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The influence of membrane physical properties on microvesicle release in human erythrocytes

机译:膜的物理性质对人红细胞微泡释放的影响

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摘要

Exposure of human erythrocytes to elevated intracellular calcium causes fragments of the cell membrane to be shed as microvesicles. This study tested the hypothesis that microvesicle release depends on microscopic membrane physical properties such as lipid order, fluidity, and composition. Membrane properties were manipulated by varying the experimental temperature, membrane cholesterol content, and the activity of the trans-membrane phospholipid transporter, scramblase. Microvesicle release was enhanced by increasing the experimental temperature. Reduction in membrane cholesterol content by treatment with methyl-β-cyclodextrin also facilitated vesicle shedding. Inhibition of scramblase with R5421 impaired vesicle release. These data were interpreted in the context of membrane characteristics assessed previously by fluorescence spectroscopy with environment-sensitive probes such as laurdan, diphenylhexatriene, and merocyanine 540. The observations supported the following conclusions: 1) calcium-induced microvesicle shedding in erythrocytes relates more to membrane properties detected by diphenylhexatriene than by the other probes; 2) loss of trans-membrane phospholipid asymmetry is required for microvesicle release.PACS Codes: 87.16.dj, 87.16.dt
机译:人红细胞暴露于升高的细胞内钙导致细胞膜碎片脱落为微泡。这项研究检验了以下假设:微囊泡的释放取决于膜的微观物理特性,例如脂质顺序,流动性和组成。通过改变实验温度,膜胆固醇含量和跨膜磷脂转运蛋白scramblase的活性来控制膜的性能。通过增加实验温度,微囊泡释放得以增强。通过用甲基-β-环糊精处理减少膜胆固醇含量也促进了囊泡脱落。用R5421抑制scramblase损害了囊泡的释放。这些数据是在先前使用环境敏感的探针(如laurdan,二苯基己三烯和部花青540)通过荧光光谱法评估的膜特性的背景下解释的。这些观察结果支持以下结论:1)钙诱导的红细胞微囊脱落与膜的关系更大。二苯基己三烯比其他探针检测到的特性; 2)微囊释放需要丧失跨膜磷脂的不对称性.PACS代码:87.16.dj,87.16.dt

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