Center for Metabolic Origins of Disease, Sanford Burnham Prebys Medical Discovery Institute, 6400 Sanger Road, Orlando, Florida 32827, USA and College of Basic Medical Sciences, Zhejiang Chinese Medical University, 548 Bingwen Road, Hangzhou, Zhejiang 310053, China.
Nat Rev Endocrinol. 2016 Nov;12(11):668-679. doi: 10.1038/nrendo.2016.98. Epub 2016 Jul 29.
Many thousands of lipid species exist and their metabolism is interwoven via numerous pathways and networks. These networks can also change in response to cellular environment alterations, such as exercise or development of a disease. Measuring such alterations and understanding the pathways involved is crucial to fully understand cellular metabolism. Such demands have catalysed the emergence of lipidomics, which enables the large-scale study of lipids using the principles of analytical chemistry. Mass spectrometry, largely due to its analytical power and rapid development of new instruments and techniques, has been widely used in lipidomics and greatly accelerated advances in the field. This Review provides an introduction to lipidomics and describes some common, but important, cellular metabolic networks that can aid our understanding of metabolic pathways. Some representative applications of lipidomics for studying lipid metabolism and metabolic diseases are highlighted, as well as future applications for the use of lipidomics in studying metabolic pathways.
存在成千上万种脂质物种,它们的代谢通过许多途径和网络交织在一起。这些网络也可以响应细胞环境的改变而变化,例如运动或疾病的发展。测量这些变化并了解所涉及的途径对于全面了解细胞代谢至关重要。这些需求催化了脂质组学的出现,它使我们能够使用分析化学的原理对脂质进行大规模研究。质谱分析由于其分析能力以及新仪器和技术的快速发展,已在脂质组学中得到广泛应用,并极大地推动了该领域的发展。本文综述介绍了脂质组学,并描述了一些常见但重要的细胞代谢网络,这些网络可以帮助我们理解代谢途径。还强调了脂质组学在研究脂质代谢和代谢性疾病方面的一些代表性应用,以及脂质组学在研究代谢途径方面的未来应用。