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Simulation of Carbon Nanotube-Based Enhancement of Cellular Electroporation under Nanosecond Pulsed Electric Fields

机译:纳米型脉冲电场下碳纳米管基碳纳米管增强仿真

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摘要

Carbon nanotubes (CNTs) with large aspect ratios and excellent electrical properties can enhance the killing effect of nanosecond pulsed electric fields (nsPEFs) on tumor cells, which can improve the electrical safety of nsPEF during tumor treatment. To study the mechanism of the CNT-enhanced killing effect of a nsPEF on tumor cells, a spherical, single-cell, five-layer dielectric model containing randomly distributed CNTs was established using COMSOL and MATLAB, and then, the effects of the addition of CNTs on the electric field and the electroporation effect on the inner and outer membranes were analyzed. The results showed that CNTs can enhance the local electric field strength due to a lightning rod effect, and the closer the CNT tip was to the cell, the greater the electric field strength was around the cell. This increase in the local electric field strength near the cells enhanced the electroporation effects, including pore density, pore area, and pore flux. The simulation results presented in this paper provide theoretical guidance for subsequent development of nsPEF combined with CNTs for use in both cell and tissue experiments.
机译:具有大纵横比和优异电性能的碳纳米管(CNT)可以增强纳秒脉冲电场(NPEFS)对肿瘤细胞的杀伤作用,这可以改善肿瘤处理期间NPEF的电气安全性。为了研究NPEF对肿瘤细胞的CNT增强杀伤作用的机制,使用COMSOL和MATLAB建立了含有随机分布的CNT的球形,单细胞,五层电介质模型,然后增加了添加的影响分析了电场上的CNT,分析了内膜和外膜的电穿孔效果。结果表明,由于避雷棒效应,CNT可以增强局部电场强度,并且CNT尖端越近,电池围绕电池越越大。这种局部电场强度的增加增强了电穿孔效应,包括孔密度,孔隙区域和孔通量。本文提出的仿真结果提供了随后与CNT合并的NPSEF开发用于细胞和组织实验的理论指导。

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