首页 | 本学科首页   官方微博 | 高级检索  
检索        


Geissoschizine methyl ether,an indole alkaloid extracted from Uncariae Ramulus et Uncus,is a potent vasorelaxant of isolated rat aorta
Authors:Yuzurihara Mitsutoshi  Ikarashi Yasushi  Goto Kazuhiro  Sakakibara Iwao  Hayakawa Terumasa  Sasaki Hiroshi
Institution:Kampo & Pharmacognosy Laboratories, Tsumura & Co., 3586 Yoshiwara, Ami-machi, Inashiki-gun 3586, Ibaraki 300-1192, Japan. yuzurihara_mitsutosh@mail.tsumura.co.jp
Abstract:Effects of geissoschizine methyl ether, an indole alkaloid isolated from the hook of Uncariae Ramulus et Uncus, on vascular responses were examined using isolated strips of rat aorta. Geissoschizine methyl ether (10(-7)-10(-4) M) relaxed norepinephrine (5x10(-8) M)-induced contraction in a dose-dependent manner. The potency (50% efficacy concentration, EC(50)=0.744 microM) was approximately 14 times greater than that (EC(50)=10.6 microM) of hirsutine, one of the indole alkaloids isolated from Uncariae Ramulus et Uncus that demonstrates a vasorelaxant effect by Ca(2+)-channel blocking. The vasorelaxant effect of geissoschizine methyl ether found at the lower concentrations (10(-7)-3x10(-6) M) on the norepinephrine-induced contraction was abolished by pretreatment with N(G)-nitro-L-arginine (10(-4) M), an inhibitor of nitric oxide synthesis, or by denuding aortas of endothelium, while the effects at the higher concentrations (10(-5)-10(-4) M) were not completely prevented by either N(G)-nitro-L-arginine and deendothelialization. Furthermore, geissoschizine methyl ether did not relax high K(+)-, Ca(2+)- and a Ca(2+)-channel agonist Bay K8644-induced contractions at the lower concentrations that markedly relaxed the norepinephrine-induced contractions, while the higher concentrations of geissoschizine methyl ether relaxed the high K(+)-, Ca(2+)- and Bay K8644-induced contractions. These results suggest that the vasorelaxant effect of geissoschizine methyl ether is composed of two different mechanisms: endothelial dependency with nitric oxide and endothelial independency with voltage-dependent Ca(2+)-channel blocking.
Keywords:Ca2+ channel  Endothelium  Geissoschizine methyl ether  Nitric oxide (NO)  Aorta  rat  Vasorelaxation
本文献已被 ScienceDirect PubMed 等数据库收录!
设为首页 | 免责声明 | 关于勤云 | 加入收藏

Copyright©北京勤云科技发展有限公司  京ICP备09084417号