Plasma membrane coating with cationic silica particles and osmotic shock alters the morphology of bovine aortic endothelial cells.

Biochimica et biophysica acta Pub Date : 2000-07-31
C Millot, V Le Berre-Anton, J F Tocanne, J F Tournier
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Abstract

We have used a published method of membrane preparation based on the precoating of the apical membrane of aortic endothelial cells with cationic silica microbeads (with or without polyacrylic acid) in combination with an osmotic shock and mechanical shearing to isolate the apical from the basal plasma membranes of these cells, in vitro. After labeling of the plasma membrane of adherent endothelial cells with a fluorescent derivative of phosphatidylcholine and by using laser confocal fluorescence scanning microscopy, we found that this method of membrane isolation rapidly induced invaginations of the basal plasma membrane to an extent which makes this method unsuitable for further membrane lipid analysis. Morphological analysis of the cells and fluorescence recovery after photobleaching experiments on the plasma membranes were performed at each step of the purification procedure and showed that only hypotonic shock and mechanical shearing of the cells enabled the basal plasma membranes to be purified without significant morphological changes.

用阳离子二氧化硅颗粒包覆质膜和渗透冲击改变了牛主动脉内皮细胞的形态。
我们使用了一种已发表的膜制备方法,该方法基于用阳离子二氧化硅微珠(含或不含聚丙烯酸)预涂主动脉内皮细胞的根尖膜,结合渗透冲击和机械剪切,在体外将这些细胞的根尖与基基质膜分离开来。在用磷脂酰胆碱荧光衍生物标记贴壁内皮细胞的质膜并使用激光共聚焦荧光扫描显微镜后,我们发现这种膜分离方法在一定程度上迅速诱导基底质膜内陷,这使得该方法不适合进一步的膜脂分析。在纯化过程的每一步都进行了细胞形态学分析和质膜光漂白实验后的荧光恢复,结果表明,只有低渗冲击和细胞的机械剪切才能使基浆膜得到纯化,而没有明显的形态学变化。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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