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开发和应用一种多维数据库,用于检测人类季铵化合物及其 I 相肝代谢物。

Development and Application of a Multidimensional Database for the Detection of Quaternary Ammonium Compounds and Their Phase I Hepatic Metabolites in Humans.

机构信息

Department of Medicinal Chemistry, University of Washington, Seattle, Washington 98195, United States.

Department of Mathematics, University of Washington, Seattle, Washington 98195, United States.

出版信息

Environ Sci Technol. 2024 Apr 9;58(14):6236-6249. doi: 10.1021/acs.est.3c10845. Epub 2024 Mar 27.

Abstract

The COVID-19 pandemic has led to significantly increased human exposure to the widely used disinfectants quaternary ammonium compounds (QACs). Xenobiotic metabolism serves a critical role in the clearance of environmental molecules, yet limited data are available on the routes of QAC metabolism or metabolite levels in humans. To address this gap and to advance QAC biomonitoring capabilities, we analyzed 19 commonly used QACs and their phase I metabolites by liquid chromatography-ion mobility-tandem mass spectrometry (LC-IM-MS/MS). In vitro generation of QAC metabolites by human liver microsomes produced a series of oxidized metabolites, with metabolism generally occurring on the alkyl chain group, as supported by MS/MS fragmentation. Discernible trends were observed in the gas-phase IM behavior of QAC metabolites, which, despite their increased mass, displayed smaller collision cross-section (CCS) values than those of their respective parent compounds. We then constructed a multidimensional reference SQLite database consisting of /, CCS, retention time (), and MS/MS spectra for 19 parent QACs and 81 QAC metabolites. Using this database, we confidently identified 13 parent QACs and 35 metabolites in de-identified human fecal samples. This is the first study to integrate in vitro metabolite biosynthesis with LC-IM-MS/MS for the simultaneous monitoring of parent QACs and their metabolites in humans.

摘要

COVID-19 大流行导致人类接触广泛使用的消毒剂季铵化合物(QACs)的暴露显著增加。异源生物代谢在清除环境分子方面起着至关重要的作用,但关于 QAC 代谢途径或人类代谢物水平的数据有限。为了填补这一空白并提高 QAC 生物监测能力,我们通过液相色谱-离子淌度-串联质谱(LC-IM-MS/MS)分析了 19 种常用的 QAC 及其 I 相代谢物。人肝微粒体体外生成 QAC 代谢物产生了一系列氧化代谢物,支持 MS/MS 碎片的代谢通常发生在烷基链基团上。尽管 QAC 代谢物的质量增加,但在气相 IM 行为中观察到明显的趋势,其碰撞截面(CCS)值小于各自母体化合物的 CCS 值。然后,我们构建了一个多维参考 SQLite 数据库,其中包含 19 种母体 QAC 和 81 种 QAC 代谢物的/、CCS、保留时间()和 MS/MS 图谱。使用该数据库,我们在去识别的人类粪便样本中自信地鉴定出 13 种母体 QAC 和 35 种代谢物。这是第一项将体外代谢物生物合成与 LC-IM-MS/MS 相结合,用于同时监测人类母体 QAC 及其代谢物的研究。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3c17/11008582/c66abd71f3e7/es3c10845_0001.jpg

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