Chen Yuan-Chih, Hsu Jing-Fang, Chang Chih-Wei, Li Shih-Wen, Yang Ya-Chi, Chao Mu-Rong, Chen Hauh-Jyun C, Liao Pao-Chi
Department of Environmental and Occupational Health, College of Medicine, National Cheng Kung University, Tainan, 704, Taiwan.
National Institute of Environmental Health Sciences, National Health Research Institutes, Miaoli, Taiwan.
Mass Spectrom Rev. 2023 Nov-Dec;42(6):2466-2486. doi: 10.1002/mas.21805. Epub 2022 Sep 5.
Compared with the rapid advances in genomics leading to broad understanding of human disease, the linkage between chemical exposome and diseases is still under investigation. High-resolution mass spectrometry (HRMS) is expected to accelerate the process via relatively accurate and precise biomonitoring of human exposome. This review covers recent advancements in biomonitoring of exposed environmental chemicals (chemical exposome) using HRMS described in the 124 articles that resulted from a systematic literature search on Medline and Web of Science databases. The analytical strategic aspects, including the selection of specimens, sample preparation, instrumentation, untargeted versus targeted analysis, and workflows for MS-based biomonitoring to explore the environmental chemical space of human exposome, are deliberated. Applications of HRMS in human exposome investigation are presented by biomonitoring (1) exposed chemical compounds and their biotransformation products; (2) DNA/protein adducts; and (3) endogenous compound perturbations. Challenges and future perspectives are also discussed.
与基因组学取得的快速进展使人们对人类疾病有了广泛了解相比,化学暴露组与疾病之间的联系仍在研究之中。高分辨率质谱法(HRMS)有望通过对人类暴露组进行相对准确和精确的生物监测来加速这一进程。本综述涵盖了使用HRMS对暴露环境化学物质(化学暴露组)进行生物监测的最新进展,这些进展来自于对Medline和科学网数据库进行系统文献检索得到的124篇文章。文中讨论了分析策略方面的内容,包括样本选择、样品制备、仪器设备、非靶向与靶向分析,以及基于质谱的生物监测以探索人类暴露组环境化学空间的工作流程。HRMS在人类暴露组研究中的应用通过生物监测进行呈现:(1)暴露的化合物及其生物转化产物;(2)DNA/蛋白质加合物;(3)内源性化合物扰动。文中还讨论了挑战和未来展望。