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Numerical Calculations of Single-Cell Electroporation with an Electrolyte-Filled Capillary

机译:电解质填充毛细管单细胞电穿孔的数值计算

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摘要

An electric field is focused on one cell in single-cell electroporation. This enables selective electroporation treatment of the targeted cell without affecting its neighbors. While factors that lead to membrane permeation are the same as in bulk electroporation, quantitative description of the single-cell experiments is more complicated. This is due to the fact that the potential distribution cannot be solved analytically. We present single-cell electroporation with an electrolyte-filled capillary modeled with a finite element method. Potential is calculated in the capillary, the solution surrounding the cell, and the cell. The model enables calculation of the transmembrane potential and the fraction of the cell membrane that is above the critical electroporation potential. Electroporation at several cell-to-tip distances of human lung carcinoma cells (A549) stained with ThioGlo-1 demonstrated membrane permeation at distances shorter than ∼7.0 μm. This agrees well with the model's prediction that a critical transmembrane potential of 250 mV is achieved when the capillary is ∼6.5 μm or closer to the cell. Simulations predict that at short cell-to-tip distances, the transmembrane potential increases significantly while the total area of the cell above the critical potential increases only moderately.
机译:在单细胞电穿孔中,电场集中在一个细胞上。这使得能够对靶细胞进行选择性电穿孔处理而不会影响其相邻细胞。尽管导致膜渗透的因素与批量电穿孔相同,但单细胞实验的定量描述更为复杂。这是由于无法解析地解析电位分布这一事实。我们目前用有限元方法建模的电解质填充毛细管的单细胞电穿孔。在毛细管,池周围的溶液以及池中计算电势。该模型能够计算跨膜电位和高于临界电穿孔电位的细胞膜部分。 ThioGlo-1染色的人肺癌细胞(A549)在数个细胞到尖端的距离上进行电穿孔,证明在小于7.0μm的距离处膜渗透。这与模型的预测非常吻合,该模型的预测是,当毛细管距细胞约6.5μm或更近时,临界跨膜电位为250 mV。模拟预测,在短的细胞到尖端距离处,跨膜电位显着增加,而高于临界电位的细胞总面积仅适度增加。

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