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Rapid Preparation of a Large Sulfated Metabolite Library for Structure Validation in Human Samples

机译:在人类样品中的结构验证的大型硫酸盐代谢物库的快速制备

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摘要

Metabolomics analysis of biological samples is widely applied in medical and natural sciences. Assigning the correct chemical structure in the metabolite identification process is required to draw the correct biological conclusions and still remains a major challenge in this research field. Several metabolite tandem mass spectrometry (MS/MS) fragmentation spectra libraries have been developed that are either based on computational methods or authentic libraries. These libraries are limited due to the high number of structurally diverse metabolites, low commercial availability of these compounds, and the increasing number of newly discovered metabolites. Phase II modification of xenobiotics is a compound class that is underrepresented in these databases despite their importance in diet, drug, or microbiome metabolism. The O-sulfated metabolites have been described as a signature for the co-metabolism of bacteria and their human host. Herein, we have developed a straightforward chemical synthesis method for rapid preparation of sulfated metabolite standards to obtain mass spectrometric fragmentation pattern and retention time information. We report the preparation of 38 O-sulfated alcohols and phenols for the determination of their MS/MS fragmentation pattern and chromatographic properties. Many of these metabolites are regioisomers that cannot be distinguished solely by their fragmentation pattern. We demonstrate that the versatility of this method is comparable to standard chemical synthesis. This comprehensive metabolite library can be applied for co-injection experiments to validate metabolites in different human sample types to explore microbiota-host co-metabolism, xenobiotic, and diet metabolism.
机译:生物样品的代谢组分析广泛应用于医学和自然科学。在代谢物识别过程中分配正确的化学结构是为了得出正确的生物学结论,并且仍然仍然是这项研究领域的主要挑战。已经开发了几种代谢物串联质谱(MS / MS / MS)碎片光谱库,其是基于计算方法或真实的库。这些文库是有限的,由于结构多样的代谢物,这些化合物的低商业可用性,以及越来越多的新发现代谢物。异丙酸的II期修饰是尽管他们在饮食,药物或微生物组新陈代谢的重要性,但是在这些数据库中经历的复合类。 O-硫酸盐代谢物已被描述为细菌和其人宿主的共代谢的签名。在此,我们开发了一种简单的化学合成方法,用于快速制备硫酸化代谢物标准,以获得质谱分段模式和保留时间信息。我们报告制备38 o-硫酸化醇和酚用于测定其MS / MS碎片图案和色谱性能。这些代谢物中的许多是不能仅通过它们的碎裂模式来区分的再生物。我们证明该方法的多功能性与标准化学合成相当。该综合性代谢物库可用于共注入实验,以验证不同人类样品中的代谢物,以探索微生物群宿主共代谢,异种症和饮食代谢。

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