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Molecular mechanisms of ionic liquid cytotoxicity probed by an integrated experimental and computational approach

机译:集成实验和计算方法探讨离子液体细胞毒性的分子机理

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摘要

Ionic liquids (ILs) are salts that remain liquid down to low temperatures, and sometimes well below room temperature. ILs have been called “green solvents” because of their extraordinarily low vapor pressure and excellent solvation power, but ecotoxicology studies have shown that some ILs exhibit greater toxicity than traditional solvents. A fundamental understanding of the molecular mechanisms responsible for IL toxicity remains elusive. Here we show that one mode of IL toxicity on unicellular organisms is driven by swelling of the cell membrane. Cytotoxicity assays, confocal laser scanning microscopy, and molecular simulations reveal that IL cations nucleate morphological defects in the microbial cell membrane at concentrations near the half maximal effective concentration (EC50) of several microorganisms. Cytotoxicity increases with increasing alkyl chain length of the cation due to the ability of the longer alkyl chain to more easily embed in, and ultimately disrupt, the cell membrane.
机译:离子液体(ILs)是在低温直至有时甚至远低于室温下仍保持液态的盐。 IL由于其极低的蒸气压和出色的溶剂化能力而被称为“绿色溶剂”,但是生态毒理学研究表明,某些IL比传统溶剂具有更大的毒性。对导致IL毒性的分子机制的基本了解仍然难以捉摸。在这里,我们表明对单细胞生物的IL毒性的一种模式是由细胞膜膨胀驱动的。细胞毒性测定,共聚焦激光扫描显微镜和分子模拟显示,IL阳离子在几种微生物的半数最大有效浓度(EC50)接近一半的浓度下,使微生物细胞膜中的形态缺陷成核。细胞毒性随着阳离子烷基链长度的增加而增加,这是由于较长的烷基链更容易嵌入并最终破坏细胞膜的能力。

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