A simple and fast method for metabolomic analysis by gas liquid chromatography-mass spectrometry.

Diana Cosovanu, Montserrat Llovera, Gemma Villorbina, Ramon Canela-Garayoa, Jordi Eras
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引用次数: 2

Abstract

Introduction: The metabolomic profile is an essential tool for understanding the physiological processes of biological samples and their changes. In addition, it makes it possible to find new substances with industrial applications or use as drugs. As GC-MS is a very common tool for obtaining the metabolomic profile, a simple and fast method for sample preparation is required.

Objectives: The aim of this research was to develop a direct derivatization method for GC-MS to simplify the sample preparation process and apply it to a wide range of samples for non-targeted metabolomic analysis purposes.

Methods: One pot combined esterification of carboxylic acids with methanol and silylation of the hydroxyl groups was achieved using a molar excess of chlorotrimethylsilane with respect to methanol in the presence of pyridine.

Results: The metabolome profile obtained from different samples, such as bilberry and cherry cuticles, olive leaves, P. aeruginosa and E. coli bacteria, A. niger fungi and human sebum from the ceruminous gland, shows that the procedure allows the identification of a wide variety of metabolites. Aliphatic fatty acids, hydroxyfatty acids, phenolic and other aromatic compounds, fatty alcohols, fatty aldehydes dimethylacetals, hydrocarbons, terpenoids, sterols and carbohydrates were identified at different MSI levels using their mass spectra.

Conclusion: The metabolomic profile of different biological samples can be easily obtained by GC-MS using an efficient simultaneous esterification-silylation reaction. The derivatization method can be carried out in a short time in the same injection vial with a small amount of reagents.

一种简便快速的气相液相色谱-质谱联用分析代谢组学的方法。
代谢组学是了解生物样品生理过程及其变化的重要工具。此外,它使发现具有工业应用或用作药物的新物质成为可能。由于GC-MS是一种非常常用的获取代谢组学谱的工具,因此需要一种简单快速的样品制备方法。目的:本研究的目的是建立一种气相色谱-质谱直接衍生化方法,以简化样品制备过程,并将其应用于广泛的样品,用于非靶向代谢组学分析。方法:在吡啶的存在下,用摩尔过量的氯三甲基硅烷与甲醇进行羧酸与甲醇的酯化反应和羟基的硅基化反应。结果:从不同的样品中获得的代谢组谱,如越橘和樱桃角质层,橄榄叶,铜绿假单胞菌和大肠杆菌,黑杆菌真菌和来自耵聍腺的人类皮脂,表明该方法可以鉴定各种各样的代谢物。脂肪脂肪酸、羟基脂肪酸、酚类和其他芳香族化合物、脂肪醇、脂肪醛、二甲基缩醛、碳氢化合物、萜类、甾醇和碳水化合物在不同的MSI水平上进行了质谱鉴定。结论:采用高效的同时酯化-硅基化反应,气相色谱-质谱法可以很容易地获得不同生物样品的代谢组学特征。衍生化方法可以在短时间内用少量试剂在同一注射瓶中进行。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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