Sun L, Carr P W
Physical and Analytical Research Division, Eastman Chemical Company, Kingsport, Tennessee 37662, USA.
Anal Chem. 1995 Oct 15;67(20):3717-21. doi: 10.1021/ac00116a016.
Polybutadiene-coated zirconia (PBD-ZrO2), when used as a stationary phase in conjunction with a mobile phase containing phosphates, constitutes a reversed-phase/cation-exchange mixed-mode chromatographic system. The separation of proteins on this phase can be achieved only through the use of mobile phases containing the correct combination of phosphoric acid, displacing salt, and organic cosolvent. We found that excessive Coulombic interactions between proteins and the stationary phase impair the system performance for the separation of proteins. The effects of mobile phase conditions on the separation of proteins using phosphate-adsorbed PBD-ZrO2 are studied in this work. Factors such as the presence of a multivalent cation, mobile phase pH, phosphate concentration, and salt concentration can be manipulated to reduce the net negative charge on the surface and thereby improve the performance of the system toward the separation of proteins.
聚丁二烯包覆的氧化锆(PBD-ZrO₂)与含磷酸盐的流动相一起用作固定相时,构成了反相/阳离子交换混合模式色谱系统。只有通过使用含有磷酸、置换盐和有机共溶剂正确组合的流动相,才能在该固定相上实现蛋白质的分离。我们发现蛋白质与固定相之间过度的库仑相互作用会损害蛋白质分离的系统性能。本研究考察了流动相条件对使用磷酸盐吸附的PBD-ZrO₂分离蛋白质的影响。可以通过控制多价阳离子的存在、流动相pH值、磷酸盐浓度和盐浓度等因素来减少表面的净负电荷,从而提高系统对蛋白质的分离性能。