Li Xin, Nakayama Kenji, Goto Takayuki, Akamatsu Shusuke, Kobayashi Takashi, Shimizu Koji, Ogawa Osamu, Inoue Takahiro
Department of Urology, Graduate School of Medicine, Kyoto University, Kyoto, Japan.
Clinical Research Center for Medical Equipment Development, Kyoto University Hospital, Kyoto, Japan.
Transl Androl Urol. 2021 Apr;10(4):1829-1849. doi: 10.21037/tau-20-1263.
As a newly emerged discipline, lipidomic studies have focused on the comprehensive characterization and quantification of lipids in a given biological system, which has remarkably advanced in recent years owing to the rapid development of analytical techniques, especially mass spectrometry. Among diverse lipid classes, phospholipids, which have fundamental roles in the formation of cellular membranes, signaling processes, and bioenergetics have gained momentum in several fields of research. The altered composition, concentration, spatial distribution, and metabolism of phospholipids in cells, tissues, and body fluids have been elucidated in various human diseases such as cancer, inflammation, as well as cardiovascular and metabolic disorders. Among the different kinds of phospholipid sources in the human body, urine has not been extensively investigated in recent years owing to the extremely low concentrations of phospholipids and high levels of salts and other contaminants, which can interfere with precise detection. However, with profound advances and rapid expansion in analytical methods, urinary phospholipids have attracted increasing attention in current biomedical research as urine is an easily available source for the discovery of noninvasive biomarkers. In this review, we provide an overview of urinary phospholipids, including their biochemical aspects and clinical applications, aimed at promoting this field of research.
作为一门新兴学科,脂质组学研究聚焦于对特定生物系统中脂质进行全面表征和定量分析。近年来,由于分析技术尤其是质谱技术的快速发展,该领域取得了显著进展。在各类脂质中,磷脂在细胞膜形成、信号传导过程及生物能量学方面发挥着重要作用,在多个研究领域受到越来越多的关注。细胞、组织和体液中磷脂的组成、浓度、空间分布及代谢变化,已在癌症、炎症以及心血管和代谢紊乱等多种人类疾病中得到阐明。在人体不同的磷脂来源中,尿液因磷脂浓度极低且盐类和其他污染物含量高,会干扰精确检测,近年来未得到广泛研究。然而,随着分析方法的巨大进步和迅速扩展,尿液作为发现无创生物标志物的便捷来源,尿磷脂在当前生物医学研究中已引起越来越多的关注。在本综述中,我们概述了尿磷脂,包括其生化特性及临床应用,旨在推动该研究领域的发展。