Biological cell electroporation using nanosecond electrical pulses

O. G. M. Khan, A. El-Hag
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引用次数: 15

Abstract

Nanosecond electroporation has a range of applications including gene therapy and treatment of melanoma tumors. On applying a nanosecond high voltage pulse, potential differences are generated across the membranes of the internal organelles resulting in its electroporation. This paper investigates the effect of nanosecond high voltage pulses simulated on a biological cell placed in a conductive medium (water). The effect of cell size, shape (spherical and elliptical) and membrane thickness on electroporation is investigated. Significant difference in the field was observed indicating the importance of these factors in the success of electroporation in the event of application of external nanosecond high voltage electrical pulse.
利用纳秒级电脉冲进行生物细胞电穿孔
纳秒电穿孔有广泛的应用,包括基因治疗和黑色素瘤的治疗。施加纳秒高电压脉冲时,内部细胞器的膜上产生电位差,导致其电穿孔。本文研究了纳秒高压脉冲对放置在导电介质(水)中的生物细胞的影响。研究了电池尺寸、形状(球形和椭圆形)和膜厚度对电穿孔的影响。观察到的显著差异表明,在外部纳秒级高压电脉冲的情况下,这些因素对电穿孔成功的重要性。
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