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首页> 外文期刊>European Biophysics Journal >Effect of electric field induced transmembrane potential on spheroidal cells: theory and experiment
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Effect of electric field induced transmembrane potential on spheroidal cells: theory and experiment

机译:电场诱导跨膜电位对球状细胞的影响:理论与实验

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摘要

The transmembrane potential on a cell exposed to an electric field is a critical parameter for successful cell permeabilization. In this study, the effect of cell shape and orientation on the induced transmembrane potential was analyzed. The transmembrane potential was calculated on prolate and oblate spheroidal cells for various orientations with respect to the electric field direction, both numerically and analytically. Changing the orientation of the cells decreases the induced transmembrane potential from its maximum value when the longest axis of the cell is parallel to the electric field, to its minimum value when the longest axis of the cell is perpendicular to the electric field. The dependency on orientation is more pronounced for elongated cells while it is negligible for spherical cells. The part of the cell membrane where a threshold transmembrane potential is exceeded represents the area of electropermeabilization, i.e. the membrane area through which the transport of molecules is established. Therefore the surface exposed to the transmembrane potential above the threshold value was calculated. The biological relevance of these theoretical results was confirmed with experimental results of the electropermeabilization of plated Chinese hamster ovary cells, which are elongated. Theoretical and experimental results show that permeabilization is not only a function of electric field intensity and cell size but also of cell shape and orientation. [References: 38]
机译:暴露于电场的细胞上的跨膜电位是细胞成功通透的关键参数。在这项研究中,分析了细胞形状和方向对诱导跨膜电位的影响。在数值方向和解析方向上,针对相对于电场方向的各种取向,在扁球形和扁球形细胞上计算跨膜电位。改变细胞的取向将诱导的跨膜电位从当细胞的最长轴平行于电场时的最大值减小到当细胞的最长轴垂直于电场时的最小值。对于伸长的细胞,取向的依赖性更为明显,而对于球形细胞,则可以忽略不计。超过阈值跨膜电位的细胞膜部分代表电透化的面积,即通过其建立分子运输的膜面积。因此,计算了暴露于高于阈值的跨膜电位的表面。这些理论结果的生物学相关性已被拉长的中国仓鼠卵巢细胞的电透性实验结果证实。理论和实验结果表明通透性不仅是电场强度和细胞大小的函数,而且还是细胞形状和方向的函数。 [参考:38]

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