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首页> 外文期刊>Journal of the Brazilian Chemical Society >A Systematic Pipeline to Enhance the Fecal Metabolome Coverage by LC-HRMS
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A Systematic Pipeline to Enhance the Fecal Metabolome Coverage by LC-HRMS

机译:系统管道,以增强LC-HRMS的粪便代谢覆盖率

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The comprehended knowledge of the metabolic profile of the fecal matter has been recognized as an important point for understanding metabolic changes in the human systemic metabolism and it can provide precious information about host-gut microbiota interactions. However, few analytical strategies have been addressed for a broad analysis of metabolites with different chemical properties to better understand the chemical space of fecal samples. Here we report a systematic pipeline to achieve comprehensive coverage of the fecal metabolome, from high polar to nonpolar metabolites, using dog fecal samples as a proof-of-concept. This pipeline comprises a monophasic (ACN/H 2 O) and a biphasic extraction (methyl tert- butyl ether (MTBE)/MeOH/H 2 O) of the sample, followed by three liquid chromatography-high resolution tandem mass spectrometry (LC-HRMS/MS) methods using HILIC-amide, RP-C 18 and CSH-C 18 columns, and a switch polarity acquisition mode in the electrospray ion source. This approach allowed the annotation of 376 metabolites from 70 different chemical classes. The chemical space analysis by molecular networking and the pathway analysis revealed the complexity of the fecal sample and the importance of combined methods to better understand biochemical pathways. This pipeline can be used as a valuable tool to comprehend the relationship between host-gut microbiota metabolites and the influence of diet, medication, or environmental changes.
机译:理解对粪便物质的代谢概况的理解知识已被认为是了解人体系统性新陈代谢的代谢变化,并且可以提供有关宿主微生物群相互作用的珍贵信息。然而,已经解决了很少的分析策略对于具有不同化学性质的代谢物的广泛分析,以更好地了解粪便样品的化学空间。在这里,我们报告了一种系统化的管道,以实现粪便代谢物的全面覆盖,从高北极极代谢物中使用狗粪便样本作为概念验证。该管道包含单选性(ACN / H 2 O)和样品的双相萃取(甲基叔丁基醚(MTBE)/ MeOH / H 2 O),其次是三种液相色谱 - 高分辨率串联质谱法(LC- HRMS / MS)使用HILIC - 酰胺,RP-C 18和CSH-C 18列的方法,以及电喷雾离子源中的开关极性采集模式。这种方法允许从70种不同的化学类别注释376代谢物。通过分子网络和途径分析的化学空间分析揭示了粪便样本的复杂性和组合方法更好地了解生化途径的重要性。该管道可以用作理解宿主微生物群代谢物与饮食,药物或环境变化影响之间的有价值的工具。

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