Ma Shuguang, Chowdhury Swapan K, Alton Kevin B
Department of Drug Metabolism and Pharmacokinetics, Schering-Plough Research Institute, 2015 Galloping Hill Road, Kenilworth, NJ 07033, USA.
Curr Drug Metab. 2006 Jun;7(5):503-23. doi: 10.2174/138920006777697891.
Metabolism studies play a pivotal role in drug discovery and development. Characterization of metabolic "hot-spots" as well as reactive and pharmacologically active metabolites is critical to designing new drug candidates with improved metabolic stability, toxicological profile and efficacy. Metabolite identification in the preclinical species used for safety evaluation is required in order to determine whether human metabolites have been adequately tested during non-clinical safety assessment. From an instrumental standpoint, high performance liquid chromatography (HPLC) coupled with mass spectrometry (MS) dominates all analytical tools used for metabolite identification. The general strategies employed for metabolite identification in both drug discovery and drug development settings together with sample preparation techniques are reviewed herein. These include a discussion of the various ionization methods, mass analyzers, and tandem mass spectrometry (MS/MS) techniques that are used for structural characterization in a modern drug metabolism laboratory. Mass spectrometry-based techniques, such as stable isotope labeling, on-line H/D exchange, accurate mass measurement to enhance metabolite identification and recent improvements in data acquisition and processing for accelerating metabolite identification are also described. Rounding out this review, we offer additional thoughts about the potential of alternative and less frequently used techniques such as LC-NMR/MS, CRIMS and ICPMS.
代谢研究在药物发现和开发中起着关键作用。代谢“热点”以及反应性和药理活性代谢物的表征对于设计具有改善的代谢稳定性、毒理学特征和疗效的新候选药物至关重要。为了确定在非临床安全性评估期间是否已对人类代谢物进行了充分测试,需要对用于安全性评估的临床前物种中的代谢物进行鉴定。从仪器角度来看,高效液相色谱(HPLC)与质谱(MS)联用在所有用于代谢物鉴定的分析工具中占据主导地位。本文综述了在药物发现和药物开发环境中用于代谢物鉴定的一般策略以及样品制备技术。这些包括对现代药物代谢实验室中用于结构表征的各种电离方法、质量分析器和串联质谱(MS/MS)技术的讨论。还描述了基于质谱的技术,如稳定同位素标记、在线H/D交换、精确质量测量以增强代谢物鉴定以及最近在数据采集和处理方面为加速代谢物鉴定所做的改进。在本综述的结尾,我们对诸如LC-NMR/MS、CRIMS和ICPMS等替代且较少使用的技术的潜力提出了更多思考。