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Therapeutic potential of vasoactive intestinal peptide and its receptors in neurological disorders

White C, Ji S, Cai H +2 more2010CNS & Neurological Disorders - Drug TargetsReview
10.2174/187152710793361595PubMed
GastrointestinalHypothalamic-PituitaryImmune/InnateNeurologicalRenalRespiratory/Sinus

Abstract

Vasoactive intestinal peptide (VIP) is a basic 28 amino acid peptide that binds to a member of the class II family of G protein-coupled receptors (GPCRs). It is widely expressed throughout the body and plays an important role in numerous biological functions. VIP acts via three different GPCRs: VPAC1, VPAC2, and PAC1, which have been identified in various tissues, including brain, lung, kidney, gastrointestinal tract, tongue, and also on immunocompetent cells such as macrophages and lymphocytes. There is mounting evidence that VIP expression and signaling is altered in numerous neurological disorders, and it is becoming apparent that VIP and its receptors could be therapeutic loci for the treatment of several pathological conditions of the central nervous system. In this review, we describe the pathology of several major neurological disorders and discuss the potential pharmacotherapeutic role of VIP and its receptors for the treatment of disorders such as Alzheimer’s disease, Parkinson’s disease, and Autism Spectrum Disorders.

Cited By (1)

  • Endogenous inhibition of hippocampal LTD and depotentiation by vasoactive intestinal peptide VPAC1 receptorsHippocampus · 2014

References (3)

  • Therapeutical approaches of vasoactive intestinal peptide as a pleiotropic immunomodulatorCurrent Pharmaceutical Design · 2007
  • Vasoactive intestinal peptide (VIP) prevents neurotoxicity in neuronal cultures: relevance to neuroprotection in Parkinson's disease1This manuscript is based on a poster presented at the Brain Research Interactive Symposium on “Neuropeptides at the Millennium”, Miami, October 1999.1Brain Research · 2000
  • Vasoactive Intestinal Peptide in Neurodevelopmental Disorders:Therapeutic PotentialCurrent Pharmaceutical Design · 2007

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