Capillary electrochromatography applied to the separation of enantiomers utilizing packed capillary columns with silica-vancomycin. A tutorial

Chiara Fanali , Giovanni D'Orazio
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Abstract

The separation and analysis of chiral compounds is an important topic in various fields such as research, pharmaceutical industry, food control, agrochemistry, biochemistry, forensics and toxicology, etc. The interest in the mentioned fields is mainly due to the fact that enantiomers could react with the chiral environment. Therefore, their separation and analysis are a challenging issue because the use of these compounds can be related to humans and animals’ lives as well as to the environment (e.g., soil and water). Their separation can be performed with different analytical techniques such as high-performance liquid chromatography, gas chromatography, supercritical fluid chromatography, and microfluidic technique (capillary electrophoresis and capillary electrochromatography-CEC). Usually the direct resolution method is applied making use of a chiral stationary phase (CSP). This tutorial is aimed at illustrating the main features of CEC using a packed capillary, e.g., employing a silica-vancomycin CSP. The synthesis of the CSP, the instrumentation of CEC coupled with UV and mass spectrometry detectors, method optimization, and two selected applications are presented and discussed.

Abstract Image

利用硅-万古霉素填料毛细管色谱柱分离对映体。教程
手性化合物的分离和分析是科研、制药业、食品控制、农业化学、生物化学、法医学和毒理学等各个领域的一个重要课题。上述领域之所以对手性化合物感兴趣,主要是因为对映体可能与手性环境发生反应。因此,对映体的分离和分析是一个具有挑战性的问题,因为这些化合物的使用可能关系到人类和动物的生命以及环境(如土壤和水)。可以使用不同的分析技术对它们进行分离,如高效液相色谱法、气相色谱法、超临界流体色谱法和微流控技术(毛细管电泳和毛细管电色谱-CEC)。通常采用手性固定相(CSP)直接分辨法。本教程旨在说明使用填料毛细管(例如使用硅胶-万古霉素 CSP)进行 CEC 的主要特点。本教程介绍并讨论了 CSP 的合成、与紫外和质谱检测器联用的 CEC 仪器、方法优化以及两个选定的应用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Journal of chromatography open
Journal of chromatography open Analytical Chemistry
CiteScore
2.50
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审稿时长
50 days
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