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基于化学标记的代谢组学分析用液相色谱保留指数的建立。

Establishment of Liquid Chromatography Retention Index Based on Chemical Labeling for Metabolomic Analysis.

机构信息

Key Laboratory of Analytical Chemistry for Biology and Medicine (Ministry of Education), Department of Chemistry , Wuhan University , Wuhan , Hubei 430072 , P.R. China.

出版信息

Anal Chem. 2018 Jul 17;90(14):8412-8420. doi: 10.1021/acs.analchem.8b00901. Epub 2018 Jul 6.

Abstract

Chemical labeling (CL) in combination with liquid chromatography-mass spectrometry (LC-MS) analysis has been demonstrated to be a promising technology in metabolomic analysis. However, identification of chemically labeled metabolites remains to be challenging. Retention time (RT) is one of the most important parameters for the identification of metabolites, but it could vary greatly in LC-MS analysis. In this work, we developed a chemical labeling-based HPLC retention index (CL-HPLC RI) strategy to facilitate the identification of metabolites. In this CL-HPLC RI strategy, a series of 2-dimethylaminoethylamine (DMED)-labeled fatty acids were used as calibrants to establish RIs for DMED-labeled carboxylated compounds and a series of 4-( N, N-dimethylamino)phenyl isothiocyanate (DMAP)-labeled fatty amines were used as calibrants for DMAP-labeled amine compunds. To calculate the RIs, the whole LC chromatogram was divided into 24 time intervals by 23 DMED-labeled fatty acid standards or 15 time intervals by 14 DMAP-labeled fatty amine standards. Then, we established the RIs of 854 detected DMED-labeled carboxylated metabolites and 1057 DMAP-labeled amine metabolites in fecal samples and demonstrated that RIs were highly reproducible under different elution gradients, columns, and instrument systems. Finally, we applied this strategy to the identification of metabolites in human serum. Using RIs, 267 DMED-labeled carboxylated metabolites and 273 DMAP-labeled amine metabolites in human serum matched well with the fecal metabolome database. Taken together, the developed CL-HPLC RI strategy was demonstrated to be a promising method to facilitate the identification of metabolites in metabolomic analysis.

摘要

化学标记(CL)与液相色谱-质谱(LC-MS)分析相结合已被证明是代谢组学分析中很有前途的技术。然而,化学标记代谢物的鉴定仍然具有挑战性。保留时间(RT)是代谢物鉴定的最重要参数之一,但在 LC-MS 分析中变化很大。在这项工作中,我们开发了一种基于化学标记的高效液相色谱保留指数(CL-HPLC RI)策略,以促进代谢物的鉴定。在这种 CL-HPLC RI 策略中,使用一系列 2-二甲氨基乙基胺(DMED)标记的脂肪酸作为校准标准,为 DMED 标记的羧化化合物建立 RI,并使用一系列 4-(N,N-二甲基氨基)苯异硫氰酸酯(DMAP)标记的脂肪酸胺作为校准标准为 DMAP 标记的胺化合物建立 RI。为了计算 RI,通过 23 个 DMED 标记的脂肪酸标准将整个 LC 色谱图分为 24 个时间间隔,或通过 15 个 DMAP 标记的脂肪酸胺标准将整个 LC 色谱图分为 15 个时间间隔。然后,我们建立了粪便样本中 854 种检测到的 DMED 标记的羧化代谢物和 1057 种 DMAP 标记的胺代谢物的 RI,并证明在不同洗脱梯度、色谱柱和仪器系统下 RI 具有高度重现性。最后,我们将该策略应用于人血清代谢物的鉴定。使用 RI,267 种 DMED 标记的羧化代谢物和 273 种 DMAP 标记的胺代谢物与人粪便代谢组数据库匹配良好。总之,所开发的 CL-HPLC RI 策略被证明是促进代谢组学分析中代谢物鉴定的一种很有前途的方法。

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