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利用毛细管电泳评估氨基酸对碱性药物对映体拆分的协同效应。

Evaluation of the synergistic effect with amino acids for enantioseparation of basic drugs using capillary electrophoresis.

作者信息

Chalavi Soheila, Fakhari Ali Reza, Nojavan Saeed, Mirzaei Peyman

机构信息

Faculty of Chemistry, Shahid Beheshti University, Tehran, I. R. Iran.

出版信息

Electrophoresis. 2018 Sep;39(17):2202-2209. doi: 10.1002/elps.201800128. Epub 2018 Jul 13.

Abstract

The synergistic effect of two acidic amino acids, aspartic and glutamic acid, on the electrophoretic enantioseparation of four basic drugs was evaluated in the BGE containing a CD and at different pHs. Chlorpheniramine, hydroxyzine, propranolol and tramadol were used as the basic model drugs. However, no enantioseparations were achieved with a BGE containing sole amino acid, but the combined use of an acidic amino acid and a CD showed improved enantioseparations (synergistic effect) compared with the single CD system. The results demonstrated that at optimized pH, the electrostatic interactions of the anionic amino acids with the positively charged basic drugs could result in a decrease of the analyte migration velocity and it consequently improved the enantioseparation. The effective parameters such as the amino acid and chiral selector type and concentration, buffer pH, applied voltage, and capillary temperature were optimized. Favorable enantiomeric resolution and migration times of the model drugs were achieved with a 100 mM phosphate buffer solution (pH 3.0) containing 5.0 mM HP-α-CD/HP-β-CD and 20 mM aspartic acid with an 18 kV applied voltage at 25°C. H NMR experiments were also carried out in a mixture of an analyte and CD in the absence and presence of aspartic acid. The NMR results were consistent with the results obtained by CE which showed the synergistic effect of amino acid.

摘要

在含有环糊精(CD)且pH值不同的背景电解质(BGE)中,评估了两种酸性氨基酸(天冬氨酸和谷氨酸)对四种碱性药物电泳对映体分离的协同作用。使用氯苯那敏、羟嗪、普萘洛尔和曲马多作为碱性模型药物。然而,仅含氨基酸的BGE未能实现对映体分离,但与单一CD系统相比,酸性氨基酸与CD联合使用时对映体分离效果更佳(协同效应)。结果表明,在优化的pH值下,阴离子氨基酸与带正电荷的碱性药物之间的静电相互作用会导致分析物迁移速度降低,从而改善对映体分离。对氨基酸和手性选择剂的类型及浓度、缓冲液pH值、施加电压和毛细管温度等有效参数进行了优化。在25℃下,以18 kV的施加电压,在含有5.0 mM HP-α-CD/HP-β-CD和20 mM天冬氨酸的100 mM磷酸盐缓冲溶液(pH 3.0)中,模型药物实现了良好的对映体分离度和迁移时间。还在有无天冬氨酸存在的情况下,对分析物与CD的混合物进行了1H NMR实验。NMR结果与毛细管电泳(CE)获得的结果一致,显示了氨基酸的协同效应。

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