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Multidrug resistance among uropathogenic clonal group A E. Coli isolates from Pakistani women with uncomplicated
Ayesha Khan1,2, Viqar Sayeed Saraf1, Fariha Siddiqui3
1Microbiology and Public Health Laboratory, Department of Biosciences, COMSATS University Islamabad, Islamabad, Pakistan.
Objective:
Multi-drug resistance (MDR) has notably increased in community acquired uropathogens causing urinary tract infections (UTIs), predominantly Escherichia coli. Uropathogenic E. coli causes 80% of uncomplicated community acquired UTIs, particularly in pre-menopausal women. Considering this high prevalence and the potential to spread antimicrobial resistant genes, the current study was conducted to investigate the presence of clinically important strains of E. coli in Pakistani women having uncomplicated cystitis and pyelonephritis. Women belonging to low-income groups were exclusively included in the study. Seventy-four isolates from urine samples were processed, phylotyped, and screened for the presence of two Single Nucleotide Polymorphisms (SNPs) particularly associated with a clinically important clonal group A of E. coli (CgA) followed by antibiotic susceptibility testing and genome sequence analysis.
Results:
Phylogroup B2 was most prevalent in patients and 44% of isolates were positive for the presence of CgA specific SNPs in Fumarate hydratase and DNA gyrase subunit B genes. Antibiotic susceptibility testing showed widespread resistance to trimethoprim-sulfamethoxazole and extended-spectrum beta-lactamase production. The infection analysis revealed the phylogroup B2 to be more pathogenic as compared to the other groups. The genome sequence of E. coli strain U17 revealed genes encoding virulence, multidrug resistance, and host colonization mechanisms.
Conclusions:
Our research findings not only validate the significant occurrence of multidrug-resistant clonal group A E. coli (CgA) in premenopausal Pakistani women suffering from cystitis and pyelonephritis but also reveal the presence of genes associated withvirulence, and drug efflux pumps. The detection of highly pathogenic, antimicrobial-resistant phylogroup B2 and CgA E. coli strains is likely to help in understanding the epidemiology of the pathogen and may ultimately help to reduce the impact of these strains on human health. Furthermore, the findings of this study will particularly help to reduce the prevalence of uncomplicated UTIs and the cost associated with their treatment in women belonging to low-income groups.
Insights
Multidrug-resistant (MDR) Escherichia coli, particularly clonal group A (CgA), is prevalent in Pakistani women with urinary tract infections (UTIs). This study identified virulence and resistance genes, aiding in understanding and managing these infections.
Area of Science:
- Microbiology
- Infectious Diseases
- Genomics
Background:
- Community-acquired urinary tract infections (UTIs) are increasingly caused by multidrug-resistant (MDR) uropathogens, primarily Escherichia coli.
- Uropathogenic E. coli (UPEC) is responsible for 80% of uncomplicated UTIs in pre-menopausal women, posing a significant public health concern due to the potential spread of antimicrobial resistance genes.
Purpose of the Study:
- To investigate the prevalence of clinically significant E. coli strains, specifically multidrug-resistant clonal group A (CgA), in Pakistani women with uncomplicated cystitis and pyelonephritis.
- To characterize these strains through phylotyping, antibiotic susceptibility testing, and whole-genome sequencing to identify virulence and resistance mechanisms.
Main Methods:
- Seventy-four urine isolates from women with UTIs were phylotyped and screened for CgA-specific Single Nucleotide Polymorphisms (SNPs).
- Antibiotic susceptibility testing and whole-genome sequencing were performed on selected isolates, including E. coli strain U17.
Main Results:
- Phylogroup B2 was the most prevalent, with 44% of isolates positive for CgA-specific SNPs.
- Widespread resistance to trimethoprim-sulfamethoxazole and extended-spectrum beta-lactamase (ESBL) production were observed.
- Genome sequencing of E. coli U17 revealed genes associated with virulence, MDR, and host colonization.
Conclusions:
- The study confirms the significant occurrence of MDR CgA E. coli in Pakistani women with UTIs, highlighting phylogroup B2 as more pathogenic.
- The identified virulence and drug efflux pump genes provide insights into pathogen epidemiology and host-pathogen interactions.
- Findings can inform strategies to reduce the incidence and treatment costs of UTIs, particularly in low-income populations.
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