DocumentCode
1582646
Title
Rutin-induced Endothelium-dependent Vasorelaxation in Rat Aortic Rings and the Underlying Mechanism
Author
Xia, Man-li ; Zhou, Xin-mei ; Yao, Hui ; Jiang, Hui-di ; Bruce, Iain C. ; Wei, Er-qing ; Xia, Qiang
Author_Institution
Sch. of Med., Zhejiang Univ., Hangzhou
fYear
2006
Firstpage
5595
Lastpage
5597
Abstract
The aim of the present study was to determine the possible mechanism by which rutin causes vasodilatation in isolated thoracic aorta rings from the rat. The effects of rutin on rings preconstricted with phenylephrine, with or without endothelium, were determined using an organ bath technique. The mechanism was explored by measuring the effects of the nitric oxide synthase inhibitor L-N(G)-nitroarginine methyl ester (L-NAME), the guanylyl cyclase inhibitor methylene blue, the cyclooxygenase inhibitor indomethacin, the ATP-sensitive K+ channel blocker glibenclamide and the beta-adrenoceptor antagonist propranolol. Rutin at the range of 10-160 mumol/L caused dose-dependent vasorelaxation in preconstricted endothelium-intact rings, but had no effect on rings without endothelium. The maximal response calculated from the vasorelaxation curves of rutin was 44.28 plusmn 7.48%. Pretreatment with L-NAME (0.1 mmol/L), methylene blue (10 mumol/L), glibenclamide (10 mmol/L) or indomethacin (10 mmol/L) attenuated the vasorelaxation induced by rutin in endothelium-intact rings. Glibenclamide (10 mmol/L) enhanced the vasorelaxation of rutin. Propranolol (10 mumol/L) did not block the effect of rutin. The results indicate that vasorelaxation is induced by rutin via the nitric oxide-guanylyl cyclase pathway and a prostaglandin-mediated mechanism, as well as activation of the ATP-sensitive potassium channel
Keywords
biochemistry; bioelectric phenomena; biomembrane transport; blood vessels; enzymes; haemodynamics; molecular biophysics; patient treatment; potassium; ATP-sensitive K+ channel blocker glibenclamide; K; cyclooxygenase inhibitor indomethacin; guanylyl cyclase inhibitor methylene blue; isolated thoracic aorta rings; nitric oxide synthase inhibitor L-N(G)-nitroarginine methyl ester; nitric oxide-guanylyl cyclase pathway; organ bath technique; p-adrenoceptor antagonist propranolol; phenylephrine; prostaglandin-mediated mechanism; rat; rat aortic rings; rutin-induced endothelium-dependent vasorelaxation; vasodilatation; Animals; Educational institutions; Hypertension; Inhibitors; Kirchhoff´s Law; Laboratories; Medical treatment; Pharmaceuticals; Physiology; Rats;
fLanguage
English
Publisher
ieee
Conference_Titel
Engineering in Medicine and Biology Society, 2005. IEEE-EMBS 2005. 27th Annual International Conference of the
Conference_Location
Shanghai
Print_ISBN
0-7803-8741-4
Type
conf
DOI
10.1109/IEMBS.2005.1615754
Filename
1615754
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