A multidisciplinary approach to analyze the antimicrobial resistance in natural ecosystems

野生动物 抗生素耐药性 一个健康 微生物群 生物多样性 抗菌剂 环境资源管理 抵抗性 环境规划 抗性(生态学) 基因组 环境卫生 生物 生态学 地理 公共卫生 医学 环境科学 抗生素 生物信息学 微生物学 遗传学 护理部 整合子 基因
作者
Kinndle Blanco‐Peña,Francisco Quesada-Alvarado,Denis Salas-González,Sandra Estrada-König,Roberto Salom‐Pérez,Stephanny Arroyo-Arce,Adriana Villalobos-Araya,Josué Rivera-Castillo,Bárbara Martín‐Maldonado,Daniel Corrales‐Gutiérrez,Valeria Gallardo-Castro,Gustavo Luís Gutierrez,Andrea Chaves,Fernando Esperón,Fabio Chaverri-Fonseca
出处
期刊:Environmental Research [Elsevier BV]
卷期号:: 118549-118549
标识
DOI:10.1016/j.envres.2024.118549
摘要

Antimicrobial Resistance (AMR) poses a global threat to both human health and environmental well-being. Our study delved into Costa Rican wildlife reserves, uncovering a substantial human impact on these ecosystems and underscoring the imperative to pinpoint AMR hotspots. Embracing a One Health perspective, we advocated for a comprehensive landscape analysis that intricately intertwined geographic, climatic, forest, and human factors. This study illuminated the link between laboratory results and observed patterns of antimicrobial use, thereby paving the way for sustainable solutions. Our innovative methodology involved deploying open-ended questions to explore antimicrobial usage across livestock activities, contributing to establishing a comprehensive methodology. Non-invasive sampling in wildlife emerged as a critical aspect, shedding light on areas contaminated by AMR. Feline species, positioned at the apex of the food chain, acted as sentinels for environmental health due to heightened exposure to improperly disposed waste. Regarding laboratory findings, each sample revealed the presence of at least one antimicrobial resistance gene (ARG). Notably, genes encoding resistance to tetracyclines dominated (94.9%), followed by beta-lactams (75.6%), sulfonamides (53.8%), aminoglycosides (51.3%), quinolones (44.9%), phenicols (25.6%), and macrolides (20.5%). Genes encoding polymyxins were not detected. Moreover, 66% of samples carried a multi-resistant microbiome, with 15% exhibiting resistance to three antimicrobial families and 51% to four. The absence of a correlation between forest coverage and ARG presence underscored the profound human impact on wildlife reserves, surpassing previous estimations. This environmental pressure could potentially modify microbiomes and resistomes in unknown ways. As not all antimicrobial families encoding ARGs were utilized by farmers, our next step involved evaluating other human activities to identify the primary sources of contamination. This comprehensive study contributed crucial insights into the intricate dynamics of AMR in natural ecosystems, paving the way for targeted interventions and sustainable coexistence.

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