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Design of environmentally friendly ionic liquid aqueous two-phase systems for the efficient and high activity extraction of proteins

机译:高效,高活性提取蛋白质的环保型离子液体水两相系统的设计

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摘要

Ionic liquids (ILs) have numerous applications in industrial processes as a benign alternative to conventional volatile organic solvents. However, many of them are toxic to organisms and are poorly biodegradable. In this work, a series of environmentally friendly cholinium ILs have been designed and synthesized. It was found that these ILs could form aqueous two-phase systems (ATPSs) with polypropylene glycol 400 (PPG400) which is thermo-sensitive, non-toxic and biodegradable. In order to understand the phase formation processes and possible application of these ATPSs for extraction/ separation of proteins, the binodal curves and tie lines of these ATPSs were measured at 25 °C, and the effects of anionic structure of the ionic liquids, nature of the proteins and difference in the concentration of top- and bottom-phases on the partitioning behavior of some typical proteins were investigated systematically. It was shown that bovine serum albumin (BSA), trypsin, papain and lysozyme could be enriched effectively into the ionic liquid-rich phase of the ATPSs, and single-step extraction efficiency could be as high as 86.4-99.9% under the optimized conditions. Furthermore, enzyme activity of the native trypsin in water and in aqueous ionic liquid solutions was determined by using N-a-benzoyl-L-arginine ethyl ester as a substrate, and activity increases to about 127% was observed after 13 months storage. In addition, PPG400 has been recovered simply by heating and reused in the next extraction processes. This avoids the non-sustainable issue of highly salty water produced in the application of the polyethylene glycol (PEG) + salt and ionic liquid + salt ATPSs.
机译:离子液体(IL)作为常规挥发性有机溶剂的良性替代品,在工业过程中具有众多应用。然而,它们中的许多对生物有毒并且生物降解性差。在这项工作中,已经设计并合成了一系列环境友好的胆碱IL。已发现这些IL可以与丙二醇400(PPG400)形成热敏感,无毒且可生物降解的水性两相系统(ATPS)。为了了解这些ATPS的相形成过程以及在蛋白质的提取/分离中的可能应用,在25°C下测量了这些ATPS的双曲线曲线和联系线,以及离子液体的阴离子结构的影响,系统地研究了蛋白质以及上,下相浓度对某些典型蛋白质分配行为的影响。结果表明,牛血清白蛋白(BSA),胰蛋白酶,木瓜蛋白酶和溶菌酶可以有效地富集到ATPS的离子液体富集相中,在优化条件下单步提取效率可以达到86.4-99.9% 。此外,通过使用N-α-苯甲酰基-L-精氨酸乙酯作为底物来测定天然胰蛋白酶在水和离子液体水溶液中的酶活性,并且在贮存13个月后观察到活性增加到约127%。此外,PPG400只需加热即可回收,并在下一个提取过程中重新使用。这避免了在应用聚乙二醇(PEG)+盐和离子液体+盐ATPS时产生的高咸水的不可持续问题。

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