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电子垃圾处理工人的综合血液代谢组和暴露组分析、注释及解读

Comprehensive Blood Metabolome and Exposome Analysis, Annotation, and Interpretation in E-Waste Workers.

作者信息

Pang Zhiqiang, Viau Charles, Fobil Julius N, Basu Niladri, Xia Jianguo

机构信息

Faculty of Agricultural and Environmental Sciences, McGill University, Ste-Anne-de-Bellevue, QC H9X 3V9, Canada.

School of Public Health, University of Ghana, Legon, Accra P.O. Box LG 13, Ghana.

出版信息

Metabolites. 2024 Dec 2;14(12):671. doi: 10.3390/metabo14120671.

Abstract

Electronic and electrical waste (e-waste) production has emerged to be of global environmental public health concern. E-waste workers, who are frequently exposed to hazardous chemicals through occupational activities, face considerable health risks. To investigate the metabolic and exposomic changes in these workers, we analyzed whole blood samples from 100 male e-waste workers and 49 controls from the GEOHealth II project (2017-2018 in Accra, Ghana) using LC-MS/MS. A specialized computational workflow was established for exposomics data analysis, incorporating two curated reference libraries for metabolome and exposome profiling. Two feature detection algorithms, and , were applied. In comparison to , showed better sensitivity in detecting MS features, particularly at trace levels. Principal component analysis demonstrated distinct metabolic profiles between e-waste workers and controls, revealing significant disruptions in key metabolic pathways, including steroid hormone biosynthesis, drug metabolism, bile acid biosynthesis, vitamin metabolism, and prostaglandin biosynthesis. Correlation analyses linked metal exposures to alterations in hundreds to thousands of metabolic features. Functional enrichment analysis highlighted significant perturbations in pathways related to liver function, vitamin metabolism, linoleate metabolism, and dynorphin signaling, with the latter being observed for the first time in e-waste workers. This study provides new insights into the biological impact of prolonged metal exposure in e-waste workers.

摘要

电子和电气废弃物(电子垃圾)的产生已成为全球环境公共卫生关注的问题。电子垃圾处理工人经常通过职业活动接触有害化学物质,面临着相当大的健康风险。为了调查这些工人的代谢和暴露组变化,我们使用液相色谱-串联质谱法(LC-MS/MS)分析了来自GEOHealth II项目(2017 - 2018年于加纳阿克拉)的100名男性电子垃圾处理工人和49名对照者的全血样本。我们建立了一个专门的计算工作流程用于暴露组数据分析,纳入了两个经过整理的参考库用于代谢组和暴露组分析。应用了两种特征检测算法,即 和 。与 相比, 在检测质谱特征方面表现出更好的灵敏度,尤其是在痕量水平。主成分分析表明电子垃圾处理工人和对照者之间存在明显的代谢谱差异,揭示了关键代谢途径的显著破坏,包括类固醇激素生物合成、药物代谢、胆汁酸生物合成、维生素代谢和前列腺素生物合成。相关性分析将金属暴露与数百到数千个代谢特征的改变联系起来。功能富集分析突出了与肝功能、维生素代谢、亚油酸代谢和强啡肽信号传导相关途径的显著扰动,后者首次在电子垃圾处理工人中观察到。这项研究为电子垃圾处理工人长期接触金属的生物学影响提供了新的见解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9fc7/11677618/564acf7c5149/metabolites-14-00671-g001.jpg

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