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Physiological significance of P2X receptor-mediated vasoconstriction in five different types of arteries in rats
Authors:Lu Li  Zhen-Hua Jia  Chao Chen  Cong Wei  Jian-Ke Han  Yi-Ling Wu  Lei-Ming Ren
Institution:(1) Department of Pharmacology, Institute of Chinese Integrative Medicine, Hebei Medical University, 361 East Zhong-shan Road, Shijiazhuang, 050017, Hebei, People’s Republic of China;(2) The Integration of Traditional and Western Medical Research Academy of Hebei Province, 238 Tianshan Street, Shijiazhuang, 050035, Hebei, People’s Republic of China;
Abstract:P2X1 receptors, the major subtype of P2X receptors in the vascular smooth muscle, are essential for α,β-methylene adenosine 5′-triphosphate (α,β-MeATP)-induced vasoconstriction. However, relative physiological significance of P2X1 receptor-regulated vasoconstriction in the different types of arteries in the rat is not clear as compared with α1-adrenoceptor-regulated vasoconstriction. In the present study, we found that vasoconstrictive responses to noncumulative administration of α,β-MeATP in the rat isolated mesenteric arteries were significantly smaller than those to single concentration administration of α,β-MeATP. Therefore, we firstly reported the characteristic of α,β-MeATP-regulated vasoconstrictions in rat tail, internal carotid, pulmonary, mesenteric arteries, and aorta using single concentration administration of α,β-MeATP. The rank order of maximal vasoconstrictions for α,β-MeATP (E max·α,β-MeATP) was the same as that of maximal vasoconstrictions for noradrenaline (E max·NA) in the internal carotid, pulmonary, mesenteric arteries, and aorta. Moreover, the value of (E max·α,β-MeATP/E max·KCl)/(E max·NA/E max·KCl) was 0.4 in each of the four arteries, but it was 0.8 in the tail artery. In conclusion, P2X1 receptor-mediated vasoconstrictions are equally important in rat internal carotid, pulmonary, mesenteric arteries, and aorta, but much greater in the tail artery, suggesting its special role in physiological function.
Keywords:α  β-Methylene ATP  Noradrenaline  P2X1 receptor  α1-Adrenoceptor  Isolated artery  Vasoconstriction  Rat
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