Haupt K, Bueno S M, Vijayalakshmi M A
Laboratoire d'Interaction Moléculaire et Technologie des Séparations (LIMTechS), Université de Technologie de Compiégne, France.
J Chromatogr B Biomed Appl. 1995 Dec 1;674(1):13-21. doi: 10.1016/0378-4347(95)00282-9.
L-Histidine as pseudobiospecific ligand was immobilized onto poly(ethylene vinyl alcohol) hollow-fiber membranes to obtain an affinity support for immunoglobulin G (IgG) purification. The interaction of human IgG with the affinity membranes was studied by chromatography and equilibrium binding analysis. Adsorption was possible over a broad pH range and was found to depend strongly on the nature of the buffer ions rather than on ionic strength. With zwitterionic buffers like morpholinopropanesulfonic acid (Mops) and hydroxyethylpiperazineethanesulfonic acid (Hepes), much higher adsorption capacities were obtained than with other buffers like Tris-HCl and phosphate buffers. An inhibition analysis revealed that non-zwitterionic buffers competitively inhibit IgG binding, whereas Mops and Hepes in their zwitterionic form do not. By choosing the appropriate buffer system, it was possible to adsorb specifically different IgG subsets. The IgG molecules were found to adsorb on membrane immobilized histidine via their Fab part. Determination of dissociation constants at different temperatures allowed calculation of thermodynamic adsorption parameters. Decrease in KD with increasing temperature and a positive entropy value between 20 and 35 degrees C (in Mops buffer) indicated that adsorption is partially governed by hydrophobic forces in that temperature range, whereas at lower temperatures, electrostatic forces are more important for adsorption.
将L-组氨酸作为假生物特异性配体固定在聚(乙烯-乙烯醇)中空纤维膜上,以获得用于纯化免疫球蛋白G(IgG)的亲和载体。通过色谱法和平衡结合分析研究了人IgG与亲和膜的相互作用。在较宽的pH范围内都可能发生吸附,并且发现吸附强烈依赖于缓冲离子的性质,而不是离子强度。使用两性离子缓冲剂如吗啉丙烷磺酸(Mops)和羟乙基哌嗪乙烷磺酸(Hepes)时,比使用其他缓冲剂如Tris-HCl和磷酸盐缓冲剂获得的吸附容量要高得多。抑制分析表明,非两性离子缓冲剂会竞争性抑制IgG结合,而两性离子形式的Mops和Hepes则不会。通过选择合适的缓冲系统,可以特异性吸附不同的IgG亚群。发现IgG分子通过其Fab部分吸附在膜固定化的组氨酸上。测定不同温度下的解离常数可以计算热力学吸附参数。随着温度升高KD降低,并且在20至35摄氏度之间(在Mops缓冲液中)熵值为正,这表明在该温度范围内吸附部分受疏水力控制,而在较低温度下,静电力对吸附更为重要。