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Interactions of Aqueous Imidazolium-Based Ionic Liquid Mixtures with Solid-Supported Phospholipid Vesicles

机译:咪唑基水性离子液体混合物与固体负载的磷脂囊泡的相互作用

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摘要

Despite the environmentally friendly reputation of ionic liquids (ILs), their safety has been recently questioned given their potential as cytotoxic agents. The fundamental mechanisms underlying the interactions between ILs and cells are less studied and by far not completely understood. Biomimetic films are here important biophysical model systems to elucidate fundamental aspects and mechanisms relevant for a large range of biological interaction ranging from signaling to drug reception or toxicity. Here we use dissipative quartz crystal microbalance QCM-D to examine the effect of aqueous imidazolium-based ionic liquid mixtures on solid-supported biomimetic membranes. Specifically, we assess in real time the effect of the cation chain length and the anion nature on a supported vesicle layer of the model phospholipid DMPC. Results indicate that interactions are mainly driven by the hydrophobic components of the IL, which significantly distort the layer and promote vesicle rupture. Our analyses evidence the gradual decrease of the main phase transition temperature upon increasing IL concentration, reflecting increased disorder by weakening of lipid chain interactions. The degree of rupture is significant for ILs with long hydrophobic cation chains and large hydrophobic anions whose behavior is reminiscent of that of antimicrobial peptides.
机译:尽管离子液体(ILs)在环境方面享有声誉,但由于其具有细胞毒性剂的潜力,最近人们对其安全性提出了质疑。 IL和细胞之间的相互作用的基本机制研究较少,到目前为止还没有完全了解。仿生膜在这里是重要的生物物理模型系统,用于阐明与从信号传递到药物接受或毒性的各种生物相互作用有关的基本方面和机制。在这里,我们使用耗散石英晶体微量天平QCM-D来检查基于咪唑鎓水溶液的离子液体混合物对固体支撑仿生膜的影响。具体而言,我们实时评估阳离子磷脂长度和阴离子性质对模型磷脂DMPC的支持囊泡层的影响。结果表明,相互作用主要是由IL的疏水成分驱动的,IL的疏水成分显着扭曲了层并促进了囊泡破裂。我们的分析表明,随着IL浓度的增加,主相变温度逐渐降低,这反映了通过减弱脂链相互作用而增加的无序状态。对于具有长疏水阳离子链和大疏水阴离子的IL,其断裂程度非常重要,其行为让人联想到抗菌肽的行为。

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