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电穿孔场靶向细胞膜中的氧化损伤区域。

Electroporating fields target oxidatively damaged areas in the cell membrane.

机构信息

Ming Hsieh Department of Electrical Engineering, Viterbi School of Engineering, University of Southern California, Los Angeles, California, United States of America.

出版信息

PLoS One. 2009 Nov 23;4(11):e7966. doi: 10.1371/journal.pone.0007966.

Abstract

Reversible electropermeabilization (electroporation) is widely used to facilitate the introduction of genetic material and pharmaceutical agents into living cells. Although considerable knowledge has been gained from the study of real and simulated model membranes in electric fields, efforts to optimize electroporation protocols are limited by a lack of detailed understanding of the molecular basis for the electropermeabilization of the complex biomolecular assembly that forms the plasma membrane. We show here, with results from both molecular dynamics simulations and experiments with living cells, that the oxidation of membrane components enhances the susceptibility of the membrane to electropermeabilization. Manipulation of the level of oxidative stress in cell suspensions and in tissues may lead to more efficient permeabilization procedures in the laboratory and in clinical applications such as electrochemotherapy and electrotransfection-mediated gene therapy.

摘要

可逆电穿孔(电穿孔)被广泛用于促进遗传物质和药物制剂进入活细胞。尽管通过在电场中研究真实和模拟模型膜已经获得了相当多的知识,但由于对形成质膜的复杂生物分子组装体的电穿孔的分子基础缺乏详细的了解,优化电穿孔方案的努力受到限制。我们在这里通过分子动力学模拟和活细胞实验的结果表明,膜成分的氧化增强了膜对电穿孔的敏感性。在细胞悬浮液和组织中操纵氧化应激水平可能会导致在实验室和临床应用中(如电化学疗法和电转染介导的基因治疗)更有效的渗透程序。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7738/2779261/700d10893c84/pone.0007966.g001.jpg

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