Tao Shi-Peng, Zheng Jie, Sun Yan
Department of Biochemical Engineering and Key Laboratory of Systems Bioengineering of the Ministry of Education, School of Chemical Engineering and Technology, Tianjin University, Tianjin 300072, China.
Department of Chemical and Biomolecular Engineering, The University of Akron, Akron, OH 44325, United States.
J Chromatogr A. 2015 Apr 10;1389:104-11. doi: 10.1016/j.chroma.2015.02.051. Epub 2015 Feb 23.
Cryogel monoliths with interconnected macropores (10-100μm) and hydrophilic surfaces can be employed as chromatography media for protein retention in steric exclusion chromatography (SXC). SXC is based on the principle that the exclusion of polyethylene glycol (PEG) on both a hydrophilic chromatography surface and a protein favors their association, leading to the protein retention on the chromatography surface. Elution of the retained protein can be achieved by reducing PEG concentration. In this work, the surface of polyacrylamide-based cryogel monolith was modified by grafting zwitterionic poly(carboxybetaine methacrylate) (pCBMA), leading the increase in the surface hydrophilicity. Observation by scanning electron microscopy revealed the presence of the grafted pCBMA chain clusters on the cryogel surface, but pCBMA grafting did not result in the changes of the physical properties of the monolith column, and the columns maintained good recyclability in SXC. The effect of the surface grafting on the SXC behavior of γ-globulin was investigated in a wide flow rate range (0.6-12cm/min). It was found that the dynamic retention capacity increased 1.4-1.8 times by the zwitterionic polymer grafting in the flow rate range of 1.5-12cm/min. The mechanism of enhanced protein retention on the zwitterionic polymer-grafted surface was proposed. The research proved that zwitterionic polymer modification was promising for the development of new materials for SXC applications.
具有相互连通的大孔(10 - 100μm)和亲水表面的冷冻凝胶整体柱可作为空间排阻色谱(SXC)中蛋白质保留的色谱介质。SXC基于这样的原理:聚乙二醇(PEG)在亲水色谱表面和蛋白质上的排斥作用有利于它们的结合,从而导致蛋白质保留在色谱表面。通过降低PEG浓度可实现对保留蛋白质的洗脱。在这项工作中,通过接枝两性离子聚(甲基丙烯酸羧基甜菜碱)(pCBMA)对聚丙烯酰胺基冷冻凝胶整体柱的表面进行改性,导致表面亲水性增加。扫描电子显微镜观察显示在冷冻凝胶表面存在接枝的pCBMA链簇,但pCBMA接枝并未导致整体柱物理性质的改变,并且该柱在SXC中保持了良好的可回收性。在较宽的流速范围(0.6 - 12cm/min)内研究了表面接枝对γ-球蛋白SXC行为的影响。发现在1.5 - 12cm/min的流速范围内,两性离子聚合物接枝使动态保留容量增加了1.4 - 1.8倍。提出了在两性离子聚合物接枝表面上增强蛋白质保留的机制。该研究证明两性离子聚合物改性对于开发用于SXC应用的新材料具有前景。