Xu Xuankuo, Lenhoff Abraham M
Center for Molecular and Engineering Thermodynamics, Department of Chemical Engineering, University of Delaware, Newark, Delaware 19716, USA.
J Phys Chem B. 2008 Jan 24;112(3):1028-40. doi: 10.1021/jp0754233. Epub 2008 Jan 3.
The equilibrium adsorption of three small basic proteins was measured on cation exchangers under various solution conditions and was used as the basis for developing a predictive approach for correlating adsorption behavior. A mechanistically based isotherm model is used to model the equilibrium adsorption so as to facilitate isotherm prediction using minimal experimental data. The model explicitly considers the contributions of protein-surface and protein-protein interactions, and decoupling them allows each to be correlated with different experimental measurements. Specifically, protein-surface interactions are related to chromatographic data in the form of the isocratic retention factor (k'), while protein-protein interactions are analyzed on the basis of high-coverage isotherm data on an arbitrary stationary phase. Analysis of experimental data within this framework reveals a high level of consistency. The model is also used to facilitate prediction of adsorption isotherms on other ion-exchange media using isotherms on one adsorbent.
在各种溶液条件下,测量了三种小碱性蛋白质在阳离子交换剂上的平衡吸附,并以此为基础开发了一种预测方法,用于关联吸附行为。使用基于机理的等温线模型对平衡吸附进行建模,以便使用最少的实验数据进行等温线预测。该模型明确考虑了蛋白质-表面和蛋白质-蛋白质相互作用的贡献,将它们解耦可以使每个贡献与不同的实验测量相关联。具体而言,蛋白质-表面相互作用与等度保留因子(k')形式的色谱数据相关,而蛋白质-蛋白质相互作用则基于任意固定相上的高覆盖等温线数据进行分析。在此框架内对实验数据的分析显示出高度的一致性。该模型还用于利用一种吸附剂上的等温线来促进预测其他离子交换介质上的吸附等温线。