Lipid Biology, Nestlé Institute of Health Sciences , EPFL Innovation Park, Bâtiment H, 1015 Lausanne, Switzerland.
J Proteome Res. 2017 Aug 4;16(8):2947-2953. doi: 10.1021/acs.jproteome.7b00236. Epub 2017 Jul 3.
Lipoproteins are responsible for the transport of lipids and other nutrients in the circulation and therefore play an important role in lipid metabolism and dyslipidemia. They have also been linked to multiple metabolic disorders including cardiovascular disease, and thus understanding their lipid composition is of crucial importance. Characterization of lipoproteins is a challenging task due to their heterogeneity. In particular, their fractionation is often laborious and time-consuming, making large sets of clinical samples difficult to analyze. We developed and validated lipidomics analysis of lipoproteins including chylomicrons, very low-density, low-density, and high-density lipoproteins. Lipoproteins were first fractionated by polyacrylamide tube gel electrophoresis, and, after liquid-liquid extraction, lipids were analyzed by direct-infusion mass spectrometry. About 100 unique lipid species were detected with good reproducibility and reliability. In addition to their lipid composition, valuable information on the fatty acid composition of lipoproteins and lipids was obtained. The presented method offers in-depth analysis of the lipid as well as fatty acid composition of lipoproteins while allowing a good sample throughput. It is thus especially suited for studying lipid associated diseases in clinical cohorts.
脂蛋白负责在循环中运输脂质和其他营养素,因此在脂质代谢和血脂异常中发挥重要作用。它们还与多种代谢紊乱有关,包括心血管疾病,因此了解它们的脂质组成至关重要。由于脂蛋白的异质性,对其进行特征描述是一项具有挑战性的任务。特别是,它们的分级分离通常既费力又耗时,使得大量临床样本难以分析。我们开发并验证了脂蛋白(包括乳糜微粒、极低密度脂蛋白、低密度脂蛋白和高密度脂蛋白)的脂质组学分析。首先通过聚丙烯酰胺管凝胶电泳对脂蛋白进行分级分离,然后进行液-液萃取,直接注入质谱分析脂质。该方法具有良好的重现性和可靠性,可检测到约 100 种独特的脂质种类。除了脂质组成外,还获得了有关脂蛋白和脂质脂肪酸组成的有价值信息。该方法提供了脂蛋白的脂质和脂肪酸组成的深入分析,同时允许良好的样品通量。因此,它特别适合在临床队列中研究与脂质相关的疾病。