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电场诱导人成纤维细胞的内吞作用。

Induced endocytosis in human fibroblasts by electrical fields.

作者信息

Glogauer M, Lee W, McCulloch C A

机构信息

Faculty of Dentistry, University of Toronto, Ontario, Canada.

出版信息

Exp Cell Res. 1993 Sep;208(1):232-40. doi: 10.1006/excr.1993.1242.

Abstract

Electroporation creates transient pores through which exogenous molecules can gain access to the cell cytoplasm. However, the electrical events associated with this phenomenon may perturb membrane-dependent events such as endocytosis. To measure the effect of electroporation on endocytosis, suspensions of human gingival fibroblasts were subjected to 5-ms electrical discharges, allowed to recover for variable periods of time, incubated with fluorescent probes, and then analyzed by flow cytometry. Incubation of electroporated fibroblasts with FITC-conjugated bovine serum albumin (BSA) to label moities on cell membranes nonspecifically demonstrated a time-dependent increase of internalized probe for up to 90 min after electroporation. Pretreatment incubation of cells with cytochalasin D abrogated the increased internalization of FITC-BSA due to electroporation. Compared to controls, fluorescence signals due to internalization of surface glycoproteins with FITC-concanavalin A were 43% higher after electroporation and treatment with endoglycosidase F or H to reduce probe associated with surface membrane. Confocal microscopy confirmed intracellular labeling and reduction of membrane-associated probe by the enzyme. Assessment of nonspecific FITC-Con A labeling of cells by pretreatment with alpha-methyl D-mannoside showed that labeling was largely (92%) specific. Compared to controls, electroporation induced a 60% increase of internalization of lucifer yellow, a fluid-phase endocytosis marker. Dual fluorescence labeling of membrane phosopholipids by FITC and TRITC-DHPE demonstrated an increased acidification after electroporation that was time dependent, indicating that electroporation induced more rapid entry of membrane lipid into endosomal compartments. These data demonstrate that the electrical fields used in electroporation of fibroblasts cause an actin-dependent increase in the internalization of all membrane components examined and an increased rate of probe entry in to acidifying compartments.

摘要

电穿孔可产生瞬时孔道,外源性分子能够借此进入细胞质。然而,与该现象相关的电活动可能会干扰诸如内吞作用等依赖膜的活动。为了测定电穿孔对内吞作用的影响,将人牙龈成纤维细胞悬液进行5毫秒的放电处理,使其恢复不同时长,用荧光探针孵育,然后通过流式细胞术进行分析。用异硫氰酸荧光素(FITC)偶联的牛血清白蛋白(BSA)孵育经电穿孔处理的成纤维细胞,以非特异性标记细胞膜上的部分成分,结果表明,电穿孔后长达90分钟内,内化探针呈时间依赖性增加。用细胞松弛素D预处理细胞可消除因电穿孔导致的FITC-BSA内化增加。与对照组相比,在用内切糖苷酶F或H处理以减少与表面膜相关的探针后,经电穿孔处理后,用FITC-伴刀豆球蛋白A标记表面糖蛋白导致的内化荧光信号高出43%。共聚焦显微镜检查证实了细胞内标记以及该酶对膜相关探针的减少作用。用α-甲基-D-甘露糖苷预处理细胞后对细胞进行非特异性FITC-Con A标记评估表明,标记在很大程度上(92%)具有特异性。与对照组相比,电穿孔使液相内吞作用标志物路西法黄的内化增加了60%。用FITC和TRITC-DHPE对膜磷脂进行双荧光标记表明,电穿孔后酸化增加,且呈时间依赖性,这表明电穿孔促使膜脂更快地进入内体区室。这些数据表明,在成纤维细胞电穿孔中使用的电场会导致所检测的所有膜成分的内化呈肌动蛋白依赖性增加,并且探针进入酸化区室的速率加快。

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