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KMID : 0352720020260010001
Journal of Ginseng Research
2002 Volume.26 No. 1 p.1 ~ p.5
Vasorelaxing Mechanism of Crude Saponin of Korea Red Ginseng in the Resistance-sized Mesenteric Artery of Rat
Se Hoon Kim/Shin Hye Kim
Hyung Seo Park/Mee Young Lee/Young Sun Oh/Se Hoon Kim
Abstract
It has been well known that Korea red ginseng has an antihypertensive effect. The antihypertensive effect may be due to its ability to change the peripheral resistance. Change of vascular tone in the resistance-sized artery contribute to the peripheral resistance, thereby regulate the blood pressure. Therefore, we investigated to clarify the vasorelaxing mechanism induced by crude saponin of Korea red ginseng in the resistance-sized mesenteric artery of rats. The resistance-sized mesenteric artery was isolated and cut into a ring. The ring segment was immersed in HEPES-buffered solution and its isometric tension was measured using myograph force-displacement transducer. Crude saponin of ginseng relaxed the mesenmetric arterial rings precontracted with norepinephrine (3¥ìM) in dose-dependent manner (0.01 mg/§¢ -1 mg/§¢. The relaxation by crude saponin was smaller in endothelium-intact preparation than that in endothelium-denuded preparation. The contraction induced by A23187 or phorbol 12,13-dibutyrate was not affected by crude saponin of ginseng. The vasorelaxing effect of crude saponin of ginseng was significantly attenuated by the increase of the extracellular K\^+/ concentration. Crude saponin-induced vasorelaxation was not affected by tetraethylammonium (1 mM), glybenclamide (10¥ìM), and 4-aminopyridine (0.1 mM) in these preparations. Ba\^2+/(10¥ìM ¡­100¥ìM) markedly reduced the crude saponin-induced vasorelakation dose-dependently. From the above results, we suggest that crude saponin of ginseng may stimulate K\^+/ efflux and hyperpolarize the membrane, thereby cause the vasorelaxation in the resistance-sized mesenteric artery of rats.
KEYWORD
Vasorelaxation, antihypertensive effect, peripheral resistance, resistance-sized mesenteric artery,
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