Barshop Institute for Longevity and Aging Studies, University of Texas Health Science Center at San Antonio, San Antonio, Texas 78229, United States.
Departments of Medicine-Diabetes, University of Texas Health Science Center at San Antonio, San Antonio, Texas 78229, United States.
J Agric Food Chem. 2021 Aug 18;69(32):8895-8909. doi: 10.1021/acs.jafc.0c07175. Epub 2021 Feb 19.
Triglyceride (TG) is a class of neutral lipids, which functions as an energy storage depot and is important for cellular growth, metabolism, and function. The composition and content of TG molecular species are crucial factors for nutritional aspects in food chemistry and are directly associated with several diseases, including atherosclerosis, diabetes, obesity, stroke, etc. As a result of the complexities of aliphatic moieties and their different connections/locations to the glycerol backbone in TG molecules, accurate identification of individual TG molecular species and quantitative assessment of TG composition and content are particularly challenging, even at the current stage of lipidomics development. Herein, methods developed for analysis of TG species, such as liquid chromatography-mass spectrometry with a variety of columns and different mass spectrometric techniques, shotgun lipidomics approaches, and ion-mobility-based analysis, are reviewed. Moreover, the potential limitations of the methods are discussed. It is our sincere hope that the overviews and discussions can provide some insights for researchers to select an appropriate approach for TG analysis and can serve as the basis for those who would like to establish a methodology for TG analysis or develop a new method when novel tools become available. Biologically accurate analysis of TG species with an enabling method should lead us toward improving the nutritional quality, revealing the effects of TG on diseases, and uncovering the underlying biochemical mechanisms related to these diseases.
甘油三酯(TG)是一类中性脂质,作为能量储存库,对细胞生长、代谢和功能很重要。TG 分子种类的组成和含量是食品化学中营养方面的关键因素,与多种疾病直接相关,包括动脉粥样硬化、糖尿病、肥胖症、中风等。由于 TG 分子中脂肪部分的复杂性及其与甘油骨架的不同连接/位置,即使在脂质组学发展的现阶段,准确识别单个 TG 分子种类以及定量评估 TG 的组成和含量也特别具有挑战性。本文综述了用于分析 TG 种类的方法,如具有各种色谱柱和不同质谱技术的液相色谱-质谱联用、 shotgun 脂质组学方法和基于离子淌度的分析,还讨论了这些方法的潜在局限性。我们衷心希望这些综述和讨论能为研究人员选择合适的 TG 分析方法提供一些思路,并为那些希望建立 TG 分析方法或在新工具出现时开发新方法的人提供依据。通过一种可行的方法对 TG 种类进行生物学上准确的分析,应该可以改善营养质量,揭示 TG 对疾病的影响,并揭示与这些疾病相关的潜在生化机制。