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Author Spotlight: Understanding and Detecting Environmental Antimicrobial Resistance by Combining Culture-Based Techniques and Genomics
Published on: July 19, 2024
Antimicrobial Resistance: A Growing Serious Threat for Global Public Health
Md Abdus Salam1, Md Yusuf Al-Amin2,3, Moushumi Tabassoom Salam4
1Department of Basic Medical Sciences, Kulliyyah of Medicine, International Islamic University Malaysia, Kuantan 25200, Malaysia.
Abstract:
Antibiotics are among the most important discoveries of the 20th century, having saved millions of lives from infectious diseases. Microbes have developed acquired antimicrobial resistance (AMR) to many drugs due to high selection pressure from increasing use and misuse of antibiotics over the years. The transmission and acquisition of AMR occur primarily via a human-human interface both within and outside of healthcare facilities. A huge number of interdependent factors related to healthcare and agriculture govern the development of AMR through various drug-resistance mechanisms. The emergence and spread of AMR from the unrestricted use of antimicrobials in livestock feed has been a major contributing factor. The prevalence of antimicrobial-resistant bacteria has attained an incongruous level worldwide and threatens global public health as a silent pandemic, necessitating urgent intervention. Therapeutic options of infections caused by antimicrobial-resistant bacteria are limited, resulting in significant morbidity and mortality with high financial impact. The paucity in discovery and supply of new novel antimicrobials to treat life-threatening infections by resistant pathogens stands in sharp contrast to demand. Immediate interventions to contain AMR include surveillance and monitoring, minimizing over-the-counter antibiotics and antibiotics in food animals, access to quality and affordable medicines, vaccines and diagnostics, and enforcement of legislation. An orchestrated collaborative action within and between multiple national and international organizations is required urgently, otherwise, a postantibiotic era can be a more real possibility than an apocalyptic fantasy for the 21st century. This narrative review highlights on this basis, mechanisms and factors in microbial resistance, and key strategies to combat antimicrobial resistance.
Insights
Antimicrobial resistance (AMR) is a growing global threat fueled by antibiotic misuse in humans and agriculture. Urgent interventions are needed to prevent a post-antibiotic era.
Area of Science:
- Microbiology
- Infectious Diseases
- Public Health
Background:
- Antibiotics revolutionized medicine, but widespread use and misuse have driven acquired antimicrobial resistance (AMR) in microbes.
- AMR transmission occurs via human contact in healthcare and community settings, influenced by factors in healthcare and agriculture.
- The rise of antimicrobial-resistant bacteria is a global public health crisis, limiting treatment options and increasing mortality.
Purpose of the Study:
- To review the mechanisms and factors contributing to microbial resistance.
- To highlight key strategies for combating the spread of antimicrobial resistance.
- To emphasize the urgent need for global intervention against AMR.
Main Methods:
- This narrative review synthesizes existing literature on antimicrobial resistance.
- It examines the drivers of AMR, including healthcare and agricultural practices.
- The review discusses current and proposed interventions to mitigate AMR.
Main Results:
- Microbial resistance mechanisms are diverse and driven by selection pressure from antibiotic use.
- Factors in healthcare and agriculture significantly contribute to AMR emergence and spread.
- Limited new antimicrobial drug discovery contrasts with the increasing demand for effective treatments.
Conclusions:
- Antimicrobial resistance is a silent pandemic requiring immediate, coordinated global action.
- Interventions must include surveillance, reduced antibiotic use in humans and animals, and improved access to diagnostics and vaccines.
- Failure to act may lead to a post-antibiotic era, rendering common infections untreatable.
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