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Multidrug-resistant uropathogens in pediatric urinary tract infections: a multicenter retrospective trend analysis
Esra Erdoğan1, Azize Yetişgen2, Serpil Doğan3
1Department of Pharmaceutical Basic Sciences, Faculty of Pharmacy, Harran University, Şanlıurfa, Türkiye. esraerdogan@harran.edu.tr.
Insights
Public health crises like pandemics and earthquakes significantly impact pediatric urinary tract infection (UTI) pathogens and antimicrobial resistance (AMR). This study tracked changes in uropathogens and AMR trends in Turkish children during these disruptive periods.
Area of Science:
- Infectious Diseases
- Microbiology
- Public Health
Background:
- Large-scale public health disruptions, such as pandemics and natural disasters, can significantly alter healthcare delivery, pathogen distribution, and the prevalence of antimicrobial resistance (AMR).
- Understanding these impacts is crucial for adapting treatment strategies and public health responses.
Purpose of the Study:
- To evaluate uropathogen profiles and temporal trends in antibacterial resistance among hospitalized pediatric patients with urinary tract infections (UTIs).
- To compare these trends across distinct periods: the COVID-19 pandemic, the 2023 Kahramanmaraş earthquakes, and the post-earthquake phase in Türkiye.
Main Methods:
- A retrospective multicenter study included 1131 hospitalized pediatric patients (0-18 years) with culture-confirmed UTIs from January 2020 to December 2024.
- Standard microbiological methods were used for pathogen identification and antibacterial susceptibility testing (AST) according to EUCAST criteria.
- Uropathogen distribution and resistance patterns were analyzed across the predefined study periods.
Main Results:
- Gram-negative bacteria predominated (89.57%), with Escherichia coli and Klebsiella spp. as the most common pathogens.
- Significant increases in E. coli resistance were observed for ampicillin, ceftriaxone, ceftazidime, and trimethoprim-sulfamethoxazole across study periods (p < 0.01).
- Klebsiella spp. showed a significant temporal increase in imipenem resistance during the earthquake period (p=0.021). Multidrug-resistant (MDR) phenotypes were highest in Serratia spp., Citrobacter spp., Enterobacter spp., and Pseudomonas spp.
Conclusions:
- Temporal variations in pediatric UTI pathogen resistance patterns were evident during major public health disruptions.
- Findings underscore the need for sustained regional surveillance of AMR.
- Context-aware empiric treatment strategies are essential in settings facing systemic healthcare stressors.
Abstract:
Large-scale public health disruptions, including pandemics and natural disasters, may influence healthcare delivery, pathogen distribution, and antimicrobial resistance (AMR). This retrospective multicenter study evaluated uropathogen profiles and temporal trends in antibacterial resistance among hospitalized pediatric patients with urinary tract infections (UTIs) across periods corresponding to the COVID-19 pandemic, the February 6, 2023 Kahramanmaraş earthquakes, and the post-earthquake phase in heavily affected regions of Türkiye. Hospitalized pediatric patients (0-18 years) with culture-confirmed UTIs admitted between January 2020 and December 2024 to three tertiary care hospitals were included. Pathogen identification and antibacterial susceptibility testing were performed using standard microbiological methods in accordance with EUCAST criteria. Uropathogen distribution and resistance patterns were compared across predefined study periods. A total of 1131 pediatric patients were analyzed, of whom 54.29% were female. Gram-negative bacteria predominated (89.57%), with Escherichia coli (59.86%) and Klebsiella spp. (18.92%) being the most frequently isolated pathogens. Across the study periods, E. coli demonstrated significant increases in resistance to ampicillin (63.26% to 81.90%), ceftriaxone (41.99% to 53.76%), ceftazidime (39.46% to 63.10%), and trimethoprim-sulfamethoxazole (32.27% to 40.34%) (all p < 0.01). Among Klebsiella spp., a significant temporal increase was observed only for imipenem resistance, which rose from 18.64% during the COVID-19 period to 37.50% during the earthquake period before declining to 13.21% in the post-earthquake period (p = 0.021). Multidrug-resistant (MDR) phenotypes were predominantly detected among Gram-negative organisms, with the highest proportions observed in Serratia spp., Citrobacter spp., Enterobacter spp., and Pseudomonas spp., while MDR prevalence in E. coli was comparatively lower. Temporal variations in antibacterial resistance were observed among pediatric UTI pathogens during periods of major public health disruption. These findings highlight the importance of sustained regional surveillance and context-aware empiric treatment strategies in settings exposed to systemic healthcare stressors.
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