Literature DB >> 11858801

Mesaconitine-induced relaxation in rat aorta: involvement of Ca2+ influx and nitric-oxide synthase in the endothelium.

Mana Mitamura1, Syunji Horie, Masaru Sakaguchi, Akiyoshi Someya, Shizuko Tsuchiya, Johan Van de Voorde, Toshihiko Murayama, Kazuo Watanabe.   

Abstract

Aconiti tuber, roots of aconite (Aconitum japonicum), is an oriental herbal medicine used for centuries in Japan and China to improve the health of persons with a weak constitution and poor metabolism. We investigated the effects of mesaconitine, one of the aconite alkaloids in Aconiti tuber, on the contraction and free intracellular Ca2+ concentration ([Ca2+]i) level in isolated rat thoracic aorta. Mesaconitine at 30 microM inhibited 3 microM phenylephrine-induced contraction in the endothelium-intact, but not endothelium-denuded, aortic rings. The effect of mesaconitine was dependent on external Ca2+ concentrations. The relaxation induced by mesaconitine was abolished by N(omega)-nitro-L-arginine methyl ester (0.1 mM, an inhibitor of nitric-oxide synthase), as well as the relaxation induced by acetylcholine. Acetylcholine induced relaxation in two phases in our conditions; the initial phase was transient and external Ca2+ -independent, and the second phase was sustained and external Ca2+ -dependent. Treatment with 100 nM thapsigargin, which depleted intracellular Ca2+ stores, inhibited acetylcholine-induced, but not mesaconitine-induced, relaxation. Mesaconitine increased the [Ca2+]i level in endothelial cells by influx of Ca2+ from extracellular spaces. These findings suggest that mesaconitine-induced Ca2+ influx and activation of nitric-oxide synthase in endothelial cells and, thus, induced vasorelaxation in rat aorta.

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Year:  2002        PMID: 11858801     DOI: 10.1016/s0014-2999(01)01623-5

Source DB:  PubMed          Journal:  Eur J Pharmacol        ISSN: 0014-2999            Impact factor:   4.432


  9 in total

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Review 3.  A Review of Endothelium-Dependent and -Independent Vasodilation Induced by Phytochemicals in Isolated Rat Aorta.

Authors:  Marcela Knox; Raúl Vinet; Lida Fuentes; Bernardo Morales; José L Martínez
Journal:  Animals (Basel)       Date:  2019-08-29       Impact factor: 2.752

Review 4.  Neuropharmacological Effects of Mesaconitine: Evidence from Molecular and Cellular Basis of Neural Circuit.

Authors:  Zhihui Sun; Limin Yang; Lihong Zhao; Ranji Cui; Wei Yang
Journal:  Neural Plast       Date:  2020-08-21       Impact factor: 3.599

5.  Study on the Mechanism of Mesaconitine-Induced Hepatotoxicity in Rats Based on Metabonomics and Toxicology Network.

Authors:  Qian Chen; Kai Zhang; Mingjie Jiao; Jiakang Jiao; Dongling Chen; Yihui Yin; Jia Zhang; Fei Li
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6.  Inhibition of the INa/K and the activation of peak INa contribute to the arrhythmogenic effects of aconitine and mesaconitine in guinea pigs.

Authors:  Xiang-Chong Wang; Qing-Zhong Jia; Yu-Lou Yu; Han-Dong Wang; Hui-Cai Guo; Xin-di Ma; Chun-Tong Liu; Xue-Yan Chen; Qing-Feng Miao; Bing-Cai Guan; Su-Wen Su; He-Ming Wei; Chuan Wang
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Authors:  Toru Kono; Yasuyuki Suzuki; Keita Mizuno; Chika Miyagi; Yuji Omiya; Hitomi Sekine; Yasuharu Mizuhara; Kanako Miyano; Yoshio Kase; Yasuhito Uezono
Journal:  Sci Rep       Date:  2015-11-06       Impact factor: 4.379

9.  Protective effect of berberine on aconite‑induced myocardial injury and the associated mechanisms.

Authors:  Xueyan Chen; Huicai Guo; Qing Li; Yu Zhang; Huanlong Liu; Xiaofei Zhang; Kerang Xie; Zhongning Zhu; Qingfeng Miao; Suwen Su
Journal:  Mol Med Rep       Date:  2018-09-12       Impact factor: 2.952

  9 in total

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