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脉冲电场诱导细胞内外膜电穿孔模型与跨膜电位的仿真
引用本文:姚陈果,李成祥,孙才新,米彦,莫登斌,廖瑞金. 脉冲电场诱导细胞内外膜电穿孔模型与跨膜电位的仿真[J]. 中国电机工程学报, 2006, 26(13): 123-128
作者姓名:姚陈果  李成祥  孙才新  米彦  莫登斌  廖瑞金
作者单位:重庆大学电气工程学院高电压与电工新技术教育部重点实验室,重庆市,沙坪坝区,400044
基金项目:国家自然科学基金项目(50377046,50407007)。~~
摘    要:基于经典的球形单细胞3层介电模型,同时考虑细胞核对跨膜电位的影响,提出了更为合理和接近实际的球形单细胞的多层介电模型,给出了稳恒电场和任意时变脉冲电场作用下细胞膜和核膜跨膜电位的计算方法。仿真结果表明:当脉宽减小时核膜跨膜电位增加,而脉宽增大时细胞膜跨膜电位增强;当脉宽在100-500ns范围时能有效实现肿瘤细胞膜和核膜电穿孔,同时不影响正常细胞。计算结果与实验吻合得很好,为肿瘤的电化学疗法和基因疗法的临床应用提供了理论指导。

关 键 词:脉冲电场  细胞内外膜  跨膜电位  电穿孔  模型  仿真
文章编号:0258-8013(2006)13-0123-06
收稿时间:2006-02-26
修稿时间:2006-02-26

Electroporation Model of Cell Inner and Outer Membrane Induced by Pulsed Electric Field and Its Simulation of Transmenbrane Potential
YAO Chen-guo,LI Cheng-xiang,SUN Cai-xin,MI Yan,MO Deng-bin,LIAO Rui-jin. Electroporation Model of Cell Inner and Outer Membrane Induced by Pulsed Electric Field and Its Simulation of Transmenbrane Potential[J]. Proceedings of the CSEE, 2006, 26(13): 123-128
Authors:YAO Chen-guo  LI Cheng-xiang  SUN Cai-xin  MI Yan  MO Deng-bin  LIAO Rui-jin
Affiliation:Key Laboratory of High Voltage and Electrical New Technology of Ministry of Education, College of Electrical Engineering, Chongqing University, Shapingba District, Chongqing 400044, China
Abstract:A new multi-layer dielectric model of spherical biological cell, which is based on classic three-layer model and takes nucleolus into consideration, is presented. Methods for calculating the transmembrane potential of plasma and nuclear membrane induced by DC and time-varying electric field are also introduced and analyzed in detail. The results reveal that as pulse duration is decreased, transmembrane potential of nuclear is enhanced, while as pulse duration is increased, so is plasma membrane. When pulse duration ranges from 100ns to 500ns, both plasma and nuclear membrane of tumor cells will be formed opening pores, but normal cells will not be affected. It is agreeable with experimental phenomena, which provides theoretical guidance to clinic applications of electroche-motherapy and electrogenetherapy for tumor treatment.
Keywords:pulsed electric field  cell inner and outer membrane  transmembrane potential  electroporation  model  simulation
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