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Advances in mass spectrometry applied to pharmaceutical metabolomics

机译:质谱在药物代谢组学中的应用进展

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Metabolomics, also referred to in the literature as metabonomics, is a relatively new systems biology tool for drug discovery and development and is increasingly being used to obtain a detailed picture of a drug’s effect on the body. Metabolomics is the qualitative assessment and relative or absolute quantitative measurement of the endogenous metabolome, defined as the complement of all native small molecules (metabolites less than 1,500 Da). A metabolomics study frequently involves the comparative analysis of sample sets from a normal state and a perturbed state, where the perturbation can be of any nature, such as genetic knockout, administration of a drug, or change in diet or lifestyle. Advances in mass spectrometry (MS) technologies including direct introduction or in-line chromatographic separation modes, ionization techniques, mass analyzers, and detection methods have provided powerful tools to assess the molecular changes in the metabolome. This review focuses on advances in MS pertaining to the analytical data generation for the main metabolomics methods, namely, fingerprinting, nontargeted, and targeted approaches, as they are applied to pharmaceutical drug discovery and development.
机译:代谢组学在文献中也称为代谢组学,是一种相对较新的系统生物学工具,用于药物的发现和开发,并且越来越多地用于获取药物对人体影响的详细信息。代谢组学是对内源性代谢组的定性评估和相对或绝对定量测量,定义为所有天然小分子(小于1,500 Da的代谢物)的补充。代谢组学研究通常涉及对正常状态和扰动状态下的样本集进行比较分析,其中扰动可以是任何性质,例如基因敲除,给药,饮食或生活方式的改变。质谱技术(MS)的进步,包括直接引入或在线色谱分离模式,电离技术,质谱分析仪和检测方法,为评估代谢组中的分子变化提供了强大的工具。这篇综述着重于与主要代谢组学方法的分析数据生成有关的质谱技术的进展,这些方法主要应用于指纹药物开发和开发中,即指纹,非靶向和靶向方法。

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