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一体健康时代的外核组学。

The Exposome in the Era of One Health.

机构信息

Department of Genetics, Stanford University School of Medicine, Stanford, California 94304, United States.

出版信息

Environ Sci Technol. 2021 Mar 2;55(5):2790-2799. doi: 10.1021/acs.est.0c07033. Epub 2021 Jan 8.

Abstract

Current studies on environmental chemistry mainly focus on a single stressor or single group of stressors, which does not reflect the multiple stressors in the dynamic exposome we are facing. Similarly, current studies on environmental toxicology mostly target humans, animals, or the environment separately, which are inadequate to solve the grand challenge of multiple receptors in One Health. Though chemical, biological, and physical stressors all pose health threats, the susceptibilities of different organisms are different. As such, significant relationships and interactions of the chemical, biological, and physical stressors in the environment and their holistic environmental and biological consequences remain unclear. Fortunately, the rapid developments in various techniques, as well as the concepts of multistressors in the exposome and multireceptor in One Health provide the possibilities to understand our environment better. Since the combined stressor is location-specific and mixture toxicity is species-specific, more comprehensive frameworks to guide risk assessment and environmental treatment are urgently needed. Here, three conceptual frameworks to categorize unknown stressors, spatially visualize the riskiest stressors, and investigate the combined effects of multiple stressors across multiple species within the concepts of the exposome and One Health are proposed for the first time.

摘要

目前的环境化学研究主要集中在单一压力源或单一压力源组上,这不能反映我们所面临的动态暴露组中的多种压力源。同样,目前的环境毒理学研究大多针对人类、动物或环境分别进行,不足以解决 One Health 中多种受体的巨大挑战。尽管化学、生物和物理压力源都对健康构成威胁,但不同生物体的易感性不同。因此,环境中化学、生物和物理压力源的显著关系和相互作用及其整体环境和生物后果仍不清楚。幸运的是,各种技术的快速发展,以及暴露组中的多压力源和 One Health 中的多受体概念,为更好地了解我们的环境提供了可能性。由于组合压力源具有特定的地理位置,且混合物毒性具有特定的物种特异性,因此更全面的框架来指导风险评估和环境处理是迫切需要的。在这里,首次提出了三个概念框架,用于对未知压力源进行分类,对风险最大的压力源进行空间可视化,并在暴露组和 One Health 的概念内调查多个物种中多种压力源的联合效应。

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