García-Sevillano Miguel Ángel, García-Barrera Tamara, Gómez-Ariza José Luis
Department of Chemistry and Materials Science, Faculty of Experimental Science, University of Huelva, Huelva, Spain.
International Agrofood Campus of Excellence International ceiA3, University of Huelva, Spain.
Electrophoresis. 2015 Sep;36(18):2348-2365. doi: 10.1002/elps.201500052.
Environmental metabolomics is an emerging field referred to the application of metabolomics to characterize the interactions of living organisms with their environment. In this sense, the importance of monitoring the effects of toxic metals on living organisms has increased as a consequence of natural changes and anthropogenic activities that have led to an increase of toxic metal levels in terrestrial and aquatic ecosystems. For this purpose, the use of metabolomics based on MS to study metal toxicity is gaining importance in recent years. Environmental metabolomics can be used to: discover the mode of action (MOA) of toxic metals through controlled laboratory experiments; evaluate toxicity (biological adverse response to a substance), that may be useful in risk assessment; and develop new biomarkers (based in metabolome shifts discovered through controlled laboratory experiments) that may be applied in environmental biomonitoring (environmental realistic scenario). In this review, it is discussed how metabolomics based on MS can be applied to study metal toxicity, considering the most important hallmarks related to metabolomic experiments.
环境代谢组学是一个新兴领域,指的是应用代谢组学来表征生物体与其环境之间的相互作用。从这个意义上说,由于自然变化和人类活动导致陆地和水生生态系统中有毒金属水平升高,监测有毒金属对生物体的影响变得更加重要。为此,近年来基于质谱的代谢组学在研究金属毒性方面的应用越来越重要。环境代谢组学可用于:通过可控的实验室实验发现有毒金属的作用模式(MOA);评估毒性(对物质的生物不良反应),这可能有助于风险评估;开发新的生物标志物(基于通过可控实验室实验发现的代谢组变化),可应用于环境生物监测(环境实际场景)。在这篇综述中,我们将讨论基于质谱的代谢组学如何应用于研究金属毒性,同时考虑与代谢组学实验相关的最重要特征。