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首页> 外文期刊>Biomedical Chromatography: An International Journal Devoted to Research in Chromatographic Methodologies and Their Applications in the Biosciences >Applicability of bioanalysis of multiple analytes in drug discovery and development: review of select case studies including assay development considerations.
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Applicability of bioanalysis of multiple analytes in drug discovery and development: review of select case studies including assay development considerations.

机译:在药物发现和开发中对多种分析物进行生物分析的适用性:审查选定的案例研究,包括分析开发方面的考虑。

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摘要

The development of sound bioanalytical method(s) is of paramount importance during the process of drug discovery and development culminating in a marketing approval. Although the bioanalytical procedure(s) originally developed during the discovery stage may not necessarily be fit to support the drug development scenario, they may be suitably modified and validated, as deemed necessary. Several reviews have appeared over the years describing analytical approaches including various techniques, detection systems, automation tools that are available for an effective separation, enhanced selectivity and sensitivity for quantitation of many analytes. The intention of this review is to cover various key areas where analytical method development becomes necessary during different stages of drug discovery research and development process. The key areas covered in this article with relevant case studies include: (a) simultaneous assay for parent compound and metabolites that are purported to display pharmacological activity; (b) bioanalytical procedures for determination of multiple drugs in combating a disease; (c) analytical measurement of chirality aspects in the pharmacokinetics, metabolism and biotransformation investigations; (d) drug monitoring for therapeutic benefits and/or occupational hazard; (e) analysis of drugs from complex and/or less frequently used matrices; (f) analytical determination during in vitro experiments (metabolism and permeability related) and in situ intestinal perfusion experiments; (g) determination of a major metabolite as a surrogate for the parent molecule; (h) analytical approaches for universal determination of CYP450 probe substrates and metabolites; (i) analytical applicability to prodrug evaluations-simultaneous determination of prodrug, parent and metabolites; (j) quantitative determination of parent compound and/or phase II metabolite(s) via direct or indirect approaches; (k) applicability in analysis of multiple compounds in select disease areas and/or in clinically important drug-drug interaction studies. A tabular representation of select examples of analysis is provided covering areas of separation conditions, validation aspects and applicable conclusion. A limited discussion is provided on relevant aspects of the need for developing bioanalytical procedures for speedy drug discovery and development. Additionally, some key elements such as internal standard selection, likely issues of mass detection, matrix effect, chiral aspects etc. are provided for consideration during method development.
机译:合理的生物分析方法的开发在药物发现和开发过程中最终获得市场认可是至关重要的。尽管在发现阶段最初开发的一种或多种生物分析程序可能不一定适合支持药物开发方案,但可以认为必要时可以对其进行适当的修改和验证。多年来,出现了一些描述分析方法的评论,包括各种技术,检测系统,可用于有效分离的增强自动化工具,增强的选择性和对许多分析物定量的灵敏度。这篇综述的目的是涵盖在药物发现研究和开发过程的不同阶段中需要开发分析方法的各个关键领域。本文通过相关案例研究涵盖的关键领域包括:(a)同时测定据称具有药理活性的母体化合物和代谢物; (b)确定与疾病作斗争的多种药物的生物分析程序; (c)在药代动力学,代谢和生物转化研究中手性方面的分析测量; (d)监测药物的治疗益处和/或职业危害; (e)分析来自复杂和/或不常使用的基质的药物; (f)体外实验(代谢和渗透性相关)和原位肠灌注实验的分析测定; (g)确定主要代谢产物作为母体分子的替代物; (h)通用测定CYP450探针底物和代谢物的分析方法; (i)对前药评估的分析适用性-同时确定前药,母体和代谢物; (j)通过直接或间接方法定量测定母体化合物和/或II期代谢物; (k)在某些疾病领域和/或临床上重要的药物相互作用研究中对多种化合物进行分析的适用性。提供了所选分析实例的表格表示,涵盖了分离条件,验证方面和适用的结论。在为快速开发药物发现和开发生物分析程序的需求的相关方面提供了有限的讨论。此外,在方法开发过程中还考虑了一些关键要素,例如内标选择,质量检测的可能问题,基质效应,手性方面等。

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