Department of Biotechnology, Delft University of Technology, Julianalaan 67, 2628 BC, Delft, The Netherlands.
J Chromatogr A. 2010 Oct 29;1217(44):6829-50. doi: 10.1016/j.chroma.2010.07.069. Epub 2010 Aug 3.
The thermodynamic modeling of protein adsorption on mixed-mode adsorbents functionalized with ligands carrying both hydrophobic and electrostatic groups was undertaken. The developed mixed mode isotherm was fitted with protein adsorption data obtained for five different proteins on four different mixed mode adsorbents by 96-well microtitre plate high throughput batch experiments on a robotic workstation. The developed mixed mode isotherm was capable of describing the adsorption isotherms of all five proteins (having widely different molecular masses and iso-electric points) on the four mixed mode adsorbents and over a wide range of salt concentrations and solution pH, and provided a unique set of physically meaningful parameters for each resin-protein-pH combination. The model could capture the typically observed minimum in mixed mode protein adsorption and predict the precise salt concentration at which this minimum occurs. The possibility of predicting the salt concentration at which minimum protein binding occurs presents new opportunities for designing better elution strategies in mixed mode protein chromatography. Salt-protein interactions were shown to have important consequences on mixed mode protein adsorption when they occur. Finally, the mixed mode isotherm also gave very good fit with literature data of BSA adsorption on a different mixed mode adsorbent not examined in this study. Hence, the mixed mode isotherm formalism presented in this study can be used with any mixed mode adsorbent having the hydrophobic and electrostatic functional groups. It also provides the basis for detailed modeling and optimization of mixed mode chromatographic separation of proteins.
开展了配基同时带有疏水基团和静电基团的混合模式吸附剂上蛋白质吸附的热力学建模研究。通过在机器人工作站上进行的 96 孔微量滴定板高通量批量实验,用四种不同的混合模式吸附剂对五种不同蛋白质的蛋白质吸附数据对所开发的混合模式等温线进行了拟合。所开发的混合模式等温线能够描述五种蛋白质(具有广泛不同的分子量和等电点)在四种混合模式吸附剂上的吸附等温线,并且在很宽的盐浓度和溶液 pH 范围内,并且为每个树脂-蛋白质-pH 组合提供了一组独特的具有物理意义的参数。该模型可以捕捉到通常观察到的混合模式蛋白质吸附的最小值,并预测该最小值发生的确切盐浓度。预测最小蛋白质结合发生的盐浓度的可能性为设计混合模式蛋白质色谱中的更好洗脱策略提供了新的机会。当盐-蛋白质相互作用发生时,它们对混合模式蛋白质吸附有重要影响。最后,混合模式等温线也与本研究中未检查的不同混合模式吸附剂上 BSA 吸附的文献数据非常吻合。因此,本研究中提出的混合模式等温线形式可以与具有疏水基团和静电基团的任何混合模式吸附剂一起使用。它还为蛋白质的混合模式色谱分离的详细建模和优化提供了基础。