Grabstain Violet, Bianco-Peled Havazelet
Department of Chemical Engineering, Technion-Israel Institute of Technology, Haifa 32000, Israel.
Biotechnol Prog. 2003 Nov-Dec;19(6):1728-33. doi: 10.1021/bp034161t.
Poly(N-isopropylacrylamide) (PNIPA) microgels may offer several advantages over PNIPA-modified surfaces when used as sorbents in temperature-sensitive chromatography. Yet, a full exploitation of these advantages requires a better understanding of the mechanisms controlling the separation process. As a model system, we have studied the binding of three proteins (bovine serum albumin (BSA), ovalbumin, and lysozyme) to PNIPA microgels. Binding experiments were conducted both below (25 degrees C) and above (37 degrees C) the volume phase transition temperature of the gel, T(c). The analysis of the binding isotherms has shown that although an average gel particle contained a larger amount of protein below the phase transition temperature, the concentration of the protein within the particle was higher above this temperature. These findings were attributed to changes in the binding loci due to temperature swings around T(c): whereas a sorption mechanism is dominant below this temperature, surface-adsorption was more important above it. A comparison between the three studied proteins has shown that below T(c) the binding increases with a decrease in the molecular weight. On the other hand, no significant difference in the bound protein amounts was observed above the phase transition temperature. Our results imply that, despite the increase in the gel's hydrophobicity above the phase transition temperature, the resolution in bioseparations based on PNIPA gels is not necessarily better above T(c).
聚(N-异丙基丙烯酰胺)(PNIPA)微凝胶在作为温度敏感色谱中的吸附剂使用时,可能比PNIPA修饰的表面具有几个优势。然而,要充分利用这些优势,需要更好地理解控制分离过程的机制。作为一个模型系统,我们研究了三种蛋白质(牛血清白蛋白(BSA)、卵清蛋白和溶菌酶)与PNIPA微凝胶的结合。在凝胶的体积相变温度T(c)以下(25摄氏度)和以上(37摄氏度)都进行了结合实验。结合等温线分析表明,虽然在相变温度以下平均凝胶颗粒含有更多的蛋白质,但在此温度以上颗粒内蛋白质的浓度更高。这些发现归因于围绕T(c)的温度波动导致的结合位点变化:在该温度以下吸附机制占主导,而在该温度以上表面吸附更重要。对三种研究蛋白质的比较表明,在T(c)以下结合随着分子量的降低而增加。另一方面,在相变温度以上未观察到结合蛋白量的显著差异。我们的结果表明,尽管在相变温度以上凝胶的疏水性增加,但基于PNIPA凝胶的生物分离在T(c)以上的分辨率不一定更好。