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Detection of Horizontal Gene Transfer Mediated by Natural Conjugative Plasmids in E. coli
Published on: March 24, 2023
Plasmid-mediated quinolone resistance: Mechanisms, detection, and epidemiology in the Arab countries
Iman Yassine1, Rayane Rafei1, Marwan Osman1
1Laboratoire Microbiologie Santé et Environnement (LMSE), Doctoral School of Sciences and Technology, Faculty of Public Health, Lebanese University, Tripoli, Lebanon.
Abstract:
Quinolones are an important antimicrobial class used widely in the treatment of enterobacterial infections. Although there are multiple mechanisms of quinolone resistance, attention should be paid to plasmid-mediated genes due to their ability to facilitate the spread of quinolone resistance, the selection of mutants with a higher-level of quinolone resistance, and the promotion of treatment failure. Since their discovery in 1998, plasmid-mediated quinolone resistance (PMQR) mechanisms have been reported more frequently worldwide especially with the extensive use of quinolones in humans and animals. Nevertheless, data from the Arab countries are rare and often scattered. Understanding the prevalence and distribution of PMQR is essential to stop the irrational use of quinolone in these countries. This manuscript describes the quinolone resistance mechanisms and particularly PMQR among Enterobacteriaceae as well as their methods of detection. Then the available data on the epidemiology of PMQR in clinical and environmental isolates from the Arab countries are extensively reviewed along with the other associated resistance genes. These data shows a wide dissemination of PMQR genes among Enterobacteriaceae isolates from humans, animals, and environments in these countries with increasing rates over the years and a common association with other antibiotic resistance genes as blaCTX-M-15. The incontrovertible emergence of PMQR in the Arab countries highlights the pressing need for effective stewardship efforts to prevent the selection of a higher rate of quinolone resistance and to preserve these crucial antibiotics.
Insights
Plasmid-mediated quinolone resistance (PMQR) is spreading rapidly in Enterobacteriaceae across Arab countries in humans, animals, and environments. Urgent antimicrobial stewardship is needed to preserve quinolone effectiveness.
Area of Science:
- Microbiology
- Infectious Diseases
- Antimicrobial Resistance
Background:
- Quinolones are crucial antimicrobials for treating enterobacterial infections.
- Plasmid-mediated quinolone resistance (PMQR) genes facilitate resistance spread and treatment failure.
- PMQR mechanisms, discovered in 1998, are increasingly reported globally.
Purpose of the Study:
- To review quinolone resistance mechanisms, focusing on PMQR in Enterobacteriaceae.
- To analyze the epidemiology and distribution of PMQR in Arab countries.
- To highlight the need for antimicrobial stewardship to combat rising quinolone resistance.
Main Methods:
- Literature review of PMQR mechanisms and detection methods.
- Epidemiological review of PMQR in clinical and environmental Enterobacteriaceae isolates from Arab countries.
- Analysis of co-occurrence with other resistance genes.
Main Results:
- PMQR genes are widely disseminated in Enterobacteriaceae from humans, animals, and environments in Arab countries.
- Increasing rates of PMQR have been observed over the years.
- PMQR frequently co-occurs with other antibiotic resistance genes, such as blaCTX-M-15.
Conclusions:
- The emergence of PMQR in Arab countries is a significant public health concern.
- Effective antimicrobial stewardship is essential to curb quinolone resistance.
- Preserving the efficacy of quinolones requires immediate intervention.
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