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Good’s Buffer Ionic Liquids as Relevant Phase-Forming Components of Self-Buffered Aqueous Biphasic Systems

机译:Goods缓冲离子液体作为自缓冲水两相系统的相关相形成成分

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摘要

A series of new self-buffering ionic liquids (ILs) based on Good’s buffers (GBs) anions and the tetrabutylphosphonium cation ([P4444]+) was here synthesized and characterized. The self-buffering behaviour of the GB-ILs was confirmed by measuring their protonation constants by potentiometry. Further, their ability to form aqueous biphasic systems with the biodegradable potassium citrate salt was evaluated, and further investigated for the extraction of proteins, using bovine serum albumin (BSA) as a model protein. If these ionic structures display self-buffering characteristics as well as a low toxicity towards the luminescent bacteria Vibrio fischeri, they were additionally found to be highly effective in the formation of ABS and in the extraction of BSA - extraction efficiencies of 100% to the IL-rich phase obtained in a single-step. The BSA secondary structure in the aqueous IL–rich solutions was evaluated through infrared spectroscopic studies revealing the protein-friendly nature of the synthesized ILs. Dynamic light scattering (DLS), “COnductor-like Screening MOdel for Real Solvents” (COSMO-RS), and molecular docking studies were finally carried out to better understand the main driving forces of the extraction process. The results suggest that van der Waals and hydrogen-bonding interactions are important driving forces of the protein migration towards the GB-IL-rich phase, while the molecular docking investigations demonstrated a stabilizing effect of the studied ILs over the protein.
机译:本文合成并表征了一系列基于Good's缓冲液(GBs)阴离子和四丁基phosph阳离子([P4444] + )的新型自缓冲离子液体(IL)。 GB-IL的自我缓冲行为通过电位计测量其质子化常数来确认。此外,评估了它们与可生物降解的柠檬酸钾盐形成水性双相系统的能力,并进一步研究了使用牛血清白蛋白(BSA)作为模型蛋白来提取蛋白。如果这些离子结构表现出自我缓冲特性以及对发光细菌费氏弧菌的低毒性,那么它们还被发现在形成ABS和提取BSA方面非常有效-提取效率达到IL的100%一步获得富集相。通过红外光谱研究对富含IL的水溶液中的BSA二级结构进行了评估,揭示了合成IL的蛋白质友好性质。最后进行了动态光散射(DLS),“用于实际溶剂的类似导体的屏蔽模型”(COSMO-RS)和分子对接研究,以更好地了解提取过程的主要驱动力。结果表明,范德华和氢键相互作用是蛋白质向富含GB-IL的相迁移的重要驱动力,而分子对接研究表明,所研究的IL对蛋白质具有稳定作用。

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