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LC/ESI-MS/MS 通过电荷反转衍生化检测 FA,灵敏度提高超过四个数量级。

LC/ESI-MS/MS detection of FAs by charge reversal derivatization with more than four orders of magnitude improvement in sensitivity.

机构信息

Departments of Chemistry and University of Washington, Seattle, WA 98195.

出版信息

J Lipid Res. 2013 Dec;54(12):3523-30. doi: 10.1194/jlr.D040782. Epub 2013 Aug 14.

Abstract

Quantitative analysis of fatty acids (FAs) is an important area of analytical biochemistry. Ultra high sensitivity FA analysis usually is done with gas chromatography of pentafluorobenzyl esters coupled to an electron-capture detector. With the popularity of electrospray ionization (ESI) mass spectrometers coupled to liquid chromatography, it would be convenient to develop a method for ultra high sensitivity FA detection using this equipment. Although FAs can be analyzed by ESI in negative ion mode, this method is not very sensitive. In this study, we demonstrate a new method of FA analysis based on conversion of the carboxylic acid to an amide bearing a permanent positive charge, N-(4-aminomethylphenyl)pyridinium (AMPP) combined with analysis on a reverse-phase liquid chromatography column coupled to an ESI mass spectrometer operating in positive ion mode. This leads to an ∼60,000-fold increase in sensitivity compared with the same method carried out with underivatized FAs. The new method is about 10-fold more sensitive than the existing method of gas chromatography/electron-capture mass spectrometry of FA pentafluorobenzyl esters. Furthermore, significant fragmentation of the precursor ions in the nontag portion improves analytical specificity. We show that a large number of FA molecular species can be analyzed with this method in complex biological samples such as mouse serum.

摘要

脂肪酸(FAs)的定量分析是分析生物化学的一个重要领域。超灵敏 FA 分析通常采用五氟苄基酯衍生化结合电子捕获检测器的气相色谱法进行。随着电喷雾电离(ESI)质谱仪与液相色谱的普及,开发一种使用该设备进行超灵敏 FA 检测的方法将非常方便。尽管 FA 可以在负离子模式下通过 ESI 进行分析,但这种方法的灵敏度不是很高。在本研究中,我们展示了一种基于将羧酸转化为带有永久正电荷的酰胺的新 FA 分析方法,即 N-(4-氨甲基苯基)吡啶鎓(AMPP),并结合反相液相色谱柱和 ESI 质谱仪在正离子模式下进行分析。与未衍生化的 FA 进行相同方法相比,这导致灵敏度提高了约 60,000 倍。与 FA 五氟苄基酯的现有气相色谱/电子捕获质谱法相比,新方法的灵敏度提高了约 10 倍。此外,前体离子在非标签部分的显著碎片化提高了分析的特异性。我们表明,该方法可用于分析复杂生物样品(如鼠血清)中的大量 FA 分子种类。

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