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评估金属(类)-宿主-微生物相互作用的组学方法:综述。

Omic methodologies for assessing metal(-loid)s-host-microbiota interplay: A review.

机构信息

Research Center of Natural Resources, Health and the Environment (RENSMA), Department of Chemistry, Faculty of Experimental Sciences, University of Huelva, Fuerzas Armadas Ave., Huelva, Spain.

Department of Integrated Sciences, Cell Biology, Faculty of Experimental Sciences, University of Huelva, Spain.

出版信息

Anal Chim Acta. 2021 Sep 1;1176:338620. doi: 10.1016/j.aca.2021.338620. Epub 2021 May 19.

Abstract

Omic methodologies have become key analytical tools in a wide number of research topics such as systems biology, environmental analysis, biomedicine or food analysis. They are especially useful when they are combined providing a new perspective and a holistic view of the analytical problem. Methodologies for microbiota analysis have been mostly focused on genome sequencing. However, information provided by these metagenomic studies is limited to the identification of the presence of genes, taxa and their inferred functionality. To achieve a deeper knowledge of microbial functionality in health and disease, especially in dysbiosis conditions related to metal and metalloid exposure, the introduction of additional meta-omic approaches including metabolomics, metallomics, metatranscriptomics and metaproteomics results essential. The possible impact of metals and metalloids on the gut microbiota and their effects on gut-brain axis (GBA) only begin to be figured out. To this end new analytical workflows combining powerful tools are claimed such as high resolution mass spectrometry and heteroatom-tagged proteomics for the absolute quantification of metal-containing biomolecules using the metal as a "tag" in a sensitive and selective detector (e.g. ICP-MS). This review focus on current analytical methodologies related with the analytical techniques and procedures available for metallomics and microbiota analysis with a special attention on their advantages and drawbacks.

摘要

Omic 方法已成为众多研究课题(如系统生物学、环境分析、生物医学或食品分析)的关键分析工具。当它们结合使用时,提供了分析问题的新视角和整体视图,这些方法特别有用。微生物组分析方法主要集中在基因组测序上。然而,这些宏基因组研究提供的信息仅限于基因、分类群及其推断功能的存在的识别。为了更深入地了解微生物在健康和疾病中的功能,特别是在与金属和类金属暴露相关的失调条件下,引入包括代谢组学、金属组学、转录组学和蛋白质组学在内的额外元组学方法是必不可少的。金属和类金属对肠道微生物群的可能影响及其对肠道-大脑轴 (GBA) 的影响才刚刚开始被发现。为此,需要结合高通量的工具来开发新的分析工作流程,例如高分辨率质谱和杂原子标记蛋白质组学,使用金属作为“标记”(例如,ICP-MS)在敏感和选择性探测器中对含金属生物分子进行绝对定量。本文重点介绍了与金属组学和微生物组分析相关的当前分析方法,特别关注它们的优缺点。

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