Lagarrigue Mélanie, Caprioli Richard M, Pineau Charles
Protim, Inserm U1085, IRSET, Campus de Beaulieu, Rennes Cedex F-35042, France; Université de Rennes I, Campus de Beaulieu, Rennes Cedex F-35042, France.
Departments of Biochemistry, Chemistry, Pharmacology and Medicine, Vanderbilt University School of Medicine, Nashville, TN 37232, USA.
J Proteomics. 2016 Jul 20;144:133-9. doi: 10.1016/j.jprot.2016.05.008. Epub 2016 May 10.
Risk assessment related to the exposure of humans to chemicals released into the environment is a major concern of our modern societies. In this context, toxicology plays a crucial role to characterize the effects of this exposure on health and identify the targets of these molecules. MALDI imaging mass spectrometry (IMS) is an enabling technology for biodistribution studies of chemicals. Although the majority of published studies are presented in a pharmacological context, the concepts discussed in this review can be applied to the toxicological evaluation of chemicals released into the environment. The major asset of IMS is the simultaneous localization and identification of a parent molecule and its metabolites without labeling and without any prior knowledge. Quantification methods developed in IMS are presented with application to an environmental pollutant. IMS is effective in the localization of chemicals and endogenous species. This opens unique perspectives for the discovery of molecular alterations in metabolites and protein biomarkers that could help for a better understanding of toxicity mechanisms. Distribution studies of agrochemicals in plants by IMS can contribute to a better understanding of their mode of action and to a more effective use of these chemicals, avoiding the current concern of environmental damage.
与人类接触释放到环境中的化学物质相关的风险评估是现代社会的主要关注点。在此背景下,毒理学在表征这种接触对健康的影响以及确定这些分子的作用靶点方面发挥着关键作用。基质辅助激光解吸电离成像质谱(IMS)是用于化学物质生物分布研究的一项使能技术。尽管大多数已发表的研究是在药理学背景下呈现的,但本综述中讨论的概念可应用于对释放到环境中的化学物质的毒理学评估。IMS的主要优势在于无需标记且无需任何先验知识即可同时定位和鉴定母体分子及其代谢物。介绍了在IMS中开发的定量方法及其在一种环境污染物中的应用。IMS在化学物质和内源性物质的定位方面很有效。这为发现代谢物和蛋白质生物标志物中的分子改变开辟了独特的前景,有助于更好地理解毒性机制。通过IMS对农用化学品在植物中的分布研究有助于更好地理解其作用模式,并更有效地使用这些化学品,避免当前对环境破坏的担忧。