Department of Clinical Pharmacology and Visceral Research, University of Bern, Murtenstrasse 35, CH-3010 Bern, Switzerland.
J Chromatogr A. 2011 Jan 28;1218(4):588-601. doi: 10.1016/j.chroma.2010.08.072. Epub 2010 Sep 24.
During the past two decades, chiral capillary electrophoresis (CE) emerged as a promising, effective and economic approach for the enantioselective determination of drugs and their metabolites in body fluids, tissues and in vitro preparations. This review discusses the principles and important aspects of CE-based chiral bioassays, provides a survey of the assays developed during the past 10 years and presents an overview of the key achievements encountered in that time period. Applications discussed encompass the pharmacokinetics of drug enantiomers in vivo and in vitro, the elucidation of the stereoselectivity of drug metabolism in vivo and in vitro, and bioanalysis of drug enantiomers of toxicological, forensic and doping interest. Chiral CE was extensively employed for research purposes to investigate the stereoselectivity associated with hydroxylation, dealkylation, carboxylation, sulfoxidation, N-oxidation and ketoreduction of drugs and metabolites. Enantioselective CE played a pivotal role in many biomedical studies, thereby providing new insights into the stereoselective metabolism of drugs in different species which might eventually lead to new strategies for optimization of pharmacotherapy in clinical practice.
在过去的二十年中,手性毛细管电泳(CE)作为一种有前途、有效和经济的方法,在手液、组织和体外制剂中用于药物及其代谢物的对映选择性测定。本综述讨论了基于 CE 的手性生物分析的原理和重要方面,调查了过去 10 年中开发的分析方法,并概述了在此期间取得的主要成就。讨论的应用包括药物对映异构体在体内和体外的药代动力学、体内和体外药物代谢的立体选择性阐明,以及毒理学、法医学和兴奋剂相关药物对映异构体的生物分析。手性 CE 广泛用于研究目的,以研究与药物和代谢物的羟化、脱烷基、羧化、砜氧化、N-氧化和酮还原相关的立体选择性。对映选择性 CE 在许多生物医学研究中发挥了关键作用,从而为不同物种中药物的立体选择性代谢提供了新的见解,这可能最终为临床实践中优化药物治疗学提供新的策略。