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The many faces of VIP in neuroimmunology: a cytokine rather a neuropeptide

Pozo D, Delgado M2004The FASEB JournalJournal Article
10.1096/fj.03-1440hypPubMedFree full text
GastrointestinalHypothalamic-PituitaryImmune/InnateNeurological

Abstract

Neuroimmunomodulation has experienced an explosive growth not only in basic research, but expanding to the point that prospective clinical research could be now a reality. A crucial factor for the functioning of this intimate bidirectional network was the demonstration that the immune and neuroendocrine systems speak a mutual biochemical language. This implies 1 ) production of neuroendocrine hormones and neuropeptides by immune cells and of cytokines by neuroendocrine cells; 2 ) evidence for shared receptors on cells of the immune and neuroendocrine systems; 3 ) effect of neuroendocrine mediators on immune functions;and 4 ) effect of cytokines on the neuroendocrine system. This reduces traditional differences between neurotransmitters, hormones, and immune mediators and raises the following question: what can we now regard as immune or neuroendocrine? Vasoactive intestinal peptide (VIP) is one example of this paradigm. VIP has traditionally been classified as a neuropeptide/neurotransmitter based in its capacity to mediate and regulate neuronal functions. Recent work has demonstrated that VIP is produced by T cells, especially Th2 cells, and that through specific receptors it exerts immunological functions typically ascribed to Th2 cytokines in nervous and immune systems. Here, we postulate that instead of a neuropeptide, VIP could be fully considered a type 2 cytokine with a key role in neuroimmunology.—Pozo, D., Delgado, M. The many faces of VIP in neuroimmunology: a cytokine rather a neuropeptide? FASEBJ . 18, 1325–1334 (2004)

Cited By (6)

  • Mice lacking the VIP gene show airway hyperresponsiveness and airway inflammation, partially reversible by VIPAmerican Journal of Physiology-Lung Cellular and Molecular Physiology · 2006
  • Induction of alloantigen-specific human T regulatory cells by vasoactive intestinal peptideThe Journal of Immunology · 2009
  • Human Plasmacytoid Dendritic Cell Function: Inhibition of IFN-α Secretion and Modulation of Immune Phenotype by Vasoactive Intestinal PeptideThe Journal of Immunology · 2006
  • The absence of VPAC2 leads to aberrant antibody production in Aspergillus fumigatus sensitized and challenged micePeptides · 2011
  • Vasoactive intestinal peptide induces regulatory dendritic cells with therapeutic effects on autoimmune disordersProceedings of the National Academy of Sciences · 2005
  • Human VIP-α: an emerging biologic response modifier to treat primary pulmonary hypertensionExpert Review of Cardiovascular Therapy · 2005

References (4)

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