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毛细管电泳中的衍生化

Derivatization in capillary electrophoresis.

作者信息

Bardelmeijer H A, Lingeman H, de Ruiter C, Underberg W J

机构信息

Utrecht University, Faculty of Pharmacy, Department of Pharmaceutical Analysis, Netherlands.

出版信息

J Chromatogr A. 1998 May 20;807(1):3-26. doi: 10.1016/s0021-9673(98)00230-1.

Abstract

In recent years capillary electrophoresis (CE) has been developed into a versatile separation technique, next to gas and liquid chromatography (LC), well suited for the determination of a wide variety of e.g., pharmaceutical, biomedical and environmental samples. The main advantages of CE over chromatographic separation techniques are its simplicity and efficiency. It is well recognized, however, that the sensitivity and selectivity of the detection are relatively weak points of CE. One way to overcome these limitations is the conversion (derivatization) of the analytes into product(s) with more favourable detection characteristics. Although, in principle, almost any detection mode can be combined with a derivatization procedure, in practice, fluorescence monitoring is favoured in most cases. This paper aims to give a short overview on the various reagents that can be used for pre-, post- and on-column derivatization in CE. First, a short introduction is given on CE as an analytical technique, followed by a discussion of the pros and cons of the various modes of derivatization, a comparison of derivatizations in CE with derivatizations in LC, the principles of fluorescence and prerequisites for a good fluorophore and the potential of using diode lasers in combination with a labelling procedure. With respect to the derivatization reagents the emphasis is on the labelling of amino, aldehyde, keto, carboxyl, hydroxyl and sulfhydryl groups.

摘要

近年来,毛细管电泳(CE)已发展成为一种多功能分离技术,仅次于气相色谱和液相色谱(LC),非常适合用于测定各种例如药物、生物医学和环境样品。与色谱分离技术相比,CE的主要优点是其简单性和高效性。然而,众所周知,检测的灵敏度和选择性是CE相对薄弱的环节。克服这些限制的一种方法是将分析物转化为具有更有利检测特性的产物。虽然原则上几乎任何检测模式都可以与衍生化程序相结合,但在实践中,大多数情况下都倾向于荧光监测。本文旨在简要概述可用于CE中柱前、柱后和柱上衍生化的各种试剂。首先,简要介绍CE作为一种分析技术,然后讨论各种衍生化模式的优缺点,比较CE中的衍生化与LC中的衍生化,荧光原理以及良好荧光团的先决条件,以及将二极管激光器与标记程序结合使用带来的潜力。关于衍生化试剂,重点是氨基、醛基、酮基、羧基、羟基和巯基的标记。

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