High Prevalence of ESBL Genes in Commensal Escherichia coli of the Urinary Tract: Implications for Antibiotic Stewardship among Residents of Ghanaian Elderly Nursing Care Homes.
Emmanuel ArmahLawrencia Osae-NyarkoBright IdunMawutor Kwame AhiabuIsaac AgyapongFreda Boampong KwartengMercy OppongNaael MohammedFleischer C N KoteyMike Yaw Osei-AtweneboanaNicholas T K D DayiePublished in: Genes (2024)
The emergence and spread of extended-spectrum β-lactamase (ESBL)-producing Escherichia coli ( E. coli ) pose significant challenges to the treatment and control of urinary tract infections, particularly among vulnerable populations, such as the elderly living in nursing care homes. In this study, we investigated the occurrence of ESBL genes in commensal E. coli isolated from urine samples of 118 elderly individuals residing in Ghanaian nursing care homes. A total of 195 ESBL genes were detected among 41 E. coli isolated from the study participants. All the isolates harboured at least one ESBL gene, and the majority of them (70.1%) carried at least four ESBL genes. Among the ESBL genes detected, CTXM825 was the predominant (14.1%). In antimicrobial susceptibility testing, 65.9% of the isolates showed resistance to cefepime, a fourth-generation cephalosporin, while 56.1% showed resistance to cefotaxime, a third-generation cephalosporin. Additionally, 46.3% of the isolates were multidrug-resistant, indicating resistance to antibiotics from multiple classes. In summary, we observed relatively high rates of resistance to antibiotics as well as alarming rates of ESBL genes in the isolated pathogens. These findings emphasise the urgent need for antimicrobial stewardship and infection control programmes to mitigate the spread of multidrug-resistant pathogens in nursing care homes.
Keyphrases
- escherichia coli
- klebsiella pneumoniae
- multidrug resistant
- genome wide
- gram negative
- genome wide identification
- bioinformatics analysis
- biofilm formation
- drug resistant
- genome wide analysis
- urinary tract infection
- dna methylation
- acinetobacter baumannii
- urinary tract
- gene expression
- copy number
- long term care
- staphylococcus aureus