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Gamme d'année
1.
Braz. j. med. biol. res ; 28(11/12): 1207-16, Nov.-Dec. 1995. ilus, tab, graf
Article Dans Anglais | LILACS | ID: lil-161521

Résumé

Accumulating evidence shows the involvement of neuropeptides in cardiovascular control in mammals as well as non-mammalian species. Our own immunohistochemical studies indicate a sparse innervation only in cyclostomes, holostean fish and lungfish, a more extensive variation and distribution in elasmobranchs and teleosts, and a rich and varied innervation of the cardiovascular system in crocodiles and lizards. Vasoactive intestinal polypeptide (VIP), neuropeptide Y (NPY), gastrin releasing peptide (GRP) and tachykinins are present in most vertebrate groups. VIP is vasodilatory in the Atlantic cod (Gadus morhua) as in most mammalian species, but increases gut vascular resistance in the spiny dogfish (Squalus acanthias). NPY potentiates the effect of noradrenaline on skate (Raja rhina) coronary vessels, suggesting an interaction between adrenergic mechanisms and NPY early in evolution, but studies in the spiny dogfish and the crocodile also demonstrate different mechanisms for the action of NPY and adrenaline in some species. Bombesin/GRP increases flow to the gut in the spiny dogfish by an increase in somatic vascular resistance, while visceral resistance remains unchanged. In the caiman (Caiman crocodylus crocodylus) bombesin causes a shunting of blood from the lung to the gut. Substance P and other tachykinins in general increase flow to the gut, and on some occasions also increase somatic blood flow. Flow in the anastomosis of the crocodile (Crocodylus porosus) gut is increased by substance P. The results presented here are a review of several published and unpublished studies.


Sujets)
Animaux , Système cardiovasculaire/physiologie , Neuropeptides/physiologie , Bombésine/métabolisme , Bombésine/physiologie , Système cardiovasculaire/métabolisme , Poissons/physiologie , Alligators et crocodiles/physiologie , Neuropeptide Y/métabolisme , Neuropeptide Y/physiologie , Neuropeptides/métabolisme , Substance P/physiologie , Substance P/métabolisme , Tachykinines/métabolisme , Tachykinines/physiologie , Peptide vasoactif intestinal/métabolisme , Peptide vasoactif intestinal/physiologie
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