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哺乳动物细胞对大分子的电通透化作用:受脉冲持续时间的控制。

Electropermeabilization of mammalian cells to macromolecules: control by pulse duration.

作者信息

Rols M P, Teissié J

机构信息

Institut de Pharmacologie et de Biologie Structurale du CNRS, Toulouse, France.

出版信息

Biophys J. 1998 Sep;75(3):1415-23. doi: 10.1016/S0006-3495(98)74060-3.

Abstract

Membrane electropermeabilization to small molecules depends on several physical parameters (pulse intensity, number, and duration). In agreement with a previous study quantifying this phenomenon in terms of flow (Rols and Teissié, Biophys. J. 58:1089-1098, 1990), we report here that electric field intensity is the deciding parameter inducing membrane permeabilization and controls the extent of the cell surface where the transfer can take place. An increase in the number of pulses enhances the rate of permeabilization. The pulse duration parameter is shown to be crucial for the penetration of macromolecules into Chinese hamster ovary cells under conditions where cell viability is preserved. Cumulative effects are observed when repeated pulses are applied. At a constant number of pulses/pulse duration product, transfer of molecules is strongly affected by the time between pulses. The resealing process appears to be first-order with a decay time linearly related to the pulse duration. Transfer of macromolecules to the cytoplasm can take place only if they are present during the pulse. No direct transfer is observed with a postpulse addition. The mechanism of transfer of macromolecules into cells by electric field treatment is much more complex than the simple diffusion of small molecules through the electropermeabilized plasma membrane.

摘要

细胞膜对小分子的电通透化作用取决于几个物理参数(脉冲强度、数量和持续时间)。与之前一项从通量角度对该现象进行量化的研究(Rols和Teissié,《生物物理杂志》58:1089 - 1098,1990)一致,我们在此报告,电场强度是诱导细胞膜通透化的决定性参数,并控制着能够发生转运的细胞表面范围。脉冲数量的增加会提高通透化速率。结果表明,在保持细胞活力的条件下,脉冲持续时间参数对于大分子进入中国仓鼠卵巢细胞至关重要。当施加重复脉冲时会观察到累积效应。在脉冲数量/脉冲持续时间乘积恒定的情况下,分子的转运受到脉冲间隔时间的强烈影响。重新封闭过程似乎是一级反应,其衰减时间与脉冲持续时间呈线性相关。大分子只有在脉冲期间存在时才能转运到细胞质中。脉冲后添加大分子未观察到直接转运。通过电场处理将大分子转运到细胞内的机制比小分子通过电通透化的质膜进行简单扩散要复杂得多。

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