Hancock Sarah E, Poad Berwyck L J, Batarseh Amani, Abbott Sarah K, Mitchell Todd W
School of Medicine, Illawarra Health and Medical Research Institute, University of Wollongong, Wollongong, NSW 2522, Australia.
Central Analytical Research Facility, Queensland University of Technology, Brisbane, QLD 4001, Australia.
Anal Biochem. 2017 May 1;524:45-55. doi: 10.1016/j.ab.2016.09.014. Epub 2016 Sep 17.
As the field of lipidomics grows and its application becomes wide and varied it is important that we don't forget its foundation, i.e. the identification and measurement of molecular lipids. Advances in liquid chromatography and the emergence of ion mobility as a useful tool in lipid analysis are allowing greater separation of lipid isomers than ever before. At the same time, novel ion activation techniques, such as ozone-induced dissociation, are pushing lipid structural characterization by mass spectrometry to new levels. Nevertheless, the quantitative capacity of these techniques is yet to be proven and further refinements are required to unravel the high level of lipid complexity found in biological samples. At present there is no one technique capable of providing full structural characterization of lipids from a biological sample. There are however, numerous techniques now available (as discussed in this review) that could be deployed in a targeted approach. Moving forward, the combination of advanced separation and ion activation techniques is likely to provide mass spectrometry-based lipidomics with its best opportunity to achieve complete molecular-level lipid characterization and measurement from complex mixtures.
随着脂质组学领域的不断发展,其应用范围日益广泛且多样,重要的是我们不能忘记其基础,即分子脂质的鉴定和测量。液相色谱技术的进步以及离子淌度作为脂质分析中一种有用工具的出现,使得脂质异构体的分离比以往任何时候都更加出色。与此同时,诸如臭氧诱导解离等新型离子活化技术正在将基于质谱的脂质结构表征提升到新的水平。然而,这些技术的定量能力还有待证明,并且需要进一步改进以解析生物样品中高度复杂的脂质成分。目前还没有一种技术能够对生物样品中的脂质进行完整的结构表征。不过,现在有许多技术可供使用(如本综述中所讨论的),可以采用靶向方法加以应用。展望未来,先进的分离技术与离子活化技术相结合,很可能为基于质谱的脂质组学提供最佳机会,以实现从复杂混合物中对脂质进行完整的分子水平表征和测量。