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通过电穿孔法将大分子导入活的盘基网柄菌细胞。

Introduction of macromolecules into living Dictyostelium cells by electroporation.

作者信息

Yumura S, Matsuzaki R, Kitanishi-Yumura T

机构信息

Department of Biology, Faculty of Science, Yamaguchi University, Japan.

出版信息

Cell Struct Funct. 1995 Jun;20(3):185-90. doi: 10.1247/csf.20.185.

Abstract

An attempt was made to optimize conditions for introduction of macromolecules into Dictyostelium cells by electroporation. The amount of fluorescein-labeled bovine serum albumin (FITC-BSA) introduced into cells was measured by fluorometry after extraction of FITC-BSA from cells with detergent. The amount increased as the applied voltage and capacitance of the discharger were increased. However, the survival of cells decreased at higher voltages and elevated capacitance. FITC-BSA was introduced into 80-90% of treated cells. FITC-BSA at 0.25 mg/ml was introduced into cells under optimum conditions when the concentration of the extracellular protein was 2.5 mg/ml. Several discharges in sequence improved the extent of introduction of FITC-BSA although viability decreased. There was a linear correlation between final intracellular concentration and the initial extracellular concentration of FITC-BSA, suggesting the possible quantitative introduction of the protein into cells. The membrane pores that opened during electroporation closed within 2.5 sec after the discharge. FITC-labeled dextran with molecular weights of less than 5 x 10(5) were able to pass through these pores. Our results show that electroporation provides a quantitative and reproducible method for introduction of macromolecules into living Dictyostelium cells.

摘要

人们尝试通过电穿孔优化将大分子导入盘基网柄菌细胞的条件。在用去污剂从细胞中提取异硫氰酸荧光素标记的牛血清白蛋白(FITC - BSA)后,通过荧光测定法测量导入细胞中的FITC - BSA量。随着放电仪施加电压和电容的增加,导入量增加。然而,在较高电压和电容增加时细胞存活率下降。FITC - BSA被导入80 - 90%的处理细胞中。当细胞外蛋白质浓度为2.5 mg/ml时,在最佳条件下将0.25 mg/ml的FITC - BSA导入细胞。尽管细胞活力下降,但连续几次放电提高了FITC - BSA的导入程度。FITC - BSA的最终细胞内浓度与初始细胞外浓度之间存在线性相关性,这表明蛋白质可能被定量导入细胞。电穿孔过程中打开的膜孔在放电后2.5秒内关闭。分子量小于5×10⁵的FITC标记葡聚糖能够穿过这些孔。我们的结果表明,电穿孔为将大分子导入活的盘基网柄菌细胞提供了一种定量且可重复的方法。

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