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基于非均匀分布纳米颗粒,通过连续分析评估单极或双极脉冲驱动的电穿孔定制中的场增强。

Continuum analysis to assess field enhancements for tailoring electroporation driven by monopolar or bipolar pulsing based on nonuniformly distributed nanoparticles.

作者信息

Hu Q, Joshi R P

机构信息

School of Engineering, Eastern Michigan University, Ypsilanti, Michigan 48197, USA.

Department of Electrical and Computer Engineering, Texas Tech University, Lubbock, Texas 79409, USA.

出版信息

Phys Rev E. 2021 Feb;103(2-1):022402. doi: 10.1103/PhysRevE.103.022402.

Abstract

Recent reports indicate that nanoparticle (NP) clusters near cell membranes could enhance local electric fields, leading to heightened electroporation. This aspect is quantitatively analyzed through numerical simulations whereby time dependent transmembrane potentials are first obtained on the basis of a distributed circuit mode, and the results then used to calculate pore distributions from continuum Smoluchowski theory. For completeness, both monopolar and bipolar nanosecond-range pulse responses are presented and discussed. Our results show strong increases in TMP with the presence of multiple NP clusters and demonstrate that enhanced poration could be possible even over sites far away from the poles at the short pulsing regime. Furthermore, our results demonstrate that nonuniform distributions would work to enable poration at regions far away from the poles. The NP clusters could thus act as distributed electrodes. Our results were roughly in line with recent experimental observations.

摘要

最近的报告表明,细胞膜附近的纳米颗粒(NP)簇可增强局部电场,导致电穿孔增强。通过数值模拟对这一方面进行了定量分析,首先基于分布式电路模型获得随时间变化的跨膜电位,然后将结果用于根据连续介质斯莫卢霍夫斯基理论计算孔分布。为全面起见,给出并讨论了单极和双极纳秒级脉冲响应。我们的结果表明,多个NP簇的存在会使跨膜电位大幅增加,并证明在短脉冲 regime 下,即使在远离极点的部位也可能实现增强的穿孔。此外,我们的结果表明,非均匀分布有助于在远离极点的区域实现穿孔。因此,NP簇可充当分布式电极。我们的结果与最近的实验观察结果大致相符。

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