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High electrical field effects on cell membranes

机译:高电场作用于细胞膜

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摘要

Electrical charging of lipid membranes causes electroporation with sharp membrane conductance increases. Several recent observations, especially at very high field strength, are not compatible with the simple electroporation picture. Here we present several relevant experiments on cell electrical responses to very high external voltages. We hypothesize that, not only are aqueous pores created within the lipid membranes, but that nanoscale membrane fragmentation occurs, possibly with micelle formation. This effect would produce conductivity increases beyond simple electroporation and display a relatively fast turn-off with external voltage. In addition, material loss can be expected at the anode side of cells, in agreement with published experimental reports at high fields. Our hypothesis is qualitatively supported by molecular dynamics simulations. Finally, such cellular responses might temporarily inactivate voltage-gated and ion-pump activity, while not necessarily causing cell death. This hypothesis also supports observations on electrofusion. (C) 2006 Elsevier B.V. All rights reserved.
机译:脂质膜的电荷引起电穿孔,膜电导急剧增加。最近的一些观察,特别是在很高的场强下,与简单的电穿孔图不兼容。在这里,我们提出了一些有关电池对非常高的外部电压的电响应的实验。我们假设,不仅在脂质膜内形成了水孔,而且发生了纳米级膜碎裂,可能与胶束形成有关。这种作用将使电导率增加,不仅限于简单的电穿孔,而且随着外部电压的出现,其关断速度相对较快。此外,与高场发表的实验报告一致,可以预期在电池的阳极侧会发生材料损失。我们的假设得到了分子动力学模拟的定性支持。最后,这种细胞反应可能会暂时使电压门控和离子泵活性失活,而并不一定导致细胞死亡。该假设也支持关于电融合的观察。 (C)2006 Elsevier B.V.保留所有权利。

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