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Electrophoretic separation techniques and their hyphenation to mass spectrometry in biological inorganic chemistry

机译:电泳分离技术及其在生物无机化学中的质谱联用

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摘要

Electrophoretic methods have been widely applied in research on the roles of metal complexes in biological systems. In particular, CE, often hyphenated to a sensitive MS detector, has provided valuable information on the modes of action of metal-based pharmaceuticals, and more recently new methods have been added to the electrophoretic toolbox. The range of applications continues to expand as a result of enhanced CE-to-MS interfacing, with sensitivity often at picomolar level, and evolved separation modes allowing for innovative sample analysis. This article is a followup to previous reviews about CE methods in metallodrug research (Electrophoresis, 2003, 24, 2023-2037; Electrophoresis, 2007, 28, 3436-3446; Electrophoresis, 2012, 33, 622-634), also providing a comprehensive overview of metal species studied by electrophoretic methods hyphenated to MS. It highlights the latest CE developments, takes a sneak peek into gel electrophoresis, traces biomolecule labeling, and focuses on the importance of early-stage drug development.
机译:电泳方法已广泛用于研究金属络合物在生物系统中的作用。特别是,CE通常连接到灵敏的MS检测器上,已经提供了有关基于金属的药物作用方式的有价值的信息,最近,新的方法已添加到电泳工具箱中。由于增强的CE到MS接口的应用范围不断扩大,灵敏度通常在皮摩尔级别,并且分离模式不断发展,可以进行创新的样品分析。本文是先前有关金属药物研究中CE方法的评论(Electrophoresis,2003,24,2023-2037; Electrophoresis,2007,28,3436-3446; Electrophoresis,2012,33,622-634)的综述。质谱联用电泳方法研究的金属种类的概述。它着重介绍了CE的最新发展,简要介绍了凝胶电泳,追踪了生物分子标记,并重点关注了早期药物开发的重要性。

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