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对映体的分析规模和制备规模等电聚焦分离

Analytical- and preparative-scale isoelectric focusing separation of enantiomers.

作者信息

Glukhovskiy P, Vigh G

机构信息

Chemistry Department, Texas A&M University, College Station, Texas 77842-3012.

出版信息

Anal Chem. 1999 Sep 1;71(17):3814-20. doi: 10.1021/ac9902749.

Abstract

Isoelectric focusing has been used to achieve the analytical- and preparative-scale separation of the enantiomers of amphoteric analytes. By considering the simultaneous multiple equilibria involved in the chiral recognition process, a model has been developed to describe the magnitude of the ΔpI value that develops between the enantiomers in the presence of a noncharged chiral resolving agent, such as a noncharged cyclodextrin. Theoretical analysis of the model indicates that three kinds of IEF enantiomer separations are possible:  aniono-selective and cationo-selective, when only the identically charged forms of the enantiomers bind selectively to the resolving agent, and duo-selective, when the differently charged forms of the enantiomers bind selectively to the resolving agent. The model predicts that the ΔpI vs cyclodextrin concentration curves approach limiting ΔpI values which can be as large as 0.1, even when the binding constants of the enantiomers differ only by 10%. The parameters of the model can be readily determined by free solution capillary electrophoretic or pressure-mediated capillary electrophoretic experiments. The validity of the proposed model has been tested with hydroxypropyl β-cyclodextrin as resolving agent and dansyl phenylalanine as probe. Capillary IEF enantiomer separations have been achieved using both ampholytes and binary propionic acid-serine buffers (Bier's buffers). Preparative-scale IEF enantiomer separations with production rates as high as 1.3 mg/h have been achieved in an Octopus continuous free-flow electrophoretic system.

摘要

等电聚焦已被用于两性分析物对映体的分析规模和制备规模的分离。通过考虑手性识别过程中涉及的同时存在的多重平衡,已开发出一个模型来描述在存在不带电荷的手性拆分剂(如不带电荷的环糊精)时对映体之间产生的ΔpI值的大小。该模型的理论分析表明,等电聚焦对映体分离有三种可能:当只有对映体中带相同电荷的形式选择性地与拆分剂结合时,为阴离子选择性和阳离子选择性;当对映体中带不同电荷的形式选择性地与拆分剂结合时,为双选择性。该模型预测,即使对映体的结合常数仅相差10%,ΔpI与环糊精浓度曲线也会趋近于高达0.1的极限ΔpI值。该模型的参数可以通过自由溶液毛细管电泳或压力介导的毛细管电泳实验轻松确定。已用羟丙基β-环糊精作为拆分剂和丹磺酰苯丙氨酸作为探针测试了所提出模型的有效性。使用两性电解质和二元丙酸-丝氨酸缓冲液(比尔缓冲液)均实现了毛细管等电聚焦对映体分离。在章鱼连续自由流电泳系统中已实现了制备规模的等电聚焦对映体分离,生产率高达1.3 mg/h。

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