]

    Laboratory literature summary: Vasoactive intestinal peptide stimulates p59fyn kinase activity in murine thymocytes. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  783. Wood CL et al. (1982). Effect of vasoactive intestinal polypeptide on glycogen metabolism in rat hepatocytes [PMID: 6801998]

    Laboratory literature summary: Effect of vasoactive intestinal polypeptide on glycogen metabolism in rat hepatocytes. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  784. Shaffer MM et al. (1986). Autoradiographic visualization of CNS receptors for vasoactive intestinal peptide [PMID: 3016682]

    Laboratory literature summary: Autoradiographic visualization of CNS receptors for vasoactive intestinal peptide. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  785. Paul S et al. (1990). Affinity chromatography of catalytic autoantibody to vasoactive intestinal peptide [PMID: 2380555]

    Laboratory literature summary: Affinity chromatography of catalytic autoantibody to vasoactive intestinal peptide. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  786. Mody R et al. (1994). Spontaneous hydrolysis of vasoactive intestinal peptide in neutral aqueous solution [PMID: 7896502]

    Laboratory literature summary: Spontaneous hydrolysis of vasoactive intestinal peptide in neutral aqueous solution. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  787. Kawatani M et al. (1985). Depolarization and muscarinic excitation induced in a sympathetic ganglion by… [PMID: 3895438]

    Laboratory literature summary: Depolarization and muscarinic excitation induced in a sympathetic ganglion by vasoactive intestinal polypeptide. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  788. Maxwell DL et al. (1990). Ventilatory effects of substance P, vasoactive intestinal peptide, and nitroprusside… [PMID: 1690202]

    Laboratory literature summary: Ventilatory effects of substance P, vasoactive intestinal peptide, and nitroprusside in research subjects. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  789. Cutz E et al. (1978). Release of vasoactive intestinal polypeptide in mast cells by histamine liberators [PMID: 81468]

    Laboratory literature summary: Release of vasoactive intestinal polypeptide in mast cells by histamine liberators. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  790. Mikkelsen JD et al. (1988). Vasoactive intestinal peptide in the hypothalamohypophysial system of the Mongolian gerbil [PMID: 3062045]

    Laboratory literature summary: Vasoactive intestinal peptide in the hypothalamohypophysial system of the Mongolian gerbil. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  791. Robichon A et al. (1987). Chemical modification of guanidinium groups of vasoactive intestinal peptide [PMID: 3028489]

    Laboratory literature summary: Chemical modification of guanidinium groups of vasoactive intestinal peptide. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  792. Porter JP et al. (1985). Vasoactive intestinal peptide in the regulation of renin secretion [PMID: 3893159]

    Laboratory literature summary: Vasoactive intestinal peptide in the regulation of renin secretion. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  793. Misbin RI et al. (1982). Uptake of vasoactive intestinal peptide by rat liver [PMID: 7051851]

    Laboratory literature summary: Uptake of vasoactive intestinal peptide by rat liver. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  794. Nagy G et al. (1988). Autocrine control of prolactin secretion by vasoactive intestinal peptide [PMID: 3335213]

    Laboratory literature summary: Autocrine control of prolactin secretion by vasoactive intestinal peptide. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  795. Akasu T et al. (1986). Vasoactive intestinal polypeptide depolarizations in cat bladder parasympathetic ganglia [PMID: 3746700]

    Laboratory literature summary: Vasoactive intestinal polypeptide depolarizations in cat bladder parasympathetic ganglia. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  796. Cunningham LA et al. (1988). Vasoactive intestinal peptide stimulates adrenal aldosterone and corticosterone secretion [PMID: 3359977]

    Laboratory literature summary: Vasoactive intestinal peptide stimulates adrenal aldosterone and corticosterone secretion. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  797. Arnaout MA et al. (1986). Vasoactive intestinal polypeptide is synthesized in anterior pituitary tissue [PMID: 3769861]

    Laboratory literature summary: Vasoactive intestinal polypeptide is synthesized in anterior pituitary tissue. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  798. Modlin IM et al. (1979). Release of vasoactive intestinal polypeptide from the pancreas [PMID: 538648]

    Laboratory literature summary: Release of vasoactive intestinal polypeptide from the pancreas. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  799. Paul S et al. (1985). Autoantibody to vasoactive intestinal peptide in research subjects circulation [PMID: 3839670]

    Laboratory literature summary: Autoantibody to vasoactive intestinal peptide in research subjects circulation. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  800. Machová J (1987). Actions of vasoactive intestinal polypeptide in superior cervical ganglion of the cat [PMID: 3587527]

    Laboratory literature summary: Actions of vasoactive intestinal polypeptide in superior cervical ganglion of the cat. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  801. Dey RD et al. (1993). Origin of galanin in nerves of cat airways and colocalization with vasoactive… [PMID: 7689936]

    Laboratory literature summary: Origin of galanin in nerves of cat airways and colocalization with vasoactive intestinal peptide. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  802. Viron B et al. (1989). Plasma vasoactive intestinal peptide in uremic research subjects [PMID: 2722282]

    Laboratory literature summary: Plasma vasoactive intestinal peptide in uremic research subjects. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  803. Keltz TN et al. (1980). Degradation of vasoactive intestinal polypeptide by tissue homogenates [PMID: 7356489]

    Laboratory literature summary: Degradation of vasoactive intestinal polypeptide by tissue homogenates. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  804. Okumura N et al. (1994). Vasoactive intestinal peptide induces tyrosine phosphorylation in PC12h cells [PMID: 7822252]

    Laboratory literature summary: Vasoactive intestinal peptide induces tyrosine phosphorylation in PC12h cells. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  805. Mitchell CH et al. (1976). Intractable watery diarrhea, ganglioneuroblastoma, and vasoactive intestinal peptide [PMID: 957001]

    Laboratory literature summary: Intractable watery diarrhea, ganglioneuroblastoma, and vasoactive intestinal peptide. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  806. Durham JH et al. (1987). Vasoactive intestinal peptide stimulates alkali excretion in turtle urinary bladder [PMID: 2436484]

    Laboratory literature summary: Vasoactive intestinal peptide stimulates alkali excretion in turtle urinary bladder. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  807. Taylor AR et al. (1977). Adrenal oncology research models secreting vasoactive intestinal peptide and noradrenaline [PMID: 596587]

    Laboratory literature summary: Adrenal oncology research models secreting vasoactive intestinal peptide and noradrenaline. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  808. Kaplan SJ et al. (1980). Vasoactive intestinal peptide secreting tumors of childhood [PMID: 6101297]

    Laboratory literature summary: Vasoactive intestinal peptide secreting tumors of childhood. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  809. Williams JT et al. (1979). Vasoactive intestinal polypeptide excites neurones of the myenteric plexus [PMID: 487147]

    Laboratory literature summary: Vasoactive intestinal polypeptide excites neurones of the myenteric plexus. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  810. Raingeaud J et al. (1996). Production, analysis and bioactivity of recombinant vasoactive intestinal peptide analogs [PMID: 8725006]

    Laboratory literature summary: Production, analysis and bioactivity of recombinant vasoactive intestinal peptide analogs. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  811. Hachisu M et al. (1991). Enzymatic degradation of helodermin and vasoactive intestinal polypeptide [PMID: 1652635]

    Laboratory literature summary: Enzymatic degradation of helodermin and vasoactive intestinal polypeptide. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  812. Chayvialle JA et al. (1980). Release of vasoactive intestinal peptide by distention of the proximal stomach in dogs [PMID: 7429339]

    Laboratory literature summary: Release of vasoactive intestinal peptide by distention of the proximal stomach in dogs. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  813. Jivegård L et al. (1989). Vasoactive intestinal peptide in the normal and inflamed feline gallbladder [PMID: 2756154]

    Laboratory literature summary: Vasoactive intestinal peptide in the normal and inflamed feline gallbladder. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  814. Heistad DD et al. (1980). Effect of acetylcholine and vasoactive intestinal peptide on cerebral blood flow [PMID: 7396021]

    Laboratory literature summary: Effect of acetylcholine and vasoactive intestinal peptide on cerebral blood flow. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  815. McCulloch J et al. (1983). A functional role for vasoactive intestinal polypeptide in anterior cingulate cortex [PMID: 6877366]

    Laboratory literature summary: A functional role for vasoactive intestinal polypeptide in anterior cingulate cortex. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  816. Shreeve SM et al. (1996). Vasoactive intestinal peptide activates both Gs and Gi in lung [PMID: 8993433]

    Laboratory literature summary: Vasoactive intestinal peptide activates both Gs and Gi in lung. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  817. Sycamnias J et al. (2009). A case of vasoactive intestinal polypeptideoma [PMID: 19652683]

    Laboratory literature summary: A case of vasoactive intestinal polypeptideoma. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  818. Luine VN et al. (1984). Activation of choline acetyltransferase by vasoactive intestinal peptide [PMID: 6321660]

    Laboratory literature summary: Activation of choline acetyltransferase by vasoactive intestinal peptide. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  819. Porter JP et al. (1982). Stimulation of renin secretion by vasoactive intestinal peptide [PMID: 7051858]

    Laboratory literature summary: Stimulation of renin secretion by vasoactive intestinal peptide. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  820. Jégou S et al. (1988). Regional distribution of vasoactive intestinal peptide in brains from normal and… [PMID: 3226955]

    Laboratory literature summary: Regional distribution of vasoactive intestinal peptide in brains from normal and neurodegeneration research models subjects. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  821. Gu J et al. (1983). Vasoactive intestinal polypeptide in the normal and unstable bladder [PMID: 6360296]

    Laboratory literature summary: Vasoactive intestinal polypeptide in the normal and unstable bladder. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  822. Bloom SR (1975). Proceedings: Vasoactive intestinal peptide and the Verner-Morrison syndrome [PMID: 166903]

    Laboratory literature summary: Proceedings: Vasoactive intestinal peptide and the Verner-Morrison syndrome. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  823. Wesley JR et al. (1982). A new syndrome of symptomatic cutaneous mastocytoma producing vasoactive intestinal… [PMID: 6800875]

    Laboratory literature summary: A new syndrome of symptomatic cutaneous mastocytoma producing vasoactive intestinal polypeptide. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  824. Sekizawa K et al. (1988). Modulation of cholinergic neurotransmission by vasoactive intestinal peptide in ferret… [PMID: 2841273]

    Laboratory literature summary: Modulation of cholinergic neurotransmission by vasoactive intestinal peptide in ferret trachea. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  825. Morice AH et al. (1984). Vasoactive intestinal peptide as a bronchodilator in asthmatic subjects [PMID: 6382197]

    Laboratory literature summary: Vasoactive intestinal peptide as a bronchodilator in asthmatic subjects. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  826. Polak JM et al. (1975). Proceedings: Vasoactive intestinal peptide characteristics in research subjects gut [PMID: 1107177]

    Laboratory literature summary: Proceedings: Vasoactive intestinal peptide characteristics in research subjects gut. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  827. Rigel DF et al. (1991). Vasoactive intestinal polypeptide enhances automaticity of supraventricular pacemakers… [PMID: 1877672]

    Laboratory literature summary: Vasoactive intestinal polypeptide enhances automaticity of supraventricular pacemakers in anesthetized dogs. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  828. Morgan CW et al. (1999). Vasoactive intestinal polypeptide in sacral primary sensory pathways in the cat [PMID: 10320218]

    Laboratory literature summary: Vasoactive intestinal polypeptide in sacral primary sensory pathways in the cat. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  829. Lam KS et al. (1989). Vasoactive intestinal peptide in the anterior pituitary is increased in hypothyroidism [PMID: 2912685]

    Laboratory literature summary: Vasoactive intestinal peptide in the anterior pituitary is increased in hypothyroidism. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  830. Ito O et al. (1991). Vasoactive intestinal polypeptide precursors have highly potent bronchodilatory activity [PMID: 2052489]

    Laboratory literature summary: Vasoactive intestinal polypeptide precursors have highly potent bronchodilatory activity. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  831. Blitz W et al. (1983). Regional vascular influences of vasoactive intestinal polypeptide [PMID: 6669940]

    Laboratory literature summary: Regional vascular influences of vasoactive intestinal polypeptide. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  832. Eng J et al. (1989). Purification of neuropeptides: cholecystokinin and vasoactive intestinal peptide [PMID: 2725305]

    Laboratory literature summary: Purification of neuropeptides: cholecystokinin and vasoactive intestinal peptide. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  833. Weinstock JV et al. (1990). Detection of vasoactive intestinal peptide and localization of its mRNA within… [PMID: 2297792]

    Laboratory literature summary: Detection of vasoactive intestinal peptide and localization of its mRNA within granulomas of murine schistosomiasis. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  834. Zhu J et al. (2011). [Progress of studies on regulative effect of acupuncture on activities of vasoactive… [PMID: 22379794]

    Laboratory literature summary: [Progress of studies on regulative effect of acupuncture on activities of vasoactive intestinal peptide]. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  835. Konturek SJ et al. (1976). Comparison of vasoactive intestinal peptide and secretin in stimulation of pancreatic… [PMID: 1255530]

    Laboratory literature summary: Comparison of vasoactive intestinal peptide and secretin in stimulation of pancreatic secretion. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  836. Suzuki R et al. (1983). Vasoactive intestinal peptide and cholinergic neurotransmission in the ciliary muscle [PMID: 6826329]

    Laboratory literature summary: Vasoactive intestinal peptide and cholinergic neurotransmission in the ciliary muscle. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  837. Funakoshi A et al. (1989). Vasoactive intestinal polypeptide stimulates cholecystokinin secretion in perfused rat… [PMID: 2711376]

    Laboratory literature summary: Vasoactive intestinal polypeptide stimulates cholecystokinin secretion in perfused rat duodenum. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  838. Okada K et al. (1995). Vasoactive intestinal contractor as a genesis of renal hypertension [PMID: 7723902]

    Laboratory literature summary: Vasoactive intestinal contractor as a genesis of renal hypertension. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  839. Kimata H et al. (1994). Vasoactive intestinal peptide specifically induces research subjects IgA1 and IgA2… [PMID: 7522170]

    Laboratory literature summary: Vasoactive intestinal peptide specifically induces research subjects IgA1 and IgA2 production. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  840. Calam J et al. (1983). Effects of vasoactive intestinal polypeptide on renal function in man [PMID: 6363677]

    Laboratory literature summary: Effects of vasoactive intestinal polypeptide on renal function in man. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  841. Paul S et al. (1991). Cleavage of vasoactive intestinal peptide at multiple sites by autoantibodies [PMID: 1874750]

    Laboratory literature summary: Cleavage of vasoactive intestinal peptide at multiple sites by autoantibodies. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  842. D'Amato M et al. (1992). Release of vasoactive intestinal polypeptide from the rat gastric fundus [PMID: 1352721]

    Laboratory literature summary: Release of vasoactive intestinal polypeptide from the rat gastric fundus. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  843. Fuortes M et al. (1988). Release of vasoactive intestinal peptide during hyperdynamic sepsis in dogs [PMID: 3187902]

    Laboratory literature summary: Release of vasoactive intestinal peptide during hyperdynamic sepsis in dogs. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  844. Savage MV et al. (1990). Cystic fibrosis, vasoactive intestinal polypeptide, and active cutaneous vasodilation [PMID: 1706332]

    Laboratory literature summary: Cystic fibrosis, vasoactive intestinal polypeptide, and active cutaneous vasodilation. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  845. Rodríguez-Henche N et al. (1994). Characterization of vasoactive intestinal peptide receptors in research subjects liver [PMID: 8148398]

    Laboratory literature summary: Characterization of vasoactive intestinal peptide receptors in research subjects liver. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  846. Sninsky CA et al. (1983). Myoelectric effects of vasoactive intestinal peptide on rabbit small intestine [PMID: 6849393]

    Laboratory literature summary: Myoelectric effects of vasoactive intestinal peptide on rabbit small intestine. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  847. Sakakibara H et al. (1994). Characterization of vasoactive intestinal peptide receptors on rat alveolar macrophages [PMID: 7943252]

    Laboratory literature summary: Characterization of vasoactive intestinal peptide receptors on rat alveolar macrophages. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  848. Samson WK et al. (1980). In vitro stimulation of prolactin release by vasoactive intestinal peptide [PMID: 7301635]

    Laboratory literature summary: In vitro stimulation of prolactin release by vasoactive intestinal peptide. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  849. Hart R et al. (1988). [Vasoactive intestinal polypeptide influences research subjects immunoglobulin secretion] [PMID: 3366076]

    Laboratory literature summary: [Vasoactive intestinal polypeptide influences research subjects immunoglobulin secretion]. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  850. Camilleri M et al. (1981). Effects of vasoactive intestinal peptide and pancreatic polypeptide in rabbit intestine [PMID: 6257593]

    Laboratory literature summary: Effects of vasoactive intestinal peptide and pancreatic polypeptide in rabbit intestine. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  851. Cugini P et al. (1990). Vasoactive intestinal peptide is a biorhythmic variable of research subjects blood [PMID: 2291024]

    Laboratory literature summary: Vasoactive intestinal peptide is a biorhythmic variable of research subjects blood. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  852. Falsetti L et al. (1989). Vasoactive intestinal polypeptide loses its prolactin-releasing activity in menopausal… [PMID: 2606965]

    Laboratory literature summary: Vasoactive intestinal polypeptide loses its prolactin-releasing activity in menopausal research subjects. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  853. Sagor GR et al. (1981). Release of vasoactive intestinal peptide in the dumping syndrome [PMID: 6780101]

    Laboratory literature summary: Release of vasoactive intestinal peptide in the dumping syndrome. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  854. Kiso T et al. (1994). Characterization of vasoactive intestinal peptide receptors in canine liver membranes [PMID: 8304967]

    Laboratory literature summary: Characterization of vasoactive intestinal peptide receptors in canine liver membranes. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  855. Hohmann EL et al. (1984). Functional receptors for vasoactive intestinal peptide on research subjects oncology… [PMID: 6323142]

    Laboratory literature summary: Functional receptors for vasoactive intestinal peptide on research subjects oncology research models cells. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  856. Kerins C et al. (1973). Hyperglycemic and glycogenolytic effects of vasoactive intestinal polypeptide [PMID: 4691998]

    Laboratory literature summary: Hyperglycemic and glycogenolytic effects of vasoactive intestinal polypeptide. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  857. Anderson FL et al. (1993). Release of vasoactive intestinal peptide and neuropeptide Y from canine heart [PMID: 8214133]

    Laboratory literature summary: Release of vasoactive intestinal peptide and neuropeptide Y from canine heart. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  858. Virgolini I et al. (1998). Location of a VIPoma by iodine-123-vasoactive intestinal peptide scintigraphy [PMID: 9744346]

    Laboratory literature summary: Location of a VIPoma by iodine-123-vasoactive intestinal peptide scintigraphy. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  859. Epelbaum J et al. (1979). Vasoactive intestinal peptide inhibits release of somatostatin from hypothalamus in vitro [PMID: 510382]

    Laboratory literature summary: Vasoactive intestinal peptide inhibits release of somatostatin from hypothalamus in vitro. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  860. Pacheco-Cano MT et al. (1990). Vasoactive intestinal polypeptide induces REM recovery in insomniac forebrain lesioned… [PMID: 2267473]

    Laboratory literature summary: Vasoactive intestinal polypeptide induces REM recovery in insomniac forebrain lesioned cats. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  861. Duggan KA et al. (1989). Sodium depletion decreases hepatic metabolism of vasoactive intestinal peptide in the… [PMID: 2621618]

    Laboratory literature summary: Sodium depletion decreases hepatic metabolism of vasoactive intestinal peptide in the rabbit. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  862. McCulloch J et al. (1980). Cerebral circulatory and metabolic effects of vasoactive intestinal polypeptide [PMID: 7377315]

    Laboratory literature summary: Cerebral circulatory and metabolic effects of vasoactive intestinal polypeptide. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  863. Smith ER et al. (1984). Effects of vasoactive intestinal peptide on canine prostatic contraction and secretion [PMID: 6388351]

    Laboratory literature summary: Effects of vasoactive intestinal peptide on canine prostatic contraction and secretion. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  864. Ottaway CA (1992). Receptors for vasoactive intestinal peptide on murine lymphocytes turn over rapidly [PMID: 1318321]

    Laboratory literature summary: Receptors for vasoactive intestinal peptide on murine lymphocytes turn over rapidly. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  865. Reid AM et al. (1988). The effects of vasoactive intestinal polypeptide on gastric motility in the lamb [PMID: 2900891]

    Laboratory literature summary: The effects of vasoactive intestinal polypeptide on gastric motility in the lamb. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  866. Ozbay A et al. (2008). Adrenal pheochromocytoma producing vasoactive intestinal peptide and masking hypertension [PMID: 18663320]

    Laboratory literature summary: Adrenal pheochromocytoma producing vasoactive intestinal peptide and masking hypertension. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  867. Enyedi P et al. (1983). Failure of vasoactive intestinal peptide to stimulate aldosterone production [PMID: 6637524]

    Laboratory literature summary: Failure of vasoactive intestinal peptide to stimulate aldosterone production. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  868. Kane MG et al. (1983). Production of secretory diarrhea by intravenous infusion of vasoactive intestinal… [PMID: 6316136]

    Laboratory literature summary: Production of secretory diarrhea by intravenous infusion of vasoactive intestinal polypeptide. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  869. Tolentino PJ et al. (1996). Regulation of vasoactive intestinal polypeptide and galanin mRNA stabilities [PMID: 8804717]

    Laboratory literature summary: Regulation of vasoactive intestinal polypeptide and galanin mRNA stabilities. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  870. Siow Y et al. (1999). Effects of vasoactive intestinal peptide on research subjects sperm motility [PMID: 10445106]

    Laboratory literature summary: Effects of vasoactive intestinal peptide on research subjects sperm motility. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  871. Bojö L et al. (1993). Involvement of vasoactive intestinal polypeptide in gastric reflex relaxation [PMID: 8359202]

    Laboratory literature summary: Involvement of vasoactive intestinal polypeptide in gastric reflex relaxation. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  872. Unverferth DV et al. (1985). Effect of vasoactive intestinal polypeptide on the canine cardiovascular system [PMID: 4056568]

    Laboratory literature summary: Effect of vasoactive intestinal polypeptide on the canine cardiovascular system. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  873. Gonzales SM et al. (1995). Presence of vasoactive intestinal peptide receptor in the hen hypothalamus [PMID: 7627262]

    Laboratory literature summary: Presence of vasoactive intestinal peptide receptor in the hen hypothalamus. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  874. Sánchez V et al. (1991). Glycogenolytic effect of vasoactive intestinal peptide in the rat in vivo [PMID: 2065763]

    Laboratory literature summary: Glycogenolytic effect of vasoactive intestinal peptide in the rat in vivo. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  875. Schebalin M et al. (1977). Stimulation of insulin and glucagon secretion by vasoactive intestinal peptide [PMID: 320878]

    Laboratory literature summary: Stimulation of insulin and glucagon secretion by vasoactive intestinal peptide. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  876. Duggan KA et al. (1990). Regulation of vasoactive intestinal peptide release and metabolism by sodium [PMID: 1708016]

    Laboratory literature summary: Regulation of vasoactive intestinal peptide release and metabolism by sodium. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  877. Wolfe MM et al. (1983). Enteric release of vasoactive intestinal peptide after a peptone meal in the dog [PMID: 6828775]

    Laboratory literature summary: Enteric release of vasoactive intestinal peptide after a peptone meal in the dog. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  878. Wechsung E et al. (1994). Effect of vasoactive intestinal polypeptide on porcine gastrointestinal electrical… [PMID: 7700839]

    Laboratory literature summary: Effect of vasoactive intestinal polypeptide on porcine gastrointestinal electrical activity. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  879. Paul S et al. (1987). Characterization of receptors for vasoactive intestinal peptide solubilized from the lung [PMID: 3025200]

    Laboratory literature summary: Characterization of receptors for vasoactive intestinal peptide solubilized from the lung. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  880. Low AM et al. (1997). Mobilization of internal Ca2+ by vasoactive intestinal polypeptide in endothelial cells [PMID: 9473140]

    Laboratory literature summary: Mobilization of internal Ca2+ by vasoactive intestinal polypeptide in endothelial cells. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  881. Fournier A et al. (1988). Conformational analysis of vasoactive intestinal peptide and related fragments [PMID: 3389647]

    Laboratory literature summary: Conformational analysis of vasoactive intestinal peptide and related fragments. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  882. Hattori Y et al. (1992). Glibenclamide does not block arterial relaxation caused by vasoactive intestinal… [PMID: 1499652]

    Laboratory literature summary: Glibenclamide does not block arterial relaxation caused by vasoactive intestinal polypeptide. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  883. Davis JP et al. (1987). Trigeminal ganglion cells cocultured with gut express vasoactive intestinal peptide [PMID: 3500079]

    Laboratory literature summary: Trigeminal ganglion cells cocultured with gut express vasoactive intestinal peptide. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  884. Itoh S et al. (1988). Effect of vasoactive intestinal peptide on dopaminergic system in the rat brain [PMID: 3375138]

    Laboratory literature summary: Effect of vasoactive intestinal peptide on dopaminergic system in the rat brain. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  885. Gardner DF et al. (1985). Preferential binding of vasoactive intestinal peptide to hepatic nonparenchymal cells [PMID: 2988343]

    Laboratory literature summary: Preferential binding of vasoactive intestinal peptide to hepatic nonparenchymal cells. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  886. Wang Y et al. (1995). Purification and structural characterization of vasoactive intestinal polypeptide from… [PMID: 7781967]

    Laboratory literature summary: Purification and structural characterization of vasoactive intestinal polypeptide from the trout and bowfin. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  887. Jensen RJ (1993). Effects of vasoactive intestinal peptide on ganglion cells in the rabbit retina [PMID: 8424925]

    Laboratory literature summary: Effects of vasoactive intestinal peptide on ganglion cells in the rabbit retina. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  888. Gold MR (1982). The effects of vasoactive intestinal peptide on neuromuscular transmission in the frog [PMID: 6288927]

    Laboratory literature summary: The effects of vasoactive intestinal peptide on neuromuscular transmission in the frog. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  889. Nandiwada PA et al. (1985). Pulmonary vasodilator responses to vasoactive intestinal peptide in the cat [PMID: 3997734]

    Laboratory literature summary: Pulmonary vasodilator responses to vasoactive intestinal peptide in the cat. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  890. Bernhard W et al. (1989). Degradation of vasoactive intestinal peptide by isolated, ventilated, and perfused rat… [PMID: 2515970]

    Laboratory literature summary: Degradation of vasoactive intestinal peptide by isolated, ventilated, and perfused rat lungs. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  891. Bouder TG et al. (1988). Effects of vasoactive intestinal peptide on vascular conductance are unaffected by… [PMID: 3202229]

    Laboratory literature summary: Effects of vasoactive intestinal peptide on vascular conductance are unaffected by anesthesia. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  892. Nagashima F et al. (1993). Silent mixed ganglioneuroma/pheochromocytoma which produces a vasoactive intestinal… [PMID: 8495050]

    Laboratory literature summary: Silent mixed ganglioneuroma/pheochromocytoma which produces a vasoactive intestinal polypeptide. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  893. Graham DY et al. (1975). Islet cell carcinoma, pancreatic cholera, and vasoactive intestinal peptide [PMID: 173221]

    Laboratory literature summary: Islet cell carcinoma, pancreatic cholera, and vasoactive intestinal peptide. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  894. Robberecht P et al. (1979). Specificity of receptors to vasoactive intestinal peptide in guinea pig brain [PMID: 226824]

    Laboratory literature summary: Specificity of receptors to vasoactive intestinal peptide in guinea pig brain. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  895. Suzuki H et al. (1995). Encapsulation of vasoactive intestinal peptide into liposomes: effects on vasodilation… [PMID: 7674836]

    Laboratory literature summary: Encapsulation of vasoactive intestinal peptide into liposomes: effects on vasodilation in vivo. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  896. Chihara K et al. (1984). Stimulation of growth hormone by vasoactive intestinal polypeptide in acromegaly [PMID: 6417157]

    Laboratory literature summary: Stimulation of growth hormone by vasoactive intestinal polypeptide in acromegaly. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  897. Frase LL et al. (1984). Effect of vasoactive intestinal polypeptide infusion on cardiovascular function in man [PMID: 11540860]

    Laboratory literature summary: Effect of vasoactive intestinal polypeptide infusion on cardiovascular function in man. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  898. Wei EP et al. (1980). Mechanism of action of vasoactive intestinal polypeptide on cerebral arterioles [PMID: 7446750]

    Laboratory literature summary: Mechanism of action of vasoactive intestinal polypeptide on cerebral arterioles. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  899. Nordlind K et al. (1992). Protecting effects of vasoactive intestinal polypeptide on lymphocytes against metal… [PMID: 1597659]

    Laboratory literature summary: Protecting effects of vasoactive intestinal polypeptide on lymphocytes against metal toxicity. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  900. Cuervo L et al. (1994). Immunoreactivity to chromogranin and to vasoactive intestinal peptide in a canine… [PMID: 7836575]

    Laboratory literature summary: Immunoreactivity to chromogranin and to vasoactive intestinal peptide in a canine phaeochromocytoma. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  901. Long RG et al. (1981). Clinicopathological study of pancreatic and ganglioneuroblastoma tumours secreting… [PMID: 6786616]

    Laboratory literature summary: Clinicopathological study of pancreatic and ganglioneuroblastoma tumours secreting vasoactive intestinal polypeptide (vipomas). Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  902. Altiere RJ et al. (1983). Relaxant effects of vasoactive intestinal peptide and bethanechol in cat… [PMID: 6138270]

    Laboratory literature summary: Relaxant effects of vasoactive intestinal peptide and bethanechol in cat intrapulmonary artery. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  903. Fahrenkrug J et al. (1982). Nervous release of vasoactive intestinal polypeptide from the feline uterus:… [PMID: 7153911]

    Laboratory literature summary: Nervous release of vasoactive intestinal polypeptide from the feline uterus: pharmacological characteristics. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  904. Venugopalan CS et al. (1984). Effect of vasoactive intestinal peptide on vagally mediated tracheal pouch relaxation [PMID: 6463427]

    Laboratory literature summary: Effect of vasoactive intestinal peptide on vagally mediated tracheal pouch relaxation. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  905. Frawley LS et al. (1981). Stimulation of prolactin secretion in rhesus monkeys by vasoactive intestinal polypeptide [PMID: 7266772]

    Laboratory literature summary: Stimulation of prolactin secretion in rhesus monkeys by vasoactive intestinal polypeptide. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  906. Rolandi E et al. (1987). Possible role of vasoactive intestinal polypeptide on prolactin release during… [PMID: 3436618]

    Laboratory literature summary: Possible role of vasoactive intestinal polypeptide on prolactin release during suckling in lactating research subjects. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  907. Qiu JF et al. (2007). [Protective effects of vasoactive intestinal peptide on septic shock rats] [PMID: 17498382]

    Laboratory literature summary: [Protective effects of vasoactive intestinal peptide on septic shock rats]. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  908. Seilicovich A et al. (1991). Possible role of vasoactive intestinal peptide in the hyperprolactinemia induced by… [PMID: 2047543]

    Laboratory literature summary: Possible role of vasoactive intestinal peptide in the hyperprolactinemia induced by ethanol. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  909. Larsson LI et al. (1979). On the immunocytochemical localization of the vasoactive intestinal polypeptide [PMID: 479555]

    Laboratory literature summary: On the immunocytochemical localization of the vasoactive intestinal polypeptide. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  910. Shaar CJ et al. (1979). Effect of vasoactive intestinal polypeptide on prolactin release in vitro [PMID: 537469]

    Laboratory literature summary: Effect of vasoactive intestinal polypeptide on prolactin release in vitro. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  911. Wang W et al. (2007). [Immunoregulation of vasoactive intestinal peptide on rat Leydig cells] [PMID: 17618557]

    Laboratory literature summary: [Immunoregulation of vasoactive intestinal peptide on rat Leydig cells]. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  912. Gjerris A et al. (1984). Catecholamines and vasoactive intestinal polypeptide in cerebrospinal fluid in depression [PMID: 6464828]

    Laboratory literature summary: Catecholamines and vasoactive intestinal polypeptide in cerebrospinal fluid in depression. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  913. Zhang X et al. (1997). Effect of acupuncture on vasoactive intestinal peptide in ischemic cerebrovascular… [PMID: 10437215]

    Laboratory literature summary: Effect of acupuncture on vasoactive intestinal peptide in ischemic cerebrovascular diseases. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  914. Caniano DA et al. (1986). Functional response to vasoactive intestinal peptide in piebald lethal mice [PMID: 3794977]

    Laboratory literature summary: Functional response to vasoactive intestinal peptide in piebald lethal mice. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  915. Nexø E et al. (1987). Salivary secretion of rat haptocorrin and amylase is stimulated by vasoactive… [PMID: 2435597]

    Laboratory literature summary: Salivary secretion of rat haptocorrin and amylase is stimulated by vasoactive intestinal polypeptide. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  916. Strunz UT et al. (1977). Lack of hepatic inactivation of canine vasoactive intestinal peptide [PMID: 892380]

    Laboratory literature summary: Lack of hepatic inactivation of canine vasoactive intestinal peptide. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  917. Revhaug A et al. (1985). Increased plasma levels of vasoactive intestinal polypeptide in pigs during endotoxinaemia [PMID: 3884342]

    Laboratory literature summary: Increased plasma levels of vasoactive intestinal polypeptide in pigs during endotoxinaemia. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  918. Itoh T et al. (1985). Mechanisms of vasodilation induced by vasoactive intestinal polypeptide in rabbit… [PMID: 2992292]

    Laboratory literature summary: Mechanisms of vasodilation induced by vasoactive intestinal polypeptide in rabbit mesenteric artery. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  919. Guijarro L et al. (1989). Solubilization of active and stable receptors for vasoactive intestinal peptide from… [PMID: 2541470]

    Laboratory literature summary: Solubilization of active and stable receptors for vasoactive intestinal peptide from rat liver. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  920. Fukuda M et al. (1981). Localization of vasoactive intestinal polypeptide and neurotensin immunoreactivities… [PMID: 7028400]

    Laboratory literature summary: Localization of vasoactive intestinal polypeptide and neurotensin immunoreactivities in the avian retina. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  921. Goetzl EJ et al. (1989). Unique pattern of cleavage of vasoactive intestinal peptide by research subjects… [PMID: 2654011]

    Laboratory literature summary: Unique pattern of cleavage of vasoactive intestinal peptide by research subjects lymphocytes. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  922. Unverferth DV et al. (1986). Research subjects and canine ventricular vasoactive intestinal polypeptide: decrease… [PMID: 3711722]

    Laboratory literature summary: research subjects and canine ventricular vasoactive intestinal polypeptide: decrease with heart failure. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  923. Lucia P et al. (1996). Early increase of vasoactive intestinal peptide in acute myocardial infarction [PMID: 8701862]

    Laboratory literature summary: Early increase of vasoactive intestinal peptide in acute myocardial infarction. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  924. Husain K et al. (2011). Mediastinal ganglioneuroblastoma-secreting vasoactive intestinal peptide causing… [PMID: 21684485]

    Laboratory literature summary: Mediastinal ganglioneuroblastoma-secreting vasoactive intestinal peptide causing secretory diarrhoea. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  925. Gonda T et al. (1995). Hyperplastic innervation of vasoactive intestinal peptide in research subjects… [PMID: 7579816]

    Laboratory literature summary: Hyperplastic innervation of vasoactive intestinal peptide in research subjects gallbladder with cholelithiasis. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  926. Shen ZJ (2005). [Progress in the studies of vasoactive intestinal polypeptide] [PMID: 16078660]

    Laboratory literature summary: [Progress in the studies of vasoactive intestinal polypeptide]. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  927. Yang J et al. (2007). [Neuroprotective effects of vasoactive intestinal peptide against rat cerebral ischemia] [PMID: 18158987]

    Laboratory literature summary: [Neuroprotective effects of vasoactive intestinal peptide against rat cerebral ischemia]. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  928. Shibusawa K (1983). [Koro in India. Vasoactive intestinal peptide hormone] [PMID: 6555410]

    Laboratory literature summary: [Koro in India. Vasoactive intestinal peptide hormone]. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  929. Mutt V (1981). Additional observations on cholecystokinin and the vasoactive intestinal polypeptide [PMID: 6283492]

    Laboratory literature summary: Additional observations on cholecystokinin and the vasoactive intestinal polypeptide. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  930. White RP (1987). Responses of research subjects basilar arteries to vasoactive intestinal polypeptide [PMID: 3475521]

    Laboratory literature summary: Responses of research subjects basilar arteries to vasoactive intestinal polypeptide. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  931. Scholar EM et al. (1991). Stimulation of oncology research models cell growth by vasoactive intestinal peptide [PMID: 2001545]

    Laboratory literature summary: Stimulation of oncology research models cell growth by vasoactive intestinal peptide. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  932. Dimaline R et al. (1979). Molecular variants of vasoactive intestinal polypeptide in dog, rat and hog [PMID: 529992]

    Laboratory literature summary: Molecular variants of vasoactive intestinal polypeptide in dog, rat and hog. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  933. Tsuji M et al. (1987). Laboratory research record on VIP (Vasoactive Intestinal ) [PMID: 3655491]

    PubMed laboratory record discussing VIP (Vasoactive Intestinal ) in a research context. Review the full methods and limitations on PubMed; research use only.

  934. Guan CX et al. (2002). [Effects of vasoactive intestinal peptide on chemotaxis of bronchial epithelial cells] [PMID: 11973586]

    Laboratory literature summary: [Effects of vasoactive intestinal peptide on chemotaxis of bronchial epithelial cells]. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  935. Konturek SJ et al. (1975). Comparison of secretin and vasoactive intestinal peptide on pancreatic secretion in dogs [PMID: 1132634]

    Laboratory literature summary: Comparison of secretin and vasoactive intestinal peptide on pancreatic secretion in dogs. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  936. Bardrum B et al. (1988). Release of oxytocin and vasopressin by intracerebroventricular vasoactive intestinal… [PMID: 3168920]

    Laboratory literature summary: Release of oxytocin and vasopressin by intracerebroventricular vasoactive intestinal polypeptide. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  937. Leonardi R et al. (1981). [Vasoactive intestinal polypeptide in digestive processes in the Verner Morrison syndrome] [PMID: 6265832]

    Laboratory literature summary: [Vasoactive intestinal polypeptide in digestive processes in the Verner Morrison syndrome]. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  938. Vytiska-Binstorfer E et al. (1987). [Stimulation of prolactin secretion by vasoactive intestinal peptide] [PMID: 3115863]

    Laboratory literature summary: [Stimulation of prolactin secretion by vasoactive intestinal peptide]. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  939. Dimaline R et al. (1980). Characterization and distribution of molecular variants of vasoactive intestinal… [PMID: 7014207]

    Laboratory literature summary: Characterization and distribution of molecular variants of vasoactive intestinal polypeptide. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  940. Shulkes A et al. (1987). Laboratory research record on VIP (Vasoactive Intestinal ) [PMID: 3651537]

    PubMed laboratory record discussing VIP (Vasoactive Intestinal ) in a research context. Review the full methods and limitations on PubMed; research use only.

  941. Yang J et al. (2009). [Vasoactive intestinal peptide enhances angiogenesis after focal cerebral ischemia] [PMID: 19403378]

    Laboratory literature summary: [Vasoactive intestinal peptide enhances angiogenesis after focal cerebral ischemia]. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  942. Gafvelin G et al. (1988). Isolation and characterization of a variant form of vasoactive intestinal polypeptide [PMID: 2843830]

    Laboratory literature summary: Isolation and characterization of a variant form of vasoactive intestinal polypeptide. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  943. Ernström U et al. (1995). Rescue of thymocytes from cell death by vasoactive intestinal peptide [PMID: 7659793]

    Laboratory literature summary: Rescue of thymocytes from cell death by vasoactive intestinal peptide. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  944. Frandsen EK et al. (1973). Lipolytic action of a newly isolated vasoactive intestinal polypeptide [PMID: 4714546]

    Laboratory literature summary: Lipolytic action of a newly isolated vasoactive intestinal polypeptide. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  945. Bolin DR et al. (1996). Comparison of cyclic and linear analogs of vasoactive intestinal peptide [PMID: 8874048]

    Laboratory literature summary: Comparison of cyclic and linear analogs of vasoactive intestinal peptide. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  946. Nilsson C et al. (1991). Epithelial cells purified from choroid plexus have receptors for vasoactive intestinal… [PMID: 1851455]

    Laboratory literature summary: Epithelial cells purified from choroid plexus have receptors for vasoactive intestinal polypeptide. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  947. Edvinsson L et al. (1979). Cerebral circulatory and metabolic effects of vasoactive intestinal polypeptide… [PMID: 113530]

    Laboratory literature summary: Cerebral circulatory and metabolic effects of vasoactive intestinal polypeptide [proceedings]. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  948. Jovanovic S et al. (2000). Developmental research context does not alter the response of uterine arteries to… [PMID: 10729319]

    Laboratory literature summary: developmental research context does not alter the response of uterine arteries to vasoactive intestinal polypeptide. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  949. Itoh H et al. (1990). Relaxation of isolated bovine coronary arteries by vasoactive intestinal peptide [PMID: 2384132]

    Laboratory literature summary: Relaxation of isolated bovine coronary arteries by vasoactive intestinal peptide. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  950. Rorstad OP et al. (1990). Selectivity for binding of peptide analogs to vascular receptors for vasoactive… [PMID: 2163020]

    Laboratory literature summary: Selectivity for binding of peptide analogs to vascular receptors for vasoactive intestinal peptide. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  951. Swift PG et al. (1975). Watery diarrhoea and ganglioneuroma with secretion of vasoactive intestinal peptide [PMID: 1211964]

    Laboratory literature summary: Watery diarrhoea and ganglioneuroma with secretion of vasoactive intestinal peptide. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  952. Bardrum B et al. (1987). Preferential release of oxytocin in response to vasoactive intestinal polypeptide in rats [PMID: 3796218]

    Laboratory literature summary: Preferential release of oxytocin in response to vasoactive intestinal polypeptide in rats. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  953. Opel H et al. (1988). Stimulation of prolactin release in turkeys by vasoactive intestinal peptide [PMID: 3353394]

    Laboratory literature summary: Stimulation of prolactin release in turkeys by vasoactive intestinal peptide. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  954. Achord JL (1986). Secretin, cholecystokinin, and vasoactive intestinal polypeptide in pancreatic cholera [PMID: 3019205]

    Laboratory literature summary: Secretin, cholecystokinin, and vasoactive intestinal polypeptide in pancreatic cholera. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  955. Ohkawa R (1990). [The effect of vasoactive intestinal peptide on the rat ovary] [PMID: 2170209]

    Laboratory literature summary: [The effect of vasoactive intestinal peptide on the rat ovary]. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  956. Milenov K et al. (1995). Effects of cholecystokinine on the gallbladder motility: interaction with somatostatin… [PMID: 8868369]

    Laboratory literature summary: Effects of cholecystokinine on the gallbladder motility: interaction with somatostatin and vasoactive intestinal peptide. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  957. Li X et al. (1990). [The relation of vasoactive intestinal peptide and acute hypoxia] [PMID: 2401169]

    Laboratory literature summary: [The relation of vasoactive intestinal peptide and acute hypoxia]. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  958. Riou F et al. (1981). [Hypnogenic properties of the vasoactive intestinal polypeptide in rats] [PMID: 6460548]

    Laboratory literature summary: [Hypnogenic properties of the vasoactive intestinal polypeptide in rats]. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  959. Zhag SL et al. (2007). [A case report of vasoactive intestinal Peptide tumors] [PMID: 17927869]

    Laboratory literature summary: [A case report of vasoactive intestinal Peptide tumors]. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  960. Sakio H (1983). [Study on the release of vasoactive intestinal polypeptide during hemorrhagic shock] [PMID: 6842817]

    Laboratory literature summary: [Study on the release of vasoactive intestinal polypeptide during hemorrhagic shock]. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  961. Bourgois B et al. (2004). [Intractable diarrhoea revealing a neuroblastoma hypersecreting the vasoactive… [PMID: 15051093]

    Laboratory literature summary: [Intractable diarrhoea revealing a neuroblastoma hypersecreting the vasoactive intestinal peptide]. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  962. Brunet J et al. (1988). [Metastatic neuroblastoma with secondary hypersecretion of vasoactive intestinal peptide] [PMID: 3200652]

    Laboratory literature summary: [Metastatic neuroblastoma with secondary hypersecretion of vasoactive intestinal peptide]. Consult the PubMed record for methods, models, and limitations. Presented for research literature review only

  963. Jakober B et al. (1984). [Hormone active oncology research models with production of vasoactive intestinal… [PMID: 6700414]

    Laboratory literature summary: [Hormone active oncology research models with production of vasoactive intestinal polypeptide]. 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 8 × 7 × .5 in
Size: No selection

5mg, 10mg

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 VIP (Vasoactive Intestinal Peptide)?

VIP is a neuropeptide composed of 28 amino acids. It is studied in research laboratories for its role in cellular signaling, receptor activity, and neuroendocrine pathways.

What is VIP used for in research?

VIP is used in research laboratories to investigate receptor binding, peptide signaling, and neuroendocrine mechanisms. It is not approved for human use.

Is VIP (Vasoactive Intestinal Peptide) Peptide approved or intended for human use?

No. VIP is strictly intended for research purposes only and is not approved by the FDA for human use.

Is VIP (Vasoactive Intestinal Peptide) Peptide FDA-approved for medical or clinical use?

No. VIP is not approved by the U.S. Food and Drug Administration for any medical, therapeutic, or diagnostic use.

In what form is VIP supplied?

VIP is supplied as a lyophilized (freeze-dried) peptide powder for use in controlled research laboratories.

How should VIP 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 VIP?

VIP is available in multiple vial sizes (e.g., 5mg, 10mg).

Is VIP (Vasoactive Intestinal Peptide) Peptide sold as a prescription product?

No prescription is required; however, it is sold strictly for research use only.

How is VIP 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 VIP 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/