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二甲基亚砜在含胆固醇脂质膜中的作用:计算机模拟与细胞实验的比较研究。

Effects of dimethyl sulfoxide in cholesterol-containing lipid membranes: a comparative study of experiments in silico and with cells.

机构信息

Université Paris-Sud, Laboratoire de Vectorologie et Thérapeutiques Anticancéreuses, UMR 8203, Orsay, France.

出版信息

PLoS One. 2012;7(7):e41733. doi: 10.1371/journal.pone.0041733. Epub 2012 Jul 25.

Abstract

Dimethyl sulfoxide (DMSO) has been known to enhance cell membrane permeability of drugs or DNA. Molecular dynamics (MD) simulations with single-component lipid bilayers predicted the existence of three regimes of action of DMSO: membrane loosening, pore formation and bilayer collapse. We show here that these modes of action are also reproduced in the presence of cholesterol in the bilayer, and we provide a description at the atomic detail of the DMSO-mediated process of pore formation in cholesterol-containing lipid membranes. We also successfully explore the applicability of DMSO to promote plasma membrane permeability to water, calcium ions (Ca(2+)) and Yo-Pro-1 iodide (Yo-Pro-1) in living cell membranes. The experimental results on cells in culture can be easily explained according to the three expected regimes: in the presence of low doses of DMSO, the membrane of the cells exhibits undulations but no permeability increase can be detected, while at intermediate DMSO concentrations cells are permeabilized to water and calcium but not to larger molecules as Yo-Pro-1. These two behaviors can be associated to the MD-predicted consequences of the effects of the DMSO at low and intermediate DMSO concentrations. At larger DMSO concentrations, permeabilization is larger, as even Yo-Pro-1 can enter the cells as predicted by the DMSO-induced membrane-destructuring effects described in the MD simulations.

摘要

二甲基亚砜 (DMSO) 已被证明可以增强药物或 DNA 的细胞膜通透性。使用单组分脂质双层的分子动力学 (MD) 模拟预测了 DMSO 的三种作用模式:膜松弛、孔形成和双层崩溃。我们在这里表明,在双层中存在胆固醇的情况下,这些作用模式也得到了再现,并且我们提供了在含有胆固醇的脂质膜中 DMSO 介导的孔形成过程的原子细节描述。我们还成功探索了 DMSO 在促进含有胆固醇的脂质双层中细胞膜对水、钙离子 (Ca(2+)) 和 Yo-Pro-1 碘化物 (Yo-Pro-1) 的通透性方面的适用性。在培养的细胞中的实验结果可以根据三种预期的作用模式来轻松解释:在低剂量 DMSO 的存在下,细胞的膜会出现波动,但不会检测到通透性增加,而在中间 DMSO 浓度下,细胞会对水和钙通透性增加,但对较大的分子如 Yo-Pro-1 则不会。这两种行为可以与 MD 预测的 DMSO 在低浓度和中间浓度下的作用后果相关联。在较高的 DMSO 浓度下,通透性会更大,因为即使是 Yo-Pro-1 也可以进入细胞,正如 MD 模拟中描述的 DMSO 诱导的破坏膜效应所预测的那样。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/874e/3404987/8a0c2782a39a/pone.0041733.g001.jpg

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