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Evaluation of Induced Voltage on Biological Cell Membranes

机译:生物细胞膜感应电压的评估

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The application of pulsed electric fields (PEF) to biological cells induces trans-membrane potentials that can give rise to significant biological effects, predominantly electroporation. Recently, the effects of sub-microsecond intense electrical pulses (sm-PEF) on cellular organelles have been reported. In such applications, instantaneous power is high (~MW) but, due to the short pulse duration, energy delivered to cells and tissues is low (~nJ per cell). Electroporation is used mainly for transfections of exogenous materials, but many other interventions are possible, including microbial deactivation, whereas sm-PEF has shown particular promise in medical fields, including oncology. In this paper, the response of cells to PEF and sm-PEF is examined using an equivalent circuit model (ECM) where a network of electrical components is used to represent the cell and its environment. The model is validated through comparison with independent analytical and numerical studies. It is shown that the ECM, which is not computationally demanding, may be usefully adopted to examine how a cell and organelle respond to a wide range of cell parameters and pulse types. It is considered that such mathematical models, which can help to establish a quantitative link between the application of a time-varying electromagnetic pulse and the subsequent cell response, may allow the possible correlation between such responses and microbiological measurements to be investigated. It is anticipated that the development of these modeling approaches will aid in the analysis of those experimental measurements that are presently considered to be unattainable through real stochastic studies
机译:将脉冲电场(PEF)应用于生物细胞会诱导跨膜电位,这种电位会引起重大的生物学效应,主要是电穿孔。最近,已经报道了亚微秒强电脉冲(sm-PEF)对细胞器的影响。在此类应用中,瞬时功率较高(〜MW),但由于脉冲持续时间短,因此传递至细胞和组织的能量较低(每个细胞〜nJ)。电穿孔主要用于外源材料的转染,但是许多其他干预措施也是可能的,包括微生物失活,而sm-PEF在包括肿瘤在内的医学领域显示出特别的希望。在本文中,使用等效电路模型(ECM)检验了细胞对PEF和sm-PEF的反应,在该模型中,电子元件网络被用来代表细胞及其环境。通过与独立的分析和数值研究进行比较,对模型进行了验证。结果表明,不需要计算要求的ECM可以有效地用于检查细胞和细胞器如何响应各种细胞参数和脉冲类型。认为这样的数学模型可以帮助建立时变电磁脉冲的施加和随后的细胞反应之间的定量联系,可以允许研究这样的反应和微生物测量之间的可能相关性。可以预期,这些建模方法的发展将有助于分析目前认为通过实际随机研究无法实现的那些实验测量结果。

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