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使用离子液体对哺乳动物细胞进行生物物理特性分析和低温保存。

Biophysical Characterization and Cryopreservation of Mammalian Cells Using Ionic Liquids.

机构信息

School of Science, College of STEM, RMIT University, Melbourne, Victoria 3000, Australia.

ARC Centre of Excellence for Nanoscale BioPhotonics, RMIT University, Melbourne, Victoria 3001, Australia.

出版信息

J Phys Chem B. 2024 Mar 14;128(10):2504-2515. doi: 10.1021/acs.jpcb.3c06797. Epub 2024 Feb 28.

Abstract

Ionic liquids (ILs) are a diverse class of solvents which can be selected for task-specific properties, making them attractive alternatives to traditional solvents. To tailor ILs for specific biological applications, it is necessary to understand the structure-property relationships of ILs and their interactions with cells. Here, a selection of carboxylate anion-based ILs were investigated as cryoprotectants, which are compounds added to cells before freezing to mitigate lethal freezing damage. The cytotoxicity, cell permeability, thermal behavior, and cryoprotective efficacy of the ILs were assessed with two model mammalian cell lines. We found that the biophysical interactions, including permeability of the ILs, were influenced by considering the IL pair together, rather than as single species acting independently. All of the ILs tested had high cytotoxicity, but ethylammonium acetate demonstrated good cryoprotective efficacy for both cell types tested. These results demonstrate that despite toxicity, ILs may be suitable for certain biological applications. It also demonstrates that more research is required to understand the contribution of ion pairs to structure-property relationships and that knowing the behavior of a single ionic species will not necessarily predict its behavior as part of an IL.

摘要

离子液体 (ILs) 是一类具有多种溶剂特性的溶剂,可根据特定任务的特性进行选择,因此成为传统溶剂的替代品。为了根据特定的生物应用来调整 IL 的结构,有必要了解 IL 的结构-性能关系及其与细胞的相互作用。在这里,选择了一系列基于羧酸根阴离子的 IL 作为冷冻保护剂,即在细胞冷冻前添加的化合物,以减轻致命的冷冻损伤。使用两种模型哺乳动物细胞系评估了 IL 的细胞毒性、细胞通透性、热行为和冷冻保护效果。我们发现,包括 IL 渗透性在内的生物物理相互作用受到将 IL 对一起考虑的影响,而不是将它们作为单独的物种独立作用。所有测试的 IL 都具有高细胞毒性,但乙酸乙酯在两种测试的细胞类型中都表现出良好的冷冻保护效果。这些结果表明,尽管存在毒性,IL 可能适用于某些生物应用。它还表明,需要进一步研究以了解离子对在结构-性能关系中的贡献,并且仅了解单个离子物种的行为不一定能预测其作为 IL 一部分的行为。

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