Towards monitoring of antimicrobial resistance in the environment: For what reasons, how to implement it, and what are the data needs?

抗生素耐药性 风险分析(工程) 环境监测 抗性(生态学) 业务 一个健康 人类健康 环境规划 环境资源管理 计算机科学 知识管理 数据科学 环境卫生 公共卫生 医学 生物 环境科学 生态学 护理部 微生物学 抗生素
作者
Johan Bengtsson‐Palme,Anna Abramova,Thomas U. Berendonk,Luís Pedro Coelho,Sofia K. Forslund,Rémi Gschwind,Annamari Heikinheimo,Víctor Hugo Jarquín‐Díaz,Ayaz Khan,Uli Klümper,Ulrike Löber,Marmar Nekoro,Adriana Osińska,Svetlana Ugarčina Perović,Tarja Pitkänen,Ernst Kristian Rødland,Étienne Ruppé,Yngvild Wasteson,Astrid Louise Wester,Rabaab Zahra
出处
期刊:Environment International [Elsevier]
卷期号:178: 108089-108089 被引量:37
标识
DOI:10.1016/j.envint.2023.108089
摘要

Antimicrobial resistance (AMR) is a global threat to human and animal health and well-being. To understand AMR dynamics, it is important to monitor resistant bacteria and resistance genes in all relevant settings. However, while monitoring of AMR has been implemented in clinical and veterinary settings, comprehensive monitoring of AMR in the environment is almost completely lacking. Yet, the environmental dimension of AMR is critical for understanding the dissemination routes and selection of resistant microorganisms, as well as the human health risks related to environmental AMR. Here, we outline important knowledge gaps that impede implementation of environmental AMR monitoring. These include lack of knowledge of the 'normal' background levels of environmental AMR, definition of high-risk environments for transmission, and a poor understanding of the concentrations of antibiotics and other chemical agents that promote resistance selection. Furthermore, there is a lack of methods to detect resistance genes that are not already circulating among pathogens. We conclude that these knowledge gaps need to be addressed before routine monitoring for AMR in the environment can be implemented on a large scale. Yet, AMR monitoring data bridging different sectors is needed in order to fill these knowledge gaps, which means that some level of national, regional and global AMR surveillance in the environment must happen even without all scientific questions answered. With the possibilities opened up by rapidly advancing technologies, it is time to fill these knowledge gaps. Doing so will allow for specific actions against environmental AMR development and spread to pathogens and thereby safeguard the health and wellbeing of humans and animals.
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