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Clinical applications of fast liquid chromatography: A review on the analysis of cardiovascular drugs and their metabolites

机译:快速液相色谱的临床应用:心血管药物及其代谢产物的分析研究述评

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摘要

One of the major challenges facing the medicine today is developing new therapies that enhance human health. To help address these challenges the utilization of analytical technologies and high-throughput automated platforms has been employed; in order to perform more experiments in a shorter time frame with increased data quality. In the last decade various analytical strategies have been established to enhance separation speed and efficiency in liquid chromatography applications. Liquid chromatography is an increasingly important tool for monitoring drugs and their metabolites. Furthermore, liquid chromatography has played an important role in pharmacokinetics and metabolism studies at these drug development stages since its introduction. This paper provides an overview of current trends in fast chromatography for the analysis of cardiovascular drugs and their metabolites in clinical applications. Current trends in fast liquid chromatographic separations involve monolith technologies, fused-core columns, high-temperature liquid chromatography (HTLC) and ultra-high performance liquid chromatography (UHPLC). The high specificity in combination with high sensitivity makes it an attractive complementary method to traditional methodology used for routine applications. The practical aspects of, recent developments in and the present status of fast chromatography for the analysis of biological fluids for therapeutic drug and metabolite monitoring, pharmacokinetic studies and bioequivalence studies are presented.
机译:今天,该药物面临的主要挑战之一是开发可增强人类健康的新疗法。为了帮助应对这些挑战,已采用分析技术和高通量自动化平台;为了在更短的时间内执行更多的实验,并提高数据质量。在过去的十年中,已经建立了各种分析策略来提高液相色谱应用中的分离速度和效率。液相色谱法是监测药物及其代谢产物的越来越重要的工具。此外,液相色谱自引入以来在这些药物开发阶段的药代动力学和代谢研究中起着重要作用。本文概述了用于临床应用中的心血管药物及其代谢物分析的快速色谱法的最新趋势。快速液相色谱分离的当前趋势涉及整体技术,熔融核柱,高温液相色谱(HTLC)和超高效液相色谱(UHPLC)。高特异性与高灵敏度相结合,使其成为常规应用中传统方法的一种有吸引力的补充方法。介绍了用于治疗药物和代谢物监测的生物流体分析,药代动力学研究和生物等效性研究的快速色谱法的实际情况,最新进展和现状。

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