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Neuropeptide Y modulates the action of vasodilator agents in guinea-pig epicardial coronary arteries
Authors:S  rgio Gulbenkian  Lars Edvinsson  Ole Saetrum Opgaard  Angela Valen  a  John Wharton and Julia M Polak
Institution:

a Department of Cell Biology, Gulbenkian Institute of Science, Oeiras, Portugal

b Department of Internal Medicine, University Hospital of Lund, Lund, Sweden

c Department of Histochemistry, Royal Postgraduate Medical School, London, UK

Abstract:Recently, we have demonstrated that guinea-pig epicardial coronary arteries are supplied by numerous nerve fibres containing neuropeptide Y (NPY) immunoreactivity. However, examination of vasomotor responses revealed that NPY did not elicit a contractile response in these arteries. In contrast, acetylcholine (ACh), calcitonin gene-related peptide (CGRP), substance P and vasoactive intestinal polypeptide (VIP) all relaxed precontracted arteries. In the present study, we have used histochemical, immunohistochemical and in vitro pharmacological techniques, in order to further investigate the possible role of NPY in guinea-pig epicardial coronary arteries. A double-immunofluorescence staining technique revealed that CGRP and substance P were co-localized in nerve fibres distinct from those displaying NPY immunoreactivity. Furthermore, using a method combining immunofluorescence and histochemical techniques, we observed that putative cholinergic nerve fibres (identified by their acetylcholinesterase content) and NPY-immunoreactive nerve fibres are two different nerve populations. An in vitro pharmacological method demonstrated that NPY markedly inhibited the relaxant responses mediated by ACh, VIP, substance P and isoprenaline but had no effect on CGRP. These results suggest that NPY-containing nerves associated with guinea-pig epicardial coronary arteries may be predominantly involved in modulating the action of vasodilator agents.
Keywords:Neuropeptide Y  Vasoactive intestinal polypeptide  Calcitonin-gene related peptide  Substance P  Acetylcholine  Coronary innervation  Immunohistochemistry  In vitro pharmacology
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