Andra Syam S, Austin Christine, Patel Dhavalkumar, Dolios Georgia, Awawda Mahmoud, Arora Manish
Exposure Biology, Senator Frank R. Lautenberg Environmental Health Sciences Laboratory, Department of Environmental Medicine and Public Health, Icahn School of Medicine at Mount Sinai, New York, NY 10029, USA.
Exposure Biology, Senator Frank R. Lautenberg Environmental Health Sciences Laboratory, Department of Environmental Medicine and Public Health, Icahn School of Medicine at Mount Sinai, New York, NY 10029, USA.
Environ Int. 2017 Mar;100:32-61. doi: 10.1016/j.envint.2016.11.026. Epub 2017 Jan 4.
Global profiling of xenobiotics in human matrices in an untargeted mode is gaining attention for studying the environmental chemical space of the human exposome. Defined as the study of a comprehensive inclusion of environmental influences and associated biological responses, human exposome science is currently evolving out of the metabolomics science. In analogy to the latter, the development and applications of high resolution mass spectrometry (HRMS) has shown potential and promise to greatly expand our ability to capture the broad spectrum of environmental chemicals in exposome studies. HRMS can perform both untargeted and targeted analysis because of its capability of full- and/or tandem-mass spectrum acquisition at high mass accuracy with good sensitivity. The collected data from target, suspect and non-target screening can be used not only for the identification of environmental chemical contaminants in human matrices prospectively but also retrospectively. This review covers recent trends and advances in this field. We focus on advances and applications of HRMS in human biomonitoring studies, and data acquisition and mining. The acquired insights provide stepping stones to improve understanding of the human exposome by applying HRMS, and the challenges and prospects for future research.
以非靶向模式对人体基质中的外源性物质进行全面分析,正受到越来越多关注,用于研究人类暴露组的环境化学空间。人类暴露组科学被定义为对环境影响和相关生物反应进行全面研究,目前正从代谢组学科学中发展而来。与后者类似,高分辨率质谱(HRMS)的开发和应用已显示出潜力,并有望极大地扩展我们在暴露组研究中捕获广泛环境化学物质的能力。由于HRMS能够以高质谱精度和良好的灵敏度进行全质谱和/或串联质谱采集,因此它可以进行非靶向和靶向分析。从目标、可疑和非目标筛查中收集的数据不仅可以前瞻性地用于识别人类基质中的环境化学污染物,也可以回顾性地使用。本综述涵盖了该领域的最新趋势和进展。我们重点关注HRMS在人体生物监测研究中的进展和应用,以及数据采集和挖掘。所获得的见解为通过应用HRMS增进对人类暴露组的理解提供了垫脚石,以及未来研究的挑战和前景。