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双衍生化策略用于通过质谱法对游离脂肪酸中双键进行高灵敏度和高覆盖率的定位。

Double Derivatization Strategy for High-Sensitivity and High-Coverage Localization of Double Bonds in Free Fatty Acids by Mass Spectrometry.

机构信息

Oil Crops Research Institute of the Chinese Academy of Agricultural Sciences, Key Laboratory of Oilseeds Processing of Ministry of Agriculture, Hubei Key Laboratory of Lipid Chemistry and Nutrition, Wuhan 430062, P. R. China.

Turku Bioscience Centre, University of Turku and Åbo Akademi University, FI-20520 Turku, Finland.

出版信息

Anal Chem. 2020 May 5;92(9):6446-6455. doi: 10.1021/acs.analchem.9b05588. Epub 2020 Apr 16.

Abstract

Free fatty acids (FFAs) are key intermediates of lipid metabolism that have a crucial role in many critical biological processes. The specific locations of carbon-carbon double bonds (C═C) in FFAs are often associated with distinct biological functions. Despite the rapid development of analytical techniques, identification of C═C locations in FFAs with more than three C═C bonds in complex biological matrices remains a challenge. Herein, we describe a double derivatization strategy, coupled with shotgun-mass spectrometry (MS), for unambiguous and sensitive determination of a high-coverage C═C bond (from 1 to 6) locations of FFAs. Our approach is based on combination of acetone labeling of C═C bonds and ,-diethyl-1,2-ethanediamine (DEEA) labeling of carboxyl groups within FFAs. Acetone labeling of C═C bonds via photochemical reaction provides diagnostic ions, specific to C═C locations, and DEEA labeling of carboxyl groups significantly enhances MS response of diagnostic ions, by invoking a readily protonated tertiary amine group on FFA analytes. By exploiting this double derivatization strategy, the assignment of C═C locations of FFAs with more than three C═C bonds was achieved with high sensitivity (limit of quantitation (LOQ) 0.1-1.5 nmol/L). In contrast, such assignments were not possible by acetone labeling alone, because of the low sensitivity of diagnostic ions in negative ionization mode of MS. The applicability of our method was demonstrated by profiling of FFAs, including unsaturated FFA C═C positional isomers, in liver samples from mice with nonalcoholic fatty liver disease (NAFLD) and their lean controls. The study showed that the high-specificity and high-sensitivity method developed here is promising for accurate identification and quantitation of a wide array of FFAs in biological samples.

摘要

游离脂肪酸 (FFAs) 是脂质代谢的关键中间产物,在许多关键的生物过程中起着至关重要的作用。FFAs 中碳-碳双键 (C═C) 的特定位置通常与独特的生物学功能相关联。尽管分析技术发展迅速,但在复杂的生物基质中鉴定具有三个以上 C═C 键的 FFAs 的 C═C 位置仍然是一个挑战。在此,我们描述了一种双重衍生化策略,结合 shotgun-质谱 (MS),用于明确且灵敏地测定 FFAs 中高覆盖率 C═C 键 (从 1 到 6) 的位置。我们的方法基于 C═C 键的丙酮标记和 FFAs 中羧基的,-二乙基-1,2-乙二胺 (DEEA) 标记的结合。通过光化学反应对 C═C 键进行丙酮标记提供了特定于 C═C 位置的诊断离子,而对羧基进行 DEEA 标记通过在 FFA 分析物上引入易于质子化的叔胺基团,显著增强了诊断离子的 MS 响应。通过利用这种双重衍生化策略,实现了对具有三个以上 C═C 键的 FFAs 的 C═C 位置的高灵敏度分配(定量下限 (LOQ) 为 0.1-1.5 nmol/L)。相比之下,由于在 MS 的负离子模式下诊断离子的灵敏度较低,仅使用丙酮标记无法进行这种分配。该方法的适用性通过对非酒精性脂肪肝 (NAFLD) 小鼠及其瘦对照组的肝样品中游离脂肪酸 (FFAs) 的分析得到了证明,包括不饱和 FFAs C═C 位置异构体。研究表明,这里开发的高特异性和高灵敏度方法有望用于准确识别和定量生物样品中的各种 FFAs。

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