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手性选择剂在毛细管电泳中的应用:2017-2018 年的发展趋势。

Chiral Selectors in Capillary Electrophoresis: Trends During 2017⁻2018.

机构信息

Australian Centre for Research on Separation Science (ACROSS), School of Natural Sciences-Chemistry, University of Tasmania, Hobart, Tasmania 7001, Australia.

出版信息

Molecules. 2019 Mar 21;24(6):1135. doi: 10.3390/molecules24061135.

Abstract

Chiral separation is an important process in the chemical and pharmaceutical industries. From the analytical chemistry perspective, chiral separation is required for assessing the fit-for-purpose and the safety of chemical products. Capillary electrophoresis, in the electrokinetic chromatography mode is an established analytical technique for chiral separations. A water-soluble chiral selector is typically used. This review therefore examines the use of various chiral selectors in electrokinetic chromatography during 2017⁻2018. The chiral selectors were both low and high (macromolecules) molecular mass molecules as well as molecular aggregates (supramolecules). There were 58 papers found by search in Scopus, indicating continuous and active activity in this research area. The macromolecules were sugar-, amino acid-, and nucleic acid-based polymers. The supramolecules were bile salt micelles. The low molecular mass selectors were mainly ionic liquids and complexes with a central ion. A majority of the papers were on the use or preparation of sugar-based macromolecules, e.g., native or derivatised cyclodextrins. Studies to explain chiral recognition of macromolecular and supramolecular chiral selectors were mainly done by molecular modelling and nuclear magnetic resonance spectroscopy. Demonstrations were predominantly on drug analysis for the separation of racemates.

摘要

手性分离是化学和制药行业中的一个重要过程。从分析化学的角度来看,手性分离对于评估化学产品的适用性和安全性是必需的。在电泳模式下的毛细管电泳是一种用于手性分离的成熟分析技术。通常使用水溶性手性选择剂。因此,本篇综述考察了 2017 年至 2018 年间在电动色谱中使用各种手性选择剂的情况。手性选择剂既有低分子量(低聚物)又有高分子量(聚合物)以及分子聚集体(超分子)。在 Scopus 中搜索发现了 58 篇论文,表明该研究领域的持续活跃。聚合物为糖基、氨基酸基和核酸基聚合物。超分子为胆盐胶束。低分子量选择剂主要为离子液体和中心离子的配合物。大多数论文都集中在手性识别研究,例如,天然或衍生的环糊精。通过分子建模和核磁共振波谱对解释手性识别的研究主要集中在对高分子和超分子手性选择剂的研究上。演示主要集中在手性药物分析中对外消旋体的分离。

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