Ruiz-Angel Maria Jose, Pino Veronica, Carda-Broch Samuel, Berthod Alain
Laboratoire des Sciences Analytiques, Université de Lyon, Bat. CPE, 69622 Villeurbanne, France.
J Chromatogr A. 2007 Jun 1;1151(1-2):65-73. doi: 10.1016/j.chroma.2006.11.072. Epub 2006 Dec 12.
A new aqueous two phase liquid system (ATPS) based on the ionic liquid 1-butyl-3-methyl imidazolium chloride (BMIM Cl), potassium dibasic phosphate (K(2)HPO(4)) and water was recently proposed in the literature. The full phase diagram of this ATPS was prepared and some tie lines were fully determined. It was compared to classical ATPSs based on polyethylene glycol with an average molecular mass of 1000 (PEG 1000) and 10,000 (PEG 10000) and K(2)HPO(4). Two countercurrent chromatography (CCC) columns, a hydrostatic Sanki and a J type hydrodynamic CCC columns were used to test the liquid phase retention of these ATPSs in all possible configurations. It was found that the BMIM Cl ATPS liquid phases were much easier to retain in the two CCC columns than the PEG 1000 ATPS phases. Using protein and alcohol solutes, it was established that the BMIM Cl ATPS has a polarity completely different from that of the PEG 1000 ATPS. For example, ovalbumin partitions equally between the two phases of the PEG 1000 ATPS (K(D)=1.4) when it is completely located in the BMIM Cl upper phase of the ionic liquid ATPS (K(D)=180). The discrimination factor of the ionic liquid system and its intrinsic hydrophobicity were respectively found three times higher and ten times lower than the respective values of the PEG 1000 ATPS.
最近文献中提出了一种基于离子液体1-丁基-3-甲基咪唑氯盐(BMIM Cl)、磷酸氢二钾(K₂HPO₄)和水的新型双水相液体体系(ATPS)。绘制了该ATPS的完整相图,并完全确定了一些系线。将其与基于平均分子量为1000(PEG 1000)和10000(PEG 10000)的聚乙二醇以及K₂HPO₄的经典ATPS进行了比较。使用了两个逆流色谱(CCC)柱,一个静水压Sanki柱和一个J型流体动力学CCC柱,以测试这些ATPS在所有可能配置下的液相保留情况。发现BMIM Cl ATPS液相在两个CCC柱中比PEG 1000 ATPS相更容易保留。使用蛋白质和醇类溶质,确定了BMIM Cl ATPS的极性与PEG 1000 ATPS的极性完全不同。例如,卵清蛋白在PEG 1000 ATPS的两相之间均匀分配(Kₐ=1.4),而当它完全位于离子液体ATPS的BMIM Cl上相时(Kₐ=180)。发现离子液体体系的鉴别因子及其固有疏水性分别比PEG 1000 ATPS的相应值高3倍和低10倍。