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考虑到吉布斯自由能在耦合电穿孔和电极变形建模中的应用。

Considering Joule heating in coupled electroporation and electrodeformation modeling of glioblastoma cells.

机构信息

Institute of Ecological Safety, Chongqing University of Posts and Telecommunications, Chongqing, 400065, China.

Institute of Ecological Safety, Chongqing University of Posts and Telecommunications, Chongqing, 400065, China.

出版信息

Comput Biol Med. 2024 Jul;177:108678. doi: 10.1016/j.compbiomed.2024.108678. Epub 2024 May 29.

Abstract

Cells exposed to a pulsed electric field undergo electroporation(EP) and electrodeformation(ED) under electric field stress, and a coupled model of EP and ED of glioblastoma(GBM) taking into account Joule heating is proposed. The model geometry is extracted from real cell boundaries, and the effects of Joule heating-induced temperature rise on the EP and ED processes are considered. The results show that the temperature rise will increase the cell's local conductivity, leading to a decrease in the transmembrane potential(TMP). The temperature rise also causes a decrease in the dynamic Young's modulus of the cell membrane, making the cell less resistant to deformation. In addition, GBM cells are more susceptible to EP in the middle portion of the cell and ED in the three tentacle portions under pulsed electric fields, and the cells undergo significant positional shifts. The ED of the nucleus is similar to spherical cells, but the degree of ED is smaller.

摘要

细胞在脉冲电场下会经历电穿孔(EP)和电极变形(ED),本文提出了一种考虑焦耳加热的脑胶质瘤(GBM)的 EP 和 ED 耦合模型。模型的几何形状是从真实细胞边界提取的,并考虑了焦耳加热引起的温升对 EP 和 ED 过程的影响。结果表明,温升会增加细胞的局部电导率,导致跨膜电位(TMP)降低。温升还会导致细胞膜的动态杨氏模量降低,使细胞对变形的抵抗力降低。此外,在脉冲电场下,GBM 细胞在细胞中部更容易发生 EP,在三个触手部分更容易发生 ED,并且细胞发生了显著的位置移动。细胞核的 ED 类似于球形细胞,但 ED 的程度较小。

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