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Retention Behavior of Polyethylene Glycol and Its Influence on Protein Elution on Hydrophobic Interaction Chromatography Media

机译:疏水作用色谱介质对聚乙二醇的保留行为及其对蛋白质洗脱的影响

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摘要

The retention behavior of polyethylene glycol (PEG) on different types of hydrophobic interaction chromatography (HIC) resins containing butyl, octyl, and phenyl ligands was analyzed. An incomplete elution or splitting of the polymer peak into two parts was observed, where the first one was eluted at the dead time of the column, whereas the second one was strongly retained. The phenomenon was attributed to conformation changes of the polymer upon its adsorption on hydrophobic surface. The effect enhanced with increasing molecular weight of the polymer and hydrophobicity of the HIC media. Addition of PEG to the mobile phase reduced binding of proteins to HIC resins, which was demonstrated with two model systems: lysozyme (LYZ) and immunoglobulin G (IgG), and their mixtures. In case of LYZ, the presence of PEG caused reduction in the protein retention, whereas for IgG—a decrease in efficiency of the protein capture. The effect depended on the adsorption pattern of PEG; it was pronounced in the systems in which conformational changes of the polymer were suggested to occur.
机译:分析了聚乙二醇(PEG)在不同类型的含有丁基,辛基和苯基配体的疏水相互作用色谱(HIC)树脂上的保留行为。观察到聚合物峰的洗脱不完全或分为两部分,其中第一个在色谱柱的死点时间洗脱,而第二个被牢固保留。该现象归因于聚合物在疏水表面上吸附后的构象变化。随着聚合物分子量的增加和HIC介质疏水性的增强,效果会增强。在流动相中添加PEG可以减少蛋白质与HIC树脂的结合,这已在两个模型系统中证明:溶菌酶(LYZ)和免疫球蛋白G(IgG),及其混合物。在LYZ的情况下,PEG的存在会导致蛋白质保留的减少,而对于IgG而言,蛋白质捕获效率的降低。效果取决于PEG的吸附方式。这在建议发生聚合物构象变化的体系中是很明显的。

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