Climate warming, environmental degradation and pollution as drivers of antibiotic resistance

抗生素耐药性 背景(考古学) 抗性(生态学) 环境污染 环境科学 环境规划 环境保护 环境卫生 生态学 抗生素 生物 医学 微生物学 古生物学
作者
Piotr Rzymski,Willis Gwenzi,Barbara Poniedziałek,Serghei Mangul,Andrzej Fal
出处
期刊:Environmental Pollution [Elsevier BV]
卷期号:346: 123649-123649 被引量:42
标识
DOI:10.1016/j.envpol.2024.123649
摘要

Antibiotic resistance is a major challenge to public health, but human-caused environmental changes have not been widely recognized as its drivers. Here, we provide a comprehensive overview of the relationships between environmental degradation and antibiotic resistance, demonstrating that the former can potentially fuel the latter with significant public health outcomes. We describe that (i) global warming favors horizontal gene transfer, bacterial infections, the spread of drug-resistant pathogens due to water scarcity, and the release of resistance genes with wastewater; (ii) pesticide and metal pollution act as co-selectors of antibiotic resistance mechanisms; (iii) microplastics create conditions promoting and spreading antibiotic resistance and resistant bacteria; (iv) changes in land use, deforestation, and environmental pollution reduce microbial diversity, a natural barrier to antibiotic resistance spread. We argue that management of antibiotic resistance must integrate environmental goals, including mitigation of further increases in the Earth's surface temperature, better qualitative and quantitative protection of water resources, strengthening of sewage infrastructure and improving wastewater treatment, counteracting the microbial diversity loss, reduction of pesticide and metal emissions, and plastic use, and improving waste recycling. These actions should be accompanied by restricting antibiotic use only to clinically justified situations, developing novel treatments, and promoting prophylaxis. It is pivotal for health authorities and the medical community to adopt the protection of environmental quality as a part of public health measures, also in the context of antibiotic resistance management.

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