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首页> 外文期刊>Biochemical Engineering Journal >Understanding the effect of ionic liquids as adjuvants in the partition of biomolecules in aqueous two-phase systems formed by polymers and weak salting-out agents
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Understanding the effect of ionic liquids as adjuvants in the partition of biomolecules in aqueous two-phase systems formed by polymers and weak salting-out agents

机译:理解离子液体作为佐剂在聚合物和弱盐水剂形成的两相体系中的生物分子分配中的辅助效果

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摘要

Ionic liquids (ILs) as adjuvants in polymer-salt aqueous two-phase systems (ATPS) have been used to improve the extraction of biomolecules. However, the impact of Its as adjuvants on the partition of biomolecules is still poorly understood. Previous works mostly focused on ATPS based on strong salting-out agents, which may mask the IL effect. In this work, ATPS formed by polyethylene glycol (PEG 400) and a weak salting-out salt ((NH4)(2)SO4) with a wide number of Its as adjuvants (chloride-based combined with cholinium, imidazolium, pyrrolidinium, piperidinium, tetralkylammonium and tetralkylphosphonium cations) were investigated. The respective phase diagrams were determined, and the systems extraction performance for a wide range of biomolecules (phenolic compounds, alkaloids and amino acids) was investigated. The results obtained show that ILs as adjuvants in polymer-salt ATPS modulate the partition of biomolecules. In particular, more hydrophobic ILs significantly enhance the partition of more hydrophobic biomolecules to the PEG-rich phase (where the IL is enriched). Furthermore, the intensity of the IL effect is more pronounced when using weak salting-out agents. A linear correlation between the biomolecules and the Its partition coefficients, and with the biomolecules octanol-water partition coefficients, was found. In most ATPS formed by polymers and salts using ILs as adjuvants, the biomolecules partition is driven by the Its partition and by the difference in hydrophobicity between the coexisting phases.
机译:作为聚合物 - 盐水性两相体系(ATP)中的佐剂的离子液体(ILS)已被用于改善生物分子的提取。然而,它作为佐剂对生物分子分区的影响仍然很清楚。以前的作品主要集中在基于强的盐水剂的ATP,这可能会掩盖IL效果。在这项工作中,具有聚乙二醇(PEG 400)形成的ATP和弱盐水((2)(2)SO 4),其具有众多作​​为佐剂(基于氯化物的氯化物,咪唑鎓,吡咯烷,哌啶研究,研究了四烷基铵和芳烷基膦酰基阳离子。确定各相图,并研究了各种生物分子(酚类化合物,生物碱和氨基酸)的系统提取性能。得到的结果表明,ILS作为聚合物 - 盐ATP中的佐剂调节生物分子的分隔。特别地,更多的疏水性ILS显着增强了更疏水的生物分子的分隔,以使富含富沉默的相(其中IL被富集)。此外,在使用弱盐水剂时,IL效应的强度更加明显。发现生物分子与其分配系数之间的线性相关性,以及生物分子辛烷醇分配系数。在使用ILS作为佐剂的聚合物和盐形成的大多数ATP中,生物分子分配由其分区驱动并通过共存相之间的疏水性差异。

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