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pH and salt effects of chiral separations using affinity ultrafiltration

机译:使用亲和超滤进行手性分离的pH和盐效应

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摘要

Affinity ultrafiltration can provide stereoselective separations using a large macroligand to selectively bind and retain one of the enantiomers. The detailed binding interactions can be strongly influenced by the solution pH and salt concentration, although there is currently little understanding of the impact of these phenomena on the overall performance of the affinity ultrafiltration process. Experimenhtal studies were performed suing a model system with bovine serum albumin as the stereoselective macroligand for the separation of D- and L-tryptophan. Binding data were obtained over a range of pH and ionic strength, with the results used to calculated the yield and purification factor during a diafiltration process using a recently developed model. L-tryptophan binding was greatest between pH 7 and 10, leading to a significant increase in purification within this pH range. Overall system performance, including the trade-offs between purification factor and yield, was examined by constructing purification factor-yield diagrams for the affinity ultrafiltration process.
机译:亲和超滤可以使用大分子配体选择性结合并保留一种对映异构体,从而提供立体选择性分离。尽管目前对这些现象对亲和超滤过程整体性能的影响了解甚少,但溶液的pH和盐浓度会严重影响具体的结合相互作用。使用以牛血清白蛋白为立体选择性大分子配体的模型系统进行了实验研究,以分离D-色氨酸和L-色氨酸。在一定范围的pH和离子强度下获得结合数据,使用最近开发的模型将结果用于计算渗滤过程中的收率和纯化因子。 L-色氨酸在pH 7和10之间的结合最大,从而导致在此pH范围内纯化的显着增加。通过构建亲和超滤过程的纯化因子-产率图,检查了整个系统性能,包括纯化因子与产率之间的权衡。

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