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首页> 外文期刊>Journal of chromatography, A: Including electrophoresis and other separation methods >Quantitative liquid chromatography-electrospray ionization-mass spectrometry analysis of amine-containing metabolites derivatized with cyanuric chloride and methylamine isotopologues
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Quantitative liquid chromatography-electrospray ionization-mass spectrometry analysis of amine-containing metabolites derivatized with cyanuric chloride and methylamine isotopologues

机译:液相色谱-电喷雾电离-质谱法分析氰尿酰氯和甲胺等位异构体衍生的含胺代谢物

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Electrospray ionization (ESI) is the most useful interface for mass spectrometry associated with liquid chromatography (LC). However, analyses of polar metabolites become a challenge because the high polarity impairs the separation of metabolites in reversed-phase liquid chromatography and ionization of metabolites by ESI. In this article, we have used cyanuric chloride to couple the amine-containing molecules with methylamine and found that both resolution on LC chromatogram and ionization by ESI are greatly improved. Derivatives would be obtained in 2-h coupling reactions, and then resolved by LC-ESI-MS in 15 min for each sample. Most amino acids can be quantified with linear range from I nM to 1 mu M and with an R-2 above 0.979. Although reversed-phase chromatography is suitable for resolving the derivatives, phenyl columns with methanol elution provide optimal separation and signal intensity. Moreover, most structural isomers are well separated following cyanuric chloride and methylamine derivatization. Instead of synthesizing a stable isotope-labeled cyanuric chloride, we can take advantage of using commercially available methyl-d3-amine for a novel stable isotope-coded derivatization method. Each metabolite can be directly quantified by the peak intensity ratio of each derivative isotopologue pair in a single LC-MS analysis. The coupling reactions are relatively easy and accessible to most investigators to generate multiple stable isotope-labeled derivatives of amine-containing compounds for a differential metabolomic analysis. (C) 2015 Elsevier B.V. All rights reserved.
机译:电喷雾电离(ESI)是与液相色谱(LC)相关的质谱分析最有用的接口。但是,极性代谢物的分析成为一项挑战,因为高极性会损害反相液相色谱法中代谢物的分离以及ESI对代谢物的电离作用。在本文中,我们使用氰尿酰氯将含胺分子与甲胺偶联,发现LC色谱图的分离度和ESI的电离度均得到了极大的提高。将在2小时的偶联反应中获得衍生物,然后通过LC-ESI-MS在15分钟内对每个样品进行拆分。大多数氨基酸的定量线性范围为1 nM至1μM,R-2高于0.979。尽管反相色谱适用于拆分衍生物,但采用甲醇洗脱的苯基柱可提供最佳分离效果和信号强度。而且,在氰尿酰氯和甲胺衍生化之后,大多数结构异构体都可以很好地分离。代替合成稳定的同位素标记的氰尿酰氯,我们可以利用将市售的甲基-d3-胺用于新颖的稳定同位素编码的衍生方法。每种代谢物可通过单个LC-MS分析中每个衍生的同位素异构体对的峰强度比直接定量。偶联反应相对容易,并且对于大多数研究者而言是容易获得的,以产生多种稳定的同位素标记的含胺化合物衍生物,用于差异代谢组学分析。 (C)2015 Elsevier B.V.保留所有权利。

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