Department of Biotechnology, Graduate School of Engineering, Osaka University, 2-1 Yamadaoka, Suita, Osaka 565-0871, Japan.
J Chromatogr A. 2012 Aug 10;1250:212-9. doi: 10.1016/j.chroma.2012.05.068. Epub 2012 May 28.
This review describes the usefulness of supercritical fluid chromatography (SFC) for the metabolic profiling of lipids. First, non-targeted lipid profiling by SFC/MS is described. The use of SFC/MS allows for high-throughput, exhaustive analysis of diverse lipids, and hence, this technique finds potential applications in lipidomics. Development of a polar lipid profiling method with trimethylsilyl (TMS) derivatization widens the scope of applicability of SFC/MS. SFC is a high-resolution technique that is suitable for non-targeted profiling aimed at the simultaneous analysis of many components. Next, targeted lipid profiling by SFC/MS is described. SFC is useful for the separation of lipids, such as carotenoids and triacylglycerols, which have numerous analogs with similar structures. In addition, SFC/MS shows the maximum efficiency for the target analysis of lipids in a biological sample that includes many matrices. Finally, a high-resolution, high-throughput analytical system based on SFC/MS is stated to be suitable for lipidomics because it is useful not only for the screening of lipid mixtures (as a fingerprint method) but also for the detailed profiling of individual components.
本文综述了超临界流体色谱(SFC)在脂质代谢物分析中的应用。首先,描述了 SFC/MS 用于非靶向脂质组学分析。SFC/MS 可高通量、全面地分析各种脂质,因此该技术在脂质组学中有很大的应用潜力。采用三甲基硅烷(TMS)衍生化的极性脂质分析方法拓宽了 SFC/MS 的应用范围。SFC 是一种高分辨率技术,适用于非靶向分析,可同时分析多种成分。其次,描述了 SFC/MS 用于靶向脂质组学分析。SFC 可用于分离具有相似结构的多种类似物的脂质,如类胡萝卜素和三酰基甘油。此外,SFC/MS 对于包含多种基质的生物样品中脂质的目标分析显示出最大的效率。最后,指出基于 SFC/MS 的高分辨率、高通量分析系统适用于脂质组学,因为它不仅可用于脂质混合物的筛选(作为指纹方法),而且还可用于单个成分的详细分析。