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氯化钠和高氯酸钠对水-葡聚糖-聚乙二醇和聚乙二醇-硫酸钠两相体系中溶质性质和分配行为的影响。

Effects of sodium chloride and sodium perchlorate on properties and partition behavior of solutes in aqueous dextran-polyethylene glycol and polyethylene glycol-sodium sulfate two-phase systems.

机构信息

IBB-Institute for Biotechnology and Bioengineering, Centre of Biological Engineering, Universidade do Minho, Campus de Gualtar, 4710-057 Braga, Portugal.

Cleveland Diagnostics, 3615 Superior Ave., Cleveland, OH, 44114, USA.

出版信息

J Chromatogr A. 2019 Jan 4;1583:28-38. doi: 10.1016/j.chroma.2018.11.015. Epub 2018 Nov 12.

Abstract

Effects of two salt additives, NaCl and NaClO, at the fixed concentrations of 0.215 M on the properties of aqueous two-phase systems (ATPSs) formed by dextran (Dex) and polyethylene glycol (PEG), and the effects of NaClO at the same concentration on the properties of ATPS formed by PEG and NaSO were examined. The effects of these salt additives on partitioning of 12 small organic compounds and five proteins in the above ATPSs were studied. In each system with a given salt additive, 0.5 M sorbitol, 0.5 M sucrose, and 0.5 M and 1.5 M trimethylamine N-oxide (TMAO) were also used as additives. The results obtained were compared with those reported previously for the Dex-PEG ATPS without salt additives and PEG-NaSO ATPS without salt additives and in the presence of 0.215 M NaCl. It is shown that the differences between the solvent properties of the phases in the systems formed by polymer and salt exceed those observed in the systems formed by two polymers. The three most significant solvent features of the systems are hydrophobic and electrostatic properties and hydrogen bonding donor acidity of the solvent media. Osmolyte additives were found to have a significant effect on the differences between the electrostatic properties of the phases. Analysis of the partition coefficients of 12 organic compounds and five proteins showed that the osmolyte additives may affect the partition behavior of compounds in a compound-specific manner. The relative contributions of different types of interactions of a given compound with aqueous media change in the presence of salt and osmolyte additives. Analysis of the variability ranges of partition coefficient, K, in the systems studied showed that for small organic compounds, the ranges of K-values observed in the PEG-NaSO ATPSs exceed those determined in the Dex-PEG ATPSs quite significantly, whereas for proteins, the range of K-values in Dex-PEG ATPSs exceeded those in PEG-NaSO ATPSs for three proteins, and were very similar for two proteins. This observation supported the notion that the ATPSs formed by two polymers are more suitable for protein analysis than those formed by a single polymer and a salt. The single polymer-salt ATPSs have an advantage for protein isolation/separation.

摘要

考察了固定浓度为 0.215 M 的两种盐添加剂 NaCl 和 NaClO 对由葡聚糖(Dex)和聚乙二醇(PEG)形成的双水相系统(ATPS)性质的影响,以及 NaClO 在相同浓度下对由 PEG 和 NaSO 形成的 ATPS 性质的影响。研究了这些盐添加剂对上述 ATPS 中 12 种小分子化合物和 5 种蛋白质分配的影响。在每个含有特定盐添加剂的系统中,还使用了 0.5 M 山梨醇、0.5 M 蔗糖以及 0.5 M 和 1.5 M 三甲基胺 N-氧化物(TMAO)作为添加剂。将获得的结果与先前报道的没有盐添加剂的 Dex-PEG ATPS 和没有盐添加剂以及存在 0.215 M NaCl 的 PEG-NaSO ATPS 的结果进行了比较。结果表明,由聚合物和盐形成的系统中各相间溶剂性质的差异大于由两种聚合物形成的系统中的差异。溶剂介质的溶剂化性质的三个最重要的特征是疏水性、静电性质和氢键供体酸度。渗透剂添加剂对各相间静电性质的差异有显著影响。对 12 种有机化合物和 5 种蛋白质的分配系数分析表明,渗透剂添加剂可能以化合物特异性的方式影响化合物的分配行为。在存在盐和渗透剂添加剂的情况下,给定化合物与水相介质相互作用的不同类型的相对贡献会发生变化。对所研究系统中分配系数 K 的可变性范围的分析表明,对于小分子化合物,在 PEG-NaSO ATPS 中观察到的 K 值范围明显大于在 Dex-PEG ATPS 中确定的范围,而对于蛋白质,在 Dex-PEG ATPS 中观察到的 K 值范围对于三种蛋白质来说超过了在 PEG-NaSO ATPS 中的值,而对于两种蛋白质来说非常相似。这一观察结果支持了这样一种观点,即由两种聚合物形成的 ATPS 比由单一聚合物和盐形成的 ATPS 更适合蛋白质分析。对于蛋白质的分离/分离,单一聚合物-盐 ATPS 具有优势。

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