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首页> 外文期刊>Brazilian Journal of Medical and Biological Research >Cholesterol-dependent hemolytic activity of Passiflora quadrangularis leaves
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Cholesterol-dependent hemolytic activity of Passiflora quadrangularis leaves

机译:西番莲叶的胆固醇依赖性溶血活性

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Plants used in traditional medicine are rich sources of hemolysins and cytolysins, which are potential bactericidal and anticancer drugs. The present study demonstrates for the first time the presence of a hemolysin in the leaves of Passiflora quadrangularis L. This hemolysin is heat stable, resistant to trypsin treatment, has the capacity to froth, and acts very rapidly. The hemolysin activity is dose-dependent, with a slope greater than 1 in a double-logarithmic plot. Polyethylene glycols of high molecular weight were able to reduce the rate of hemolysis, while liposomes containing cholesterol completely inhibited it. In contrast, liposomes containing phosphatidylcholine were ineffective. The Passiflora hemolysin markedly increased the conductance of planar lipid bilayers containing cholesterol but was ineffective in cholesterol-free bilayers. Successive extraction of the crude hemolysin with n-hexane, chloroform, ethyl acetate, and n-butanol resulted in a 10-fold purification, with the hemolytic activity being recovered in the n-butanol fraction. The data suggest that membrane cholesterol is the primary target for this hemolysin and that several hemolysin molecules form a large transmembrane water pore. The properties of the Passiflora hemolysin, such as its frothing ability, positive color reaction with vanillin, selective extraction with n-butanol, HPLC profile, cholesterol-dependent membrane susceptibility, formation of a stable complex with cholesterol, and rapid erythrocyte lysis kinetics indicate that it is probably a saponin.
机译:传统医学中使用的植物富含溶血素和溶血素,它们是潜在的杀菌和抗癌药物。本研究首次证明了四方西番莲叶片中存在溶血素。该溶血素具有热稳定性,对胰蛋白酶的抗性,起泡沫的能力,并且起效迅速。溶血素活性是剂量依赖性的,在双对数图中斜率大于1。高分子量的聚乙二醇能够降低溶血速率,而含胆固醇的脂质体则完全抑制溶血速率。相反,含磷脂酰胆碱的脂质体无效。西番莲溶血素显着提高了含胆固醇的平面脂质双层的电导率,但对不含胆固醇的双层无效。用正己烷,氯仿,乙酸乙酯和正丁醇连续萃取粗制溶血素的结果是纯化的10倍,正丁醇馏分中的溶血活性得以恢复。数据表明膜胆固醇是该溶血素的主要靶标,并且几个溶血素分子形成一个大的跨膜水孔。西番莲溶血素的特性,如起泡能力,与香兰素的显色反应,正丁醇的选择性萃取,HPLC谱图,胆固醇依赖性膜敏感性,与胆固醇形成稳定的复合物以及快速的红细胞溶解动力学表明它可能是一种皂苷。

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