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Author Spotlight: Understanding and Detecting Environmental Antimicrobial Resistance by Combining Culture-Based Techniques and Genomics
Published on: July 19, 2024
What Are the Drivers Triggering Antimicrobial Resistance Emergence and Spread? Outlook from a One Health Perspective
Zehong Ye1, Menghan Li2, Yiwen Jing1
1School of Public Health, Shandong Second Medical University, Weifang 261053, China.
Abstract:
Antimicrobial resistance (AMR) has emerged as a critical global public health threat, exacerbating healthcare burdens and imposing substantial economic costs. Currently, AMR contributes to nearly five million deaths annually worldwide, surpassing mortality rates of any single infectious disease. The economic burden associated with AMR-related disease management is estimated at approximately $730 billion per year. This review synthesizes current research on the mechanisms and multifaceted drivers of AMR development and dissemination through the lens of the One Health framework, which integrates human, animal, and environmental health perspectives. Intrinsic factors, including antimicrobial resistance genes (ARGs) and mobile genetic elements (MGEs), enable bacteria to evolve adaptive resistance mechanisms such as enzymatic inactivation, efflux pumps, and biofilm formation. Extrinsic drivers span environmental stressors (e.g., antimicrobials, heavy metals, disinfectants), socioeconomic practices, healthcare policies, and climate change, collectively accelerating AMR proliferation. Horizontal gene transfer and ecological pressures further facilitate the spread of antimicrobial-resistant bacteria across ecosystems. The cascading impacts of AMR threaten human health and agricultural productivity, elevate foodborne infection risks, and impose substantial economic burdens, particularly in low- and middle-income countries. To address this complex issue, the review advocates for interdisciplinary collaboration, robust policy implementation (e.g., antimicrobial stewardship), and innovative technologies (e.g., genomic surveillance, predictive modeling) under the One Health paradigm. Such integrated strategies are essential to mitigate AMR transmission, safeguard global health, and ensure sustainable development.
Insights
Antimicrobial resistance (AMR) is a major global health crisis, causing millions of deaths and billions in economic losses annually. Addressing AMR requires an integrated One Health approach, combining human, animal, and environmental strategies.
Area of Science:
- Public Health
- Microbiology
- Environmental Science
Background:
- Antimicrobial resistance (AMR) is a critical global threat, causing nearly 5 million deaths and costing $730 billion annually.
- AMR exacerbates healthcare burdens and impacts agricultural productivity, posing significant economic challenges, especially in low- and middle-income countries.
Purpose of the Study:
- To review the mechanisms and drivers of antimicrobial resistance (AMR) development and spread.
- To analyze AMR through the integrated One Health framework, considering human, animal, and environmental health.
Main Methods:
- Synthesis of current research on AMR mechanisms and drivers.
- Analysis of intrinsic factors (resistance genes, mobile elements) and extrinsic drivers (environmental, socioeconomic, policy, climate).
- Examination of AMR spread via horizontal gene transfer and ecological pressures.
Main Results:
- Intrinsic factors like antimicrobial resistance genes (ARGs) and mobile genetic elements (MGEs) facilitate bacterial resistance mechanisms.
- Extrinsic drivers including environmental stressors, socioeconomic practices, and climate change accelerate AMR proliferation.
- AMR impacts human health, agriculture, food safety, and economies globally.
Conclusions:
- Integrated strategies under the One Health paradigm are essential to mitigate AMR transmission.
- Interdisciplinary collaboration, robust policy implementation (e.g., antimicrobial stewardship), and innovative technologies are crucial.
- Addressing AMR is vital for safeguarding global health and ensuring sustainable development.
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