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疏水作用色谱中的蛋白质吸附等温线行为

Protein adsorption isotherm behavior in hydrophobic interaction chromatography.

作者信息

Chen Jie, Cramer Steven M

机构信息

Department of Chemical and Biological Engineering, RPI, NY 12180, USA.

出版信息

J Chromatogr A. 2007 Sep 21;1165(1-2):67-77. doi: 10.1016/j.chroma.2007.07.038. Epub 2007 Jul 24.

Abstract

The adsorption behavior of proteins in hydrophobic interaction chromatography (HIC) was evaluated by determining the isotherms of a wide range of proteins on various HIC resin systems. Parallel batch experiments were carried out with eleven proteins on three hydrophobic resins with different ligand chemistries and densities. The effects of salt concentration, resin chemistry and protein properties on the isotherms were also examined. The resulting isotherms exhibited unique patterns of adsorption behaviors. For certain protein-resin combinations, a "critical salt behavior" was observed where the amount of protein bound to the resin increased significantly above this salt concentration. Proteins that exhibited this behavior tended to be relatively large with more solvent accessible hydrophobic surface area. Further, calculations indicated that under these conditions the occupied surface area of the adsorbed protein layer could exceed the accessible surface area. The establishment of unique classes of adsorption behavior may shed light on our understanding of the behavior of proteins in HIC systems.

摘要

通过测定多种蛋白质在各种疏水作用色谱(HIC)树脂体系上的等温线,评估了蛋白质在疏水作用色谱中的吸附行为。使用11种蛋白质在三种具有不同配体化学性质和密度的疏水树脂上进行了平行批次实验。还研究了盐浓度、树脂化学性质和蛋白质性质对等温线的影响。所得等温线呈现出独特的吸附行为模式。对于某些蛋白质 - 树脂组合,观察到一种“临界盐行为”,即高于该盐浓度时,与树脂结合的蛋白质数量显著增加。表现出这种行为的蛋白质往往相对较大,具有更多可溶剂接触的疏水表面积。此外,计算表明在这些条件下,吸附蛋白质层的占据表面积可能超过可及表面积。独特吸附行为类别的建立可能有助于我们理解蛋白质在HIC系统中的行为。

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