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Hibiscus acid from Hibiscus sabdariffa (Malvaceae) has a vasorelaxant effect on the rat aorta

机译:来自Hibiscus sabdariffa(Malvaceae)的芙蓉酸对大鼠主动脉有血管内效应

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Hibiscus sabdariffa (Malvaceae) is a plant that is widely recognised for its antihypertensive properties; however the constituent(s) responsible for this biological activity are presently unknown. The aim of this study was to identify the potential compounds that are responsible for the vasorelaxant activity of H. sabdariffa. Thereafter, the mechanisms involved in producing the vasorelaxation were investigated. The plant was extracted consecutively with hexane, ethyl acetate and methanol. The methanolic extract was subjected to bioassay-guided fractionation in order to isolate pure compounds that possessed vasorelaxant activity. The vascular effects of the pure compounds were studied on the rat aorta in vitro using myography techniques. Hibiscus acid produced a concentration-dependent relaxation of the rat aorta pre-contracted with either phenylephrine (3 mu M) or KCl (60 mM), irrespective of the presence of the endothelium. When the tissue was pre-contracted with phonylephrine, the concentration required to produce 50% relaxation (IC50), was 0.09 +/- 0.01 mg/ml. Hibiscus acid had no effect on the phasic contraction induced by phenylephrine in Ca2+-free physiological solution; but it did affect the component of the contraction that is due to Ca2+ influx. In parallel studies, garcinia acid, a diastereoisomer of hibiscus acid, was found to have an almost identical vasorelaxant effect. The vasorelaxant action of both compounds is most likely due to the inhibition of Ca2+ influx via voltage-dependent Ca2+ channels.
机译:Hibiscus Sabdariffa(Malvaceae)是一种广泛认可的抗高血压性质的植物;然而,负责这种生物活性的组成部分是目前未知的。本研究的目的是鉴定负责H.Sabdariffa的血管链胎活性的潜在化合物。此后,研究了所涉及制备血管加速的机制。用己烷,乙酸乙酯和甲醇连续萃取该植物。对甲醇提取物进行生物测定引导的分馏,以分离具有血管XANT活性的纯化合物。使用奇迹技术在大鼠主动脉上研究了纯化合物的血管作用。 Hibiscus酸产生的大鼠主动脉的浓度依赖性弛豫,与苯妥(3μm)或Kcl(60mM)进行预收缩,与内皮的存在无关。当组织用Phonylephrine预收缩时,产生50%弛豫(IC50)所需的浓度为0.09 +/- 0.01mg / ml。芙蓉酸对Ca2 + -FREE生理溶液中苯妥碱诱导的序列收缩没有影响;但它确实影响了由于CA2 +流入而导致的收缩的组成部分。在并行研究中,发现芙蓉酸的非对映异构体的小酸酸具有几乎相同的血管内效应。两种化合物的血管链轴作用很可能是由于通过电压依赖性CA2 +通道抑制CA2 +流入。

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