Zhang Yu, Walsh Timothy R, Wang Yang, Shen Jianzhong, Yang Min
State Key Laboratory of Environmental Aquatic Chemistry, Research Center for Eco-Environmental Sciences, Chinese Academy of Sciences, Beijing, China.
University of Chinese Academy of Sciences, Beijing, China.
China CDC Wkly. 2022 Dec 9;4(49):1105-1109. doi: 10.46234/ccdcw2022.224.
Antimicrobial resistance (AMR) is a globally recognized crisis with meaningful engagement across humans, animals, and the environment as in the One Health approach. The environment is the potential source, reservoir, and transmission route of AMR, and it plays a key role in AMR development from the One Health perspective. Animal farming, hospitals, and the pharmaceutical industry are identified as the main emission sources in the environment. Minimizing emissions and determining antimicrobial emission limits are priorities in the containment of environmental AMR development. From the perspectives of environmental management and environmental engineering, some important actions to minimize risks of AMR development are summarized, including the recent progress in enhanced hydrolysis pre-treatment technology to control the development of antibiotic resistance genes (ARGs) during biological wastewater treatment. It is desirable to establish a holistic framework to coordinate international actions on the containment of environmental AMR development. To establish a community with a shared future for humanity, China should and could play an important role in international cooperation to cope with AMR challenges.
抗菌药物耐药性(AMR)是一个全球公认的危机,需要像“同一个健康”方法那样在人类、动物和环境之间进行有意义的互动。环境是AMR的潜在来源、储存库和传播途径,从“同一个健康”的角度来看,它在AMR的发展中起着关键作用。畜牧业、医院和制药行业被确定为环境中的主要排放源。减少排放并确定抗菌药物排放限值是遏制环境中AMR发展的优先事项。从环境管理和环境工程的角度,总结了一些降低AMR发展风险的重要行动,包括在强化水解预处理技术方面的最新进展,以控制生物废水处理过程中抗生素抗性基因(ARGs)的发展。建立一个全面的框架来协调遏制环境AMR发展的国际行动是可取的。为了构建人类命运共同体,中国应该而且能够在应对AMR挑战的国际合作中发挥重要作用。