Chemistry Department, University of Nebraska, Lincoln, NE, USA.
J Chromatogr A. 2012 Dec 21;1269:198-207. doi: 10.1016/j.chroma.2012.09.009. Epub 2012 Sep 10.
Various organic-based monoliths were prepared and optimized for immobilization of the protein human serum albumin (HSA) as a binding agent for chiral separations and high-performance affinity chromatography. These monoliths contained co-polymers based on glycidyl methacrylate (GMA) and ethylene glycol dimethacrylate (EDMA) or GMA and trimethylolpropane trimethacrylate (TRIM). A mixture of cyclohexanol and 1-dodecanol was used as the porogen, with the ratio of these solvents being varied along with the polymerization temperature to generate a library of monoliths. These monoliths were used with both the Schiff base and epoxy immobilization methods and measured for their final content of HSA. Monoliths showing the highest protein content were further evaluated in chromatographic studies using R/S-warfarin and d/l-tryptophan as model chiral solutes. A 2.6-2.7-fold increase in HSA content was obtained in the final monoliths when compared to similar HSA monoliths prepared according to the literature. The increased protein content made it possible for the new monoliths to provide higher retention and/or two-fold faster separations for the tested solutes when using 4.6mm i.d.× 50 mm columns. These monoliths were also used to create 4.6mm i.d.× 10 mm HSA microcolumns that could separate the same chiral solutes in only 1.5-6.0 min. The approaches used in this study could be extended to the separation of other chiral solutes and to the optimization of organic monoliths for use with additional proteins as binding agents.
各种有机整体柱被制备并进行了优化,以固定蛋白质人血清白蛋白(HSA)作为手性分离和高性能亲和层析的结合剂。这些整体柱包含基于甲基丙烯酸缩水甘油酯(GMA)和乙二醇二甲基丙烯酸酯(EDMA)或 GMA 和三羟甲基丙烷三甲基丙烯酸酯(TRIM)的共聚物。环己醇和 1-十二醇的混合物用作致孔剂,改变这些溶剂的比例以及聚合温度,以生成整体柱库。这些整体柱使用席夫碱和环氧固定化方法进行测量,并测量其最终的 HSA 含量。显示最高蛋白质含量的整体柱进一步在使用 R/S-华法林和 d/l-色氨酸作为模型手性溶质的色谱研究中进行了评估。与根据文献制备的类似 HSA 整体柱相比,最终整体柱中的 HSA 含量增加了 2.6-2.7 倍。蛋白质含量的增加使得新的整体柱能够在使用 4.6mm id×50mm 柱时,为测试溶质提供更高的保留和/或两倍的分离速度。这些整体柱还用于创建 4.6mm id×10mm HSA 微柱,仅需 1.5-6.0 分钟即可分离相同的手性溶质。本研究中使用的方法可以扩展到其他手性溶质的分离以及对有机整体柱的优化,以用作其他蛋白质的结合剂。