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The influence of intracellular connections on the electric field induced membrane voltage and electroporation of cells in clusters

机译:细胞内连接对电场诱导的膜电压和簇中细胞电穿孔的影响

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In this paper we examine the influence of gap junction inhibition on the amplitude and distribution of the induced transmembrane voltage (ITV) and electroporation of cells in clusters. Cell clusters were used as they represent simple models of cells in tissues and thus enable the study of the effects of the external electric field on the level of individual cells. We demonstrated that cells in clusters respond differently to the electric field exposure, depending on the field parameters. Namely, when exposed to long, low voltage pulses (such as during the measurements of the ITV) cells in clusters behave as one giant, single cell. At short, high voltage pulses (such as during electroporation) they behave as individual cells. Different response of cells in clusters was attributed to the changes in the properties of gap junctions, specifically, their opening and closing. This was demonstrated by pre-treating the cells with gap junction inhibitor, which caused the cells in clusters to respond as individual cells, regardless of the pulse parameters.
机译:在本文中,我们研究了间隙连接抑制对诱导跨膜电压(ITV)的幅度和分布以及簇中细胞电穿孔的影响。使用细胞簇是因为它们代表组织中细胞的简单模型,因此可以研究外部电场对单个细胞水平的影响。我们证明了群集中的细胞对电场暴露的反应不同,具体取决于电场参数。即,当暴露于长而低的电压脉冲时(例如在ITV的测量过程中),簇中的单元表现为一个巨大的单个单元。简而言之,高压脉冲(例如在电穿孔期间)表现为单个细胞。簇中细胞的不同反应归因于间隙连接特性的变化,特别是它们的打开和闭合。通过用间隙连接抑制剂对细胞进行预处理可以证明这一点,无论脉冲参数如何,这都会使簇中的细胞以单个细胞的形式响应。

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