Department of Biological Sciences, College of Sciences, The University of North Texas, Denton, TX 76203, USA; BioDiscovery Institute, College of Arts and Sciences, The University of North Texas, Denton, TX 76203, USA.
Waters Corporation, 34 Maple Street, Milford, MA 01757, USA.
J Chromatogr B Analyt Technol Biomed Life Sci. 2018 Aug 15;1092:499-505. doi: 10.1016/j.jchromb.2018.06.021. Epub 2018 Jun 12.
Metabolomics as a global analysis of a large number of cellular metabolites relies heavily on the new developments in separation science and technology. None of the existing analytical techniques can simultaneously separate and measure all the cellular metabolites due to complexity of cellular metabolome and, therefore, a combination of analytical techniques must be used. Currently NMR, GC-MS and LC-MS are most often used in metabolomics. Novel separation methods such as supercritical fluid chromatography (SFC), which can increase metabolome coverage while decreasing cost and analysis time, can provide alternative to other analytical techniques. As a result of major improvements in instrumentation and development of a new diverse column chemistries SFC-MS is increasingly used in a variety of biomedical applications and is becoming an attractive compliment to other major analytical platforms in metabolomics. Despite its potential and advantages, SFC-MS application in metabolomics is limited. Here we provide a brief overview of the latest developments of SFC-MS for metabolomics applications.
代谢组学作为对大量细胞代谢物的全局分析,严重依赖于分离科学和技术的新发展。由于细胞代谢组的复杂性,现有的分析技术都不能同时分离和测量所有的细胞代谢物,因此必须使用多种分析技术的组合。目前,代谢组学中最常使用的分析技术是 NMR、GC-MS 和 LC-MS。新型分离方法,如可以在降低成本和分析时间的同时增加代谢组覆盖范围的超临界流体色谱(SFC),可以为其他分析技术提供替代方法。由于仪器的重大改进和新的多种柱化学的发展,SFC-MS 越来越多地应用于各种生物医学应用,并成为代谢组学中其他主要分析平台的一个有吸引力的补充。尽管有潜力和优势,SFC-MS 在代谢组学中的应用仍然有限。在这里,我们简要概述了 SFC-MS 在代谢组学应用中的最新进展。