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Glycoalkaloids selectively permeabilize cholesterol containing biomembranes

机译:糖生物碱选择性渗透含胆固醇的生物膜

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The effects of the glycoalkaloids α-solanine, α-chaconine and α-tomatine on different cell types were studied in order to investigate the membrane action of these compounds. Hemolysis of erythrocytes was compared to 6-carboxyfluorescein leakage from both ghosts and erythrocyte lipid vesicles, whereas leakage of enzymes from mitochondria and the apical and baso-lateral side of Caco-2 cells was determined. Furthermore, the effects of glycoalkaloids on the gap-junctional communication between Caco-2 cells was studied. From these experiments, it was found that glycoalkaloids specifically induced membrane disruptive effects of cholesterol containing membranes as was previously reported in model membrane studies. In addition, α-chaconine was found to selectively decrease gap-junctional intercellular communication. Furthermore, the glycoalkaloids were more potent in permeabilizing the outer membrane of mitochondria compared to digitonin at the low concentrations used.
机译:为了研究这些化合物的膜作用,研究了糖类生物碱α-茄碱,α-查茄碱和α-番茄碱对不同细胞类型的影响。将红血球的溶血与鬼魂和红血球脂质囊泡中6-羧基荧光素的泄漏进行了比较,而线粒体以及Caco-2细胞的顶侧和基底外侧则发生了酶的泄漏。此外,研究了生物碱对Caco-2细胞之间间隙连接通讯的影响。从这些实验中发现,如先前在模型膜研究中所报道的,糖类生物碱能特异性地诱导含胆固醇膜的膜破坏作用。另外,发现α-查茄碱选择性降低间隙连接的细胞间通讯。此外,与使用低浓度的洋地黄皂苷相比,糖生物碱在透化线粒体外膜方面更有效。

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