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Published on: December 4, 2020
[Profile of bacterial resistance in pediatric urinary tract infections in 2014]
A Flammang1, R Morello2, M Vergnaud3
1Service de pédiatrie médicale, CHU de Caen, avenue Côte-de-Nacre, 14033 Caen, France.
Insights
This study on pediatric urinary tract infections (UTIs) found high resistance to common antibiotics like ampicillin. Extended-spectrum beta-lactamase (ESBL) producing bacteria were identified, highlighting the need for ongoing monitoring and updated treatment protocols for UTIs.
Area of Science:
- Pediatric Infectious Diseases
- Microbiology
- Clinical Pharmacy
Background:
- Increasing prevalence of extended-spectrum beta-lactamase (ESBL) producing bacteria in pediatric urinary tract infections (UTIs).
- Need to evaluate current antibiotic treatment protocols for pediatric UTIs based on local resistance patterns.
Purpose of the Study:
- To determine the epidemiology of bacterial resistance patterns in pediatric UTIs.
- To assess the effectiveness of current antibiotic treatment strategies for UTIs in children.
Main Methods:
- Retrospective chart review of cytobacteriological urine cultures from pediatric UTIs.
- Analysis of data from 219 cases between January 1 and December 31, 2014, at Caen University Hospital.
- Identification of bacterial species and their antibiotic susceptibility patterns, including ESBL production.
Main Results:
- Escherichia coli was the most common pathogen (80.3%).
- Significant resistance observed: 50% of E. coli resistant to ampicillin, 27.8% to trimethoprim-sulfamethoxazole.
- 4.6% of UTIs were caused by ESBL-producing bacteria (E. coli and Enterobacter cloacae).
- Cefixime and ceftriaxone resistance were linked to ongoing antibiotic treatment and underlying uropathy.
Conclusions:
- Intravenous ceftriaxone is recommended for probabilistic ambulatory treatment of pediatric UTIs.
- Cefotaxime may be a suitable alternative to ceftriaxone for hospitalized patients due to lower ecological impact.
- Continuous monitoring of bacterial resistance and regular review of treatment protocols are essential.
Abstract:
In pediatric units, bacteria-producing extended-spectrum-betalactamase (ESBL) have an increasing prevalence among bacteria causing febrile urinary tract infections (UTIs). The purpose of this study was to evaluate the epidemiology of bacteria resistance patterns observed in UTIs, in order to assess the current antibiotic treatment protocols. This study is based upon a single-center retrospective chart review of the cytobacteriological urine cultures performed in UTIs between 1 January and 31 December 2014, in the medical pediatric unit of the Caen University Hospital. Out of the total of 219 cases of UTI, 26.9% were recurrences of UTI, 18.3% were infections in infants less than 3 months old, 21% of the patients suffered from underlying uropathy, and 16.4% of the patients had recently been exposed to antibiotics. In 80.3% of the cases, Escherichia coli was found, while Enterococcus faecalis was found in 5.6%. The antibiograms proved that 33.5% of the bacteria were sensitive. Half of E. coli were resistant to ampicillin, 4.9% to cefixime, 4.9% to ceftriaxone, 1.1% to gentamicin, and 27.8% to trimethoprim-sulfamethoxazole. Nine E. coli and one Enterobacter cloacae produced ESBL, accounting for 4.6% of the UTIs. We did not find any bacteria-producing high-level cephalosporinase. Cefixime resistance was statistically linked to ongoing antibiotic treatment (OR=5.98; 95% CI [1.44; 24.91], P=0.014) and underlying uropathy (OR=6.24; 95% CI [1.47; 26.42], P=0.013). Ceftriaxone resistance was statistically related to ongoing antibiotic treatment (OR=6.93; 95% CI [1.45; 33.13], P=0.015). These results argue in favor of maintaining intravenous ceftriaxone for probabilistic ambulatory treatment. However, in case of hospitalization, cefotaxime can replace ceftriaxone, due to its lower ecological impact. Moreover, it is necessary to continue monitoring bacterial resistance and regularly review our treatment protocols.
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