Fee Conan J
Department of Materials & Process Engineering, University of Waikato, Private Bag 3105, Hamilton 2020, New Zealand.
Biotechnol Bioeng. 2003 Apr 20;82(2):200-6. doi: 10.1002/bit.10561.
A new, widely applicable process that combines reaction and separation in a single unit operation is described. The process, size-exclusion reaction chromatography (SERC), simultaneously allows control of the extent of reactions in which molecular size is altered and the separation of products and reactants. In SERC, a moving reaction zone is formed by injection of reactants onto a size-exclusion chromatography column. Reactants and products are partitioned differently within the mobile phase, resulting in different linear flow rates through the column. The products are therefore removed selectively from the reaction zone, minimizing their residence time in the reaction zone and allowing their separation in the downstream section of the column. For reactions such as protein PEGylation, in which successive addition of PEG groups to the protein results in significant molecular size increases, SERC potentially offers a method by which a dominant final PEGylated protein size can be produced at high yield. The SERC PEGylation of two model proteins, alpha-lactalbumin and beta-lactoglobulin, is demonstrated and results show that simultaneous reaction and separation was obtained.
本文描述了一种新型的、广泛适用的过程,该过程在单一单元操作中结合了反应和分离。该过程即尺寸排阻反应色谱法(SERC),它能同时控制分子大小发生改变的反应程度以及产物与反应物的分离。在SERC中,通过将反应物注入尺寸排阻色谱柱形成一个移动的反应区。反应物和产物在流动相中的分配方式不同,导致它们通过色谱柱的线性流速不同。因此,产物被选择性地从反应区移除,从而将它们在反应区的停留时间减至最短,并使其在色谱柱的下游部分得以分离。对于诸如蛋白质聚乙二醇化反应,即向蛋白质连续添加聚乙二醇基团会导致分子大小显著增加的反应,SERC可能提供一种方法,通过该方法可以高产率地生成占主导地位的最终聚乙二醇化蛋白质大小。文中展示了两种模型蛋白α-乳白蛋白和β-乳球蛋白的SERC聚乙二醇化反应,结果表明实现了反应和分离的同时进行。