Lapid Kfir, Graff Jonathan M
a Division of Endocrinology, Department of Internal Medicine , UT Southwestern Medical Center , Dallas , TX , USA.
b Department of Molecular Biology , UT Southwestern Medical Center , Dallas , TX , USA.
Adipocyte. 2017 Jul 3;6(3):176-186. doi: 10.1080/21623945.2017.1299298. Epub 2017 Mar 1.
Lipids have the potential to serve as bio-markers, which allow us to analyze and to identify cells under various experimental settings, and to serve as a clinical diagnostic tool. For example, diagnosis according to specific lipids that are associated with diabetes and obesity. The rapid development of mass-spectrometry techniques enables identification and profiling of multiple types of lipid species. Together, lipid profiling and data interpretation forge the new field of lipidomics. Lipidomics can be used to characterize physiologic and pathophysiological processes in adipocytes, since lipid metabolism is at the core of adipocyte physiology and energy homeostasis. A significant bulk of lipids are stored in adipocytes, which can be released and used to produce energy, used to build membranes, or used as signaling molecules that regulate metabolism. In this review, we discuss how exhaust of lipidomes can be used to study adipocyte differentiation, physiology and pathophysiology.
脂质有潜力作为生物标志物,这使我们能够在各种实验条件下分析和识别细胞,并作为一种临床诊断工具。例如,根据与糖尿病和肥胖相关的特定脂质进行诊断。质谱技术的快速发展使得能够识别和分析多种脂质种类。脂质谱分析和数据解读共同形成了脂质组学这一新领域。脂质组学可用于表征脂肪细胞中的生理和病理生理过程,因为脂质代谢是脂肪细胞生理学和能量稳态的核心。大量脂质储存在脂肪细胞中,这些脂质可以被释放出来用于产生能量、构建细胞膜或用作调节代谢的信号分子。在这篇综述中,我们讨论了脂质组如何用于研究脂肪细胞的分化、生理学和病理生理学。