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首页> 外文期刊>Journal of chromatography, A: Including electrophoresis and other separation methods >Enantiomeric separations by capillary electrophoresis: Theoretical method to determine optimum chiral selector concentration
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Enantiomeric separations by capillary electrophoresis: Theoretical method to determine optimum chiral selector concentration

机译:毛细管电泳的对映体分离:测定最佳手性选择器浓度的理论方法

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摘要

A method to optimize the ligand concentration [S] in the background electrolyte of capillary electrophoresis separations is presented. It is based on the use of a model which predicts apparent electrophoretic mobilities as a function of ligand concentration (expressed as p[S] = log[S]). This model is employed to compose the expression of a recently proposed criterion to qualify separations in electrophoresis. Two strategies to find the optimum p[S], leading to the best separation of all compounds, are explained: 1.- a graphical method using a windows map depicting the single separation criteria between all possible combination of compounds by pairs, and 2.- an analytical method where an extended multicriterion optimization function is composed and optimum p[S] is found by mathematical maximization. The procedure is applied to a hard-to-separate model system: enantiomeric separations of racemic mixtures. 2-Hydroxypropyl-beta-cyclodextrin was chosen as a model ligand, and four pharmaceutical drugs as model analytes. In order to demonstrate the performance of the procedure, results of electrophoretic separations obtained at p[S] found as optimum are compared with separations obtained at p[S] values slightly higher and lower than the optimum. (C) 2018 Published by Elsevier B.V.
机译:提出了一种优化毛细管电泳分离背景电解质中的配体浓度的方法。它基于使用模型,该模型预测表观电泳迁移率作为配体浓度的函数(表达为P [S] = log [S])。该模型用于构成最近提出的标准的表达,以限定电泳中的分离。解释了两种策略,导致所有化合物的最佳分离,是:1。 - 一种使用窗口地图的图形方法,描绘了通过对所有可能的化合物组合的单独分离标准和2。 - 通过数学最大化找到构建扩展多电路优化优化功能和最佳P的分析方法。该程序适用于难以单独的模型系统:外消旋混合物的对映体分离。选择2-羟丙基 - β-环糊精作为模型配体,以及四种药物作为模型分析物。为了证明该程序的性能,将在P [S]中获得的电泳分离的结果与在P [S]值略高且低于最佳的p的分离中。 (c)2018由elestvier b.v出版。

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