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电场脉冲诱导的细胞膜长效通透性与融合性之间的相关性。

Correlation between electric field pulse induced long-lived permeabilization and fusogenicity in cell membranes.

作者信息

Teissié J, Ramos C

机构信息

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

出版信息

Biophys J. 1998 Apr;74(4):1889-98. doi: 10.1016/S0006-3495(98)77898-1.

Abstract

Electric field pulses have been reported to induce long-lived permeabilization and fusogenicity on cell membranes. The two membrane property alterations are under the control of the field strength, the pulse duration, and the number of pulses. Experiments on mammalian cells pulsed by square wave form pulses and then brought into contact randomly through centrifugation revealed an even stronger analogy between the two processes. Permeabilization was known to affect well-defined regions of the cell surface. Fusion can be obtained only when permeabilized surfaces on the two partners were brought into contact. Permeabilization was under the control of the pulse duration and of the number of pulses. A similar relationship was observed as far as fusion is concerned. But a critical level of local permeabilization must be present for fusion to take place when contacts are created. The same conclusions are obtained from previous experiments on ghosts subjected to exponentially decaying field pulses and then brought into contact by dielectrophoresis. These observations are in agreement with a model of membrane fusion in which the merging of local random defects occurs when the two membranes are brought into contact. The local defects are considered part of the structural membrane reorganization induced by the external field. Their density is dependent on the pulse duration and number of pulses. They support the long-lived permeabilization. Their number must be very large to support the occurrence of membrane fusion.

摘要

据报道,电场脉冲可在细胞膜上诱导产生长期的通透性改变和融合活性。这两种膜特性的改变受场强、脉冲持续时间和脉冲数量的控制。对用方波脉冲处理过的哺乳动物细胞进行实验,然后通过离心使其随机接触,结果显示这两个过程之间存在更强的相似性。已知通透性改变会影响细胞表面明确的区域。只有当两个细胞的通透表面接触时才能实现融合。通透性改变受脉冲持续时间和脉冲数量的控制。就融合而言,也观察到了类似的关系。但是当细胞接触时,必须存在临界水平的局部通透性改变才能发生融合。从先前对经指数衰减场脉冲处理然后通过介电泳使其接触的血影细胞进行的实验中也得出了相同的结论。这些观察结果与膜融合模型一致,即在两个膜接触时,局部随机缺陷会发生合并。局部缺陷被认为是由外部场诱导的膜结构重组的一部分。它们的密度取决于脉冲持续时间和脉冲数量。它们支持长期的通透性改变。它们的数量必须非常大才能支持膜融合的发生。

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