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等速电泳对映体分离及区带稳定性的动态高分辨率计算机模拟

Dynamic high-resolution computer simulation of isotachophoretic enantiomer separation and zone stability.

作者信息

Caslavska Jitka, Breadmore Michael C, Thormann Wolfgang

机构信息

Clinical Pharmacology Laboratory, Institute for Infectious Diseases, University of Bern, Bern, Switzerland.

出版信息

Electrophoresis. 2014 Mar;35(5):625-37. doi: 10.1002/elps.201300438. Epub 2014 Jan 13.

Abstract

The development of electrophoretic computer models and their use for simulation of electrophoretic processes has increased significantly during the last few years. Recently, GENTRANS and SIMUL5 were extended with algorithms that describe chemical equilibria between solutes and a buffer additive in a fast 1:1 interaction process, an approach that enables simulation of the electrophoretic separation of enantiomers. For acidic cationic systems with sodium and H3 0(+) as leading and terminating components, respectively, acetic acid as counter component, charged weak bases as samples, and a neutral CD as chiral selector, the new codes were used to investigate the dynamics of isotachophoretic adjustment of enantiomers, enantiomer separation, boundaries between enantiomers and between an enantiomer and a buffer constituent of like charge, and zone stability. The impact of leader pH, selector concentration, free mobility of the weak base, mobilities of the formed complexes and complexation constants could thereby be elucidated. For selected examples with methadone enantiomers as analytes and (2-hydroxypropyl)-β-CD as selector, simulated zone patterns were found to compare well with those monitored experimentally in capillary setups with two conductivity detectors or an absorbance and a conductivity detector. Simulation represents an elegant way to provide insight into the formation of isotachophoretic boundaries and zone stability in presence of complexation equilibria in a hitherto inaccessible way.

摘要

在过去几年中,电泳计算机模型的发展及其在电泳过程模拟中的应用显著增加。最近,GENTRANS和SIMUL5通过算法进行了扩展,这些算法描述了溶质与缓冲添加剂在快速1:1相互作用过程中的化学平衡,这种方法能够模拟对映体的电泳分离。对于分别以钠和H3O(+)作为先导和终止成分、乙酸作为抗衡成分、带电荷的弱碱作为样品以及中性环糊精作为手性选择剂的酸性阳离子体系,使用新代码研究了对映体等速电泳调整的动力学、对映体分离、对映体之间以及对映体与相同电荷缓冲成分之间的边界以及区带稳定性。由此可以阐明先导pH值、选择剂浓度、弱碱的自由迁移率、形成的络合物的迁移率以及络合常数的影响。对于以美沙酮对映体为分析物和(2-羟丙基)-β-环糊精为选择剂的选定示例,发现模拟的区带模式与在具有两个电导检测器或一个吸光度和一个电导检测器的毛细管装置中实验监测到的模式相当吻合。模拟是一种优雅的方式,能够以前所未有的方式深入了解在存在络合平衡的情况下等速电泳边界的形成和区带稳定性。

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