代谢组学
微生物群
代谢组
化学
计算生物学
人类微生物组计划
人体微生物群
质谱法
人血浆
生物标志物发现
生物
生物信息学
色谱法
生物化学
蛋白质组学
基因
作者
Weifeng Lin,Louis P. Conway,Miroslav Vujasinović,Matthias Löhr,Daniel Globisch
标识
DOI:10.1002/anie.202107101
摘要
The microbiome has a fundamental impact on the human host's physiology through the production of highly reactive compounds that can lead to disease development. One class of such compounds are carbonyl-containing metabolites, which are involved in diverse biochemical processes. Mass spectrometry is the method of choice for analysis of metabolites but carbonyls are analytically challenging. Herein, we have developed a new chemical biology tool using chemoselective modification to overcome analytical limitations. Two isotopic probes allow for the simultaneous and semi-quantitative analysis at the femtomole level as well as qualitative analysis at attomole quantities that allows for detection of more than 200 metabolites in human fecal, urine and plasma samples. This comprehensive mass spectrometric analysis enhances the scope of metabolomics-driven biomarker discovery. We anticipate that our chemical biology tool will be of general use in metabolomics analysis to obtain a better understanding of microbial interactions with the human host and disease development.
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