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The biological response of cells to nanosecond pulsed electric fields is dependent on plasma membrane cholesterol

机译:细胞对纳秒脉冲电场的生物学反应取决于质膜胆固醇

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摘要

Previous work from our laboratory demonstrated nanopore formation in cell membranes following exposure to nanosecond pulsed electric fields (nsPEF). We observed differences in sensitivity to nsPEF in both acute membrane injury and 24 h lethality across multiple cells lines. Based on these data, we hypothesize that the biological response of cells to nsPEF is dependent on the physical properties of the plasma membrane (PM), including regional cholesterol content. Results presented in this paper show that depletion of membrane cholesterol disrupts the PM and increases the permeability of cells to small molecules, including propidium iodide and calcium occurring after fewer nsPEF. Additionally, cholesterol depletion concurrently decreases the "dose" of nsPEF required to induce lethality. In summary, the results of the current study suggest that the PM cholesterol composition is an important determinant in the cellular response to nsPEF. (C) 2016 Elsevier B.V. All rights reserved.
机译:我们实验室的先前工作表明,暴露于纳秒脉冲电场(nsPEF)后,细胞膜中会形成纳米孔。我们观察到跨细胞系的急性膜损伤和24 h致死率对nsPEF的敏感性差异。基于这些数据,我们假设细胞对nsPEF的生物学反应取决于质膜(PM)的物理特性,包括区域胆固醇含量。本文提出的结果表明,膜胆固醇的消耗破坏了PM,并增加了细胞对小分子的通透性,包括nsPEF减少后发生的碘化丙啶和钙。另外,胆固醇的消耗同时降低了诱导致死性所需的nsPEF的“剂量”。总而言之,当前研究的结果表明,PM胆固醇成分是细胞对nsPEF反应的重要决定因素。 (C)2016 Elsevier B.V.保留所有权利。

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