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用于在阴离子交换或疏水相互作用模式下分离蛋白质的多模式液相色谱柱。

Multimodal liquid chromatography columns for the separation of proteins in either the anion-exchange or hydrophobic-interaction mode.

作者信息

Kennedy L A, Kopaciewicz W, Regnier F E

出版信息

J Chromatogr. 1986 May 30;359:73-84. doi: 10.1016/0021-9673(86)80063-2.

Abstract

Several high-performance stationary phases suitable for protein chromatography were synthesized. Columns packed with these materials could be operated independently in either the anion-exchange or hydrophobic-interaction mode. Two approaches were used to prepare these materials. In the first method, a polyamine was adsorbed on the surface of macroporous silica and then crosslinked with a multifunctional oxirane. The hydrophobicity of the crosslinking agent and the extent of interconnection were used to modulate the electrostatic and solvophobic interactions. The second approach also utilized a crosslinked polyamine stationary phase; however, the forces of interaction were attenuated through controlled acylation of surface amines with a small anhydride molecule. The resolving ability of these columns, functioning in either mode, was comparable to commercial high-performance liquid chromatographic columns, designed to operate by a single retention mechanism. Column selectivity for proteins was completely different in each mode. Protein fractions collected from a multimodal column, operated in the anion-exchange mode, could be further purified by rechromatographing them on the same column in the hydrophobic-interaction mode. Utility of the multimodal column was demonstrated with the fractionation of several cytochromes and ferredoxins from the cyanobacterium Microcystis aeruginosa.

摘要

合成了几种适用于蛋白质色谱的高性能固定相。填充有这些材料的色谱柱可以在阴离子交换或疏水相互作用模式下独立运行。制备这些材料采用了两种方法。在第一种方法中,将一种多胺吸附在大孔二氧化硅表面,然后与一种多功能环氧乙烷交联。利用交联剂的疏水性和互连程度来调节静电和疏溶剂相互作用。第二种方法也使用了交联多胺固定相;然而,通过用一种小分子酸酐对表面胺进行可控酰化来减弱相互作用的力量。这些色谱柱在任何一种模式下运行时的分离能力都与设计通过单一保留机制运行的商用高效液相色谱柱相当。每种模式下色谱柱对蛋白质的选择性完全不同。从以阴离子交换模式运行的多模式色谱柱收集的蛋白质馏分,可以通过在同一色谱柱上以疏水相互作用模式重新色谱分离进一步纯化。通过从铜绿微囊藻中分离几种细胞色素和铁氧化还原蛋白证明了多模式色谱柱的实用性。

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