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The Gut Microbiome and Colistin Resistance: A Hidden Driver of Antimicrobial Failure
Ionela-Larisa Miftode1,2, Andrei Vâţă1,2, Radu-Ştefan Miftode3,4
1Department of Internal Medicine II (Infectious Diseases), Faculty of Medicine, University of Medicine and Pharmacy "Grigore T. Popa", 700115 Iasi, Romania.
Abstract:
Colistin, a polymyxin antibiotic reintroduced as a last-resort therapy against multidrug-resistant Gram-negative bacteria, is increasingly being compromised by the emergence of plasmid-mediated colistin resistance genes (mcr-1 to mcr-10). The human gut microbiota serves as a major reservoir and transmission hub for these resistance determinants, even among individuals without prior colistin exposure. This review explores the mechanisms, dissemination, and clinical implications of mcr-mediated colistin resistance within the gut microbiota, highlighting its role in horizontal gene transfer, colonization, and environmental persistence. A comprehensive synthesis of the recent literature was conducted, focusing on epidemiological studies, molecular mechanisms, neonatal implications and decolonization strategies. The intestinal tract supports the enrichment and exchange of mcr genes among commensal and pathogenic bacteria, especially under antibiotic pressure. Colistin use in agriculture has amplified gut colonization with resistant strains in both animals and humans. Surveillance gaps remain, particularly in neonatal populations, where colonization may occur early and persist silently. Promising interventions, such as fecal microbiota transplantation and phage therapies, are under investigation but lack large-scale clinical validation. The gut microbiome plays a central role in the global spread of colistin resistance. Mitigating this threat requires integrated One Health responses, improved diagnostics for gut colonization, and investment in microbiome-based therapies. A proactive, multisectoral approach is essential to safeguard colistin efficacy and address the expanding threat of mcr-mediated resistance.
Insights
The human gut microbiota is a key reservoir for plasmid-mediated colistin resistance genes (mcr), threatening last-resort antibiotic therapy. Addressing this requires integrated strategies to combat the spread of mcr genes.
Area of Science:
- Microbiology
- Genetics
- Public Health
Background:
- Colistin is a critical last-resort antibiotic for multidrug-resistant Gram-negative infections.
- Emergence of plasmid-mediated colistin resistance genes (mcr-1 to mcr-10) compromises its efficacy.
- The human gut microbiota acts as a significant reservoir and transmission hub for these resistance genes.
Purpose of the Study:
- To review the mechanisms, dissemination, and clinical implications of mcr-mediated colistin resistance in the gut microbiota.
- To synthesize recent literature on epidemiological studies, molecular mechanisms, neonatal implications, and decolonization strategies.
- To highlight the gut microbiome's role in the global spread of colistin resistance.
Main Methods:
- Comprehensive literature synthesis focusing on epidemiological and molecular studies.
- Analysis of recent research on neonatal populations and decolonization strategies.
- Review of the role of gut microbiota in horizontal gene transfer and environmental persistence.
Main Results:
- The intestinal tract facilitates the enrichment and exchange of mcr genes among bacteria, especially under antibiotic pressure.
- Agricultural use of colistin has increased gut colonization with resistant strains in humans and animals.
- Surveillance gaps exist, particularly in neonates, where early and silent colonization can occur.
Conclusions:
- The gut microbiome is central to the global spread of colistin resistance.
- Integrated One Health responses, improved diagnostics, and microbiome-based therapies are crucial.
- A proactive, multisectoral approach is essential to preserve colistin efficacy against mcr-mediated resistance.
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