Literature DB >> 18067062

Gomisin A from Schisandra chinensis induces endothelium-dependent and direct relaxation in rat thoracic aorta.

Ji Young Park1, Seung Jin Lee, Mi Ran Yun, Kyo Won Seo, Sun Sik Bae, June Woo Park, You Jin Lee, Woo Jung Shin, Young Whan Choi, Chi Dae Kim.   

Abstract

Schisandra chinensis (SC), a member of the Magnoliaceae family, has been used to improve the vascular health for postmenopausal women in Korea. In order to provide some scientific rationales for such effectiveness, this study investigated the vascular effects of gomisin A (GA) from SC. In the endothelium (ED)-intact rings of rat thoracic aorta, GA (1 x 10 (-6) to 3 x 10 (-4) M) caused a concentration-dependent relaxation which was markedly attenuated not only by removal of ED but also by pretreatment with N(G)-nitro- L-arginine (10 (-4) M) or 1 H-[1,2,4]oxadiazol[4,3- a]quinoxalin-1-one (3 x 10 (-5) M). Direct measurement of nitrite, a metabolite of nitric oxide (NO), confirmed that NO production in isolated aorta was increased by GA. In the ED-denuded specimens, the relaxation by GA was not abolished but reduced significantly. The relaxation by GA in ED-denuded aortic rings were clearly inhibited by calyculin A (3 x 10 (-8) M), an inhibitor of MLC phosphatase. Furthermore, the phenylephrine-enhanced phosphorylation ratio of MLC was significantly attenuated by GA. Based on these results, it is suggested that GA induced vascular relaxation by partially activating ED-dependent NO pathway, and partially dephosphorylation of MLC.

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Year:  2007        PMID: 18067062     DOI: 10.1055/s-2007-993757

Source DB:  PubMed          Journal:  Planta Med        ISSN: 0032-0943            Impact factor:   3.352


  10 in total

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6.  Antihypertensive effect of gomisin A from Schisandra chinensis on angiotensin II-induced hypertension via preservation of nitric oxide bioavailability.

Authors:  Ji Young Park; Jung Wook Yun; Young Whan Choi; Jin Ung Bae; Kyo Won Seo; Seung Jin Lee; So Youn Park; Ki Whan Hong; Chi Dae Kim
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Review 10.  Secondary Metabolites of Plants as Modulators of Endothelium Functions.

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  10 in total

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