Segers Karen, Declerck Sven, Mangelings Debby, Heyden Yvan Vander, Eeckhaut Ann Van
Department of Analytical Chemistry, Applied Chemometrics & Molecular Modelling (FABI), Vrije Universiteit Brussel (VUB), Laarbeeklaan 103, 1090 Brussels, Belgium.
Department of Pharmaceutical Chemistry, Drug Analysis & Drug Information (FASC), Center for Neurosciences (C4N), Vrije Universiteit Brussel (VUB), Laarbeeklaan 103, 1090 Brussels, Belgium.
Bioanalysis. 2019 Dec;11(24):2297-2318. doi: 10.4155/bio-2019-0014.
Metabolomics is the comprehensive study of small-molecule metabolites. Obtaining a wide coverage of the metabolome is challenging because of the broad range of physicochemical properties of the small molecules. To study the compounds of interest spectroscopic (NMR), spectrometric (MS) and separation techniques (LC, GC, supercritical fluid chromatography, CE) are used. The choice for a given technique is influenced by the sample matrix, the concentration and properties of the metabolites, and the amount of sample. This review discusses the most commonly used analytical techniques for metabolomic studies, including their advantages, drawbacks and some applications.
代谢组学是对小分子代谢物的全面研究。由于小分子具有广泛的物理化学性质,要全面覆盖代谢组具有挑战性。为研究感兴趣的化合物,需使用光谱法(核磁共振)、质谱法和分离技术(液相色谱、气相色谱、超临界流体色谱、毛细管电泳)。对于特定技术的选择受样品基质、代谢物的浓度和性质以及样品量的影响。本综述讨论了代谢组学研究中最常用的分析技术,包括它们的优点、缺点及一些应用。