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使用靶向和全局优化的靶向二次电喷雾电离质谱对肠道微生物群进行头空间气体监测。

Headspace Gas Monitoring of Gut Microbiota Using Targeted and Globally Optimized Targeted Secondary Electrospray Ionization Mass Spectrometry.

机构信息

Department of Chemistry and Biochemistry , Miami University , 651 E. High Street , Oxford , Ohio 45056 , United States.

出版信息

Anal Chem. 2019 Jan 2;91(1):854-863. doi: 10.1021/acs.analchem.8b03517. Epub 2018 Dec 18.

DOI:10.1021/acs.analchem.8b03517
PMID:30516360
Abstract

This study aimed to develop and incorporate a secondary electrospray ionization (SESI) setup in combination with both targeted tandem mass spectrometry (MS/MS) and a hybrid metabolomics technique, globally optimized targeted mass spectrometry (GOT-MS), to sensitively detect volatile metabolites from the headspace of in vitro gut microbial culture in a human colonic model (HCM). Two SESI-tandem mass spectrometry panels with a comparable number of targeted metabolites/features (77 compounds in the targeted SESI-MS/MS panel and 75 features in the SESI-GOT-MS/MS panel) were established. The analytical performance of the SESI-GOT-MS/MS method, as well as its biological capability, were examined and compared with the targeted SESI-MS/MS method. As a result, the SESI-GOT-MS/MS method detected a similar number of metabolic features with good reproducibility (coefficient of variation <10%) compared to the targeted SESI-MS/MS method. Both methods showed a comparable ability to differentiate the gut microbial culture with or without the addition of green tea extract (GTE) to a HCM. The results from analysis of variance (ANOVA) showed that similar numbers of compounds from targeted SESI-MS/MS and metabolic features from SESI-GOT-MS/MS have significant differences when comparing samples collected from different HCM treatment stages. Partial least-squares discriminant analysis (PLS-DA) indicated that both methods could clearly differentiate the stages of GTE treatment. In summary, we demonstrated that SESI-MS/MS in combination with either targeted or GOT approaches can be a useful tool for monitoring gut microbial metabolism and their response to perturbations.

摘要

本研究旨在开发并整合二级电喷雾电离(SESI)装置,结合靶向串联质谱(MS/MS)和混合代谢组学技术,即全局优化靶向质谱(GOT-MS),以灵敏检测人结肠模型(HCM)中体外肠道微生物培养物的顶空挥发代谢物。建立了两个具有可比数量靶向代谢物/特征的 SESI-串联质谱谱图(靶向 SESI-MS/MS 谱图中有 77 种化合物,SESI-GOT-MS/MS 谱图中有 75 种特征)。考察并比较了 SESI-GOT-MS/MS 方法的分析性能及其生物学能力与靶向 SESI-MS/MS 方法。结果表明,与靶向 SESI-MS/MS 方法相比,SESI-GOT-MS/MS 方法检测到相似数量的代谢特征,具有良好的重现性(变异系数<10%)。两种方法都能够很好地区分添加或不添加绿茶提取物(GTE)的 HCM 中的肠道微生物培养物。方差分析(ANOVA)的结果表明,在比较来自不同 HCM 处理阶段的样本时,靶向 SESI-MS/MS 的化合物数量和 SESI-GOT-MS/MS 的代谢特征数量具有相似的显著差异。偏最小二乘判别分析(PLS-DA)表明,两种方法都可以清楚地区分 GTE 处理阶段。总之,我们证明了 SESI-MS/MS 结合靶向或 GOT 方法可以成为监测肠道微生物代谢及其对干扰的反应的有用工具。

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