Lin S, Blanco R, Karger B L
Barnett Institute, Northeastern University, Boston, MA 02115.
J Chromatogr. 1991 Sep 20;557(1-2):369-82. doi: 10.1016/s0021-9673(01)87145-4.
Adsorption-desorption isotherms of bovine beta-lactoglobulin A (beta-lact A) on a weakly hydrophobic stationary phase (C1-ether) were measured by frontal analysis. The adsorption isotherms obtained at different pH were found to be dramatically different in shape, column capacity and desorption reversibility. At pH 4.5, an S-shaped adsorption isotherm was observed whereas at pH 6.0 a Langmuir isotherm was found. In addition, the desorption isotherm at pH 6.0 was found to overlap with the adsorption isotherm, and the adsorption-desorption process of beta-lact A under this condition could be characterized by a fully reversible Langmuir model. The desorption isotherm at pH 4.5, however, did not retrace the adsorption isotherm, resulting in hysteresis loops. A higher aggregate (tetramer) of beta-lact A is shown to be in an equilibrium with the beta-lact A protomer (dimer) at pH 4.5 whereas the dimer alone is predominant at pH 6.0. It is further shown that changes in the absorption coefficient between the adsorption and the desorption cycles for the tetramer at pH 4.5 can account for the hysteresis. The results demonstrate that pH can be a sensitive parameter in protein adsorption isotherm behavior and ultimately the behavior of species in preparative-scale chromatography.
采用前沿分析法测定了牛β-乳球蛋白A(β-lact A)在弱疏水固定相(C1-醚)上的吸附-解吸等温线。发现在不同pH值下获得的吸附等温线在形状、柱容量和解吸可逆性方面存在显著差异。在pH 4.5时,观察到S形吸附等温线,而在pH 6.0时发现朗缪尔等温线。此外,发现pH 6.0时的解吸等温线与吸附等温线重叠,在此条件下β-lact A的吸附-解吸过程可用完全可逆的朗缪尔模型表征。然而,pH 4.5时的解吸等温线并未重现吸附等温线,从而导致滞后环。结果表明,在pH 4.5时,β-lact A的较高聚集体(四聚体)与β-lact A原体(二聚体)处于平衡状态,而在pH 6.0时仅二聚体占主导。进一步表明,pH 4.5时四聚体在吸附和解吸循环之间吸收系数的变化可解释滞后现象。结果表明,pH可能是蛋白质吸附等温线行为以及最终制备规模色谱中物种行为的一个敏感参数。