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Human absorption, distribution, metabolism and excretion properties of drug molecules: a plethora of approaches

机译:人体对药物分子的吸收,分布,代谢和排泄特性:多种方法

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Human radiolabel studies are traditionally conducted to provide a definitive understanding of the human absorption, distribution, metabolism and excretion (ADME) properties of a drug. However, advances in technology over the past decade have allowed alternative methods to be employed to obtain both clinical ADME and pharmacokinetic (PK) information. These include microdose and microtracer approaches using accelerator mass spectrometry, and the identification and quantification of metabolites in samples from classical human PK studies using technologies suitable for non-radiolabelled drug molecules, namely liquid chromatography-mass spectrometry and nuclear magnetic resonance spectroscopy. These recently developed approaches are described here together with relevant examples primarily from experiences gained in support of drug development projects at GlaxoSmithKline. The advantages of these study designs together with their limitations are described. We also discuss special considerations which should be made for a successful outcome to these new approaches and also to the more traditional human radiolabel study in order to maximize knowledge around the human ADME properties of drug molecules.
机译:传统上进行人类放射性标记研究以提供对药物的人类吸收,分布,代谢和排泄(ADME)特性的确定理解。但是,过去十年来技术的进步已允许采用替代方法来获取临床ADME和药代动力学(PK)信息。这些方法包括使用加速器质谱的微剂量和微量示踪法,以及使用适用于非放射性标记药物分子的技术,即液相色谱-质谱和核磁共振波谱,对来自经典人类PK研究的样品中的代谢物进行鉴定和定量。本文将介绍这些最近开发的方法以及相关示例,这些示例主要是从葛兰素史克在药物开发项目支持中获得的经验。描述了这些研究设计的优点及其局限性。我们还将讨论为使这些新方法以及更传统的人类放射性标记物研究取得成功所应做出的特殊考虑,以最大程度地了解有关药物分子的人类ADME特性。

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