Institute, of Medicinal and Pharmaceutical Chemistry, Technische Universität Braunschweig, Braunschweig, Lower Saxony, Germany.
Department of Pharmaceutical Chemistry, Faculty of Pharmacy, University of Surabaya, Surabaya, East Java, Indonesia.
Electrophoresis. 2023 Sep;44(17-18):1279-1341. doi: 10.1002/elps.202300158. Epub 2023 Aug 3.
This review is in support of the development of selective, precise, fast, and validated capillary electrophoresis (CE) methods. It follows up a similar article from 1998, Wätzig H, Degenhardt M, Kunkel A. "Strategies for capillary electrophoresis: method development and validation for pharmaceutical and biological applications," pointing out which fundamentals are still valid and at the same time showing the enormous achievements in the last 25 years. The structures of both reviews are widely similar, in order to facilitate their simultaneous use. Focusing on pharmaceutical and biological applications, the successful use of CE is now demonstrated by more than 600 carefully selected references. Many of those are recent reviews; therefore, a significant overview about the field is provided. There are extra sections about sample pretreatment related to CE and microchip CE, and a completely revised section about method development for protein analytes and biomolecules in general. The general strategies for method development are summed up with regard to selectivity, efficiency, precision, analysis time, limit of detection, sample pretreatment requirements, and validation.
本文旨在支持选择性、精确性、快速性和经过验证的毛细管电泳 (CE) 方法的发展。它是对 1998 年 Wätzig H、Degenhardt M 和 Kunkel A 的类似文章的后续研究,该文章指出了哪些基本原则仍然有效,同时展示了在过去 25 年中取得的巨大成就。两篇评论的结构非常相似,以便于同时使用。本文重点关注药物和生物应用,通过 600 多个经过精心挑选的参考文献成功展示了 CE 的应用。其中许多是最近的综述,因此提供了该领域的重要概述。本文还增加了有关与 CE 相关的样品预处理和微芯片 CE 的部分,以及对蛋白质分析物和生物分子的方法开发的完全修订部分。本文还总结了一般策略,包括选择性、效率、精度、分析时间、检测限、样品预处理要求和验证。