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首页> 外文期刊>IEEE Transactions on Biomedical Engineering >Electroporation of Intracellular Liposomes Using Nanosecond Electric Pulses—A Theoretical Study
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Electroporation of Intracellular Liposomes Using Nanosecond Electric Pulses—A Theoretical Study

机译:纳秒电脉冲对细胞内脂质体进行电穿孔的理论研究

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摘要

Nanosecond (ns) electric pulses of sufficient amplitude can provoke electroporation of intracellular organelles. This paper investigates whether such pulses could provide a method for controlled intracellular release of a content of small internalized artificial lipid vesicles (liposomes). To estimate the pulse parameters needed to selectively electroporate liposomes while keeping the plasma and nuclear membranes intact, we constructed a numerical model of a biological cell containing a nucleus and liposomes of different sizes (with radii from 50 to 500 nm), which were placed in various sites in the cytoplasm. Our results show that under physiological conditions selective electroporation is only possible for the largest liposomes and when using very short pulses (few ns). By increasing the liposome interior conductivity and/or decreasing the cytoplasmic conductivity, selective electroporation of even smaller liposomes could be achieved. The location of the liposomes inside the cell does not play a significant role, meaning that liposomes of similar size could all be electroporated simultaneously. Our results indicate the possibility of using ns pulse treatment for liposomal drug release.
机译:足够大的纳秒(ns)电脉冲会引起细胞内细胞器的电穿孔。本文研究这种脉冲是否可以提供一种方法来控制细胞内释放的小内在化人造脂质小泡(脂质体)的含量。为了估计选择性电穿孔脂质体同时保持质膜和核膜完整所需的脉冲参数,我们构建了一个包含不同大小的核和脂质体(半径为50至500 nm)的生物细胞的数值模型,并将其放置在细胞质中的各种位点。我们的结果表明,在生理条件下,只有最大的脂质体和使用非常短的脉冲(很少ns)时,才可能进行选择性电穿孔。通过增加脂质体的内部电导率和/或降低细胞质的电导率,可以实现甚至更小的脂质体的选择性电穿孔。脂质体在细胞内的位置没有发挥重要作用,这意味着大小相似的脂质体都可以同时被电穿孔。我们的结果表明使用ns脉冲治疗脂质体药物释放的可能性。

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