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Retrospective Analysis of Urinary Tract Infection in the Pediatric Population at a Tertiary Care Centre
Naz Perween1, Sumit Rai2, Sumi Nandwani3
1Microbiology, Post Graduate institute of Child Health, Noida, IND.
Insights
Pediatric urinary tract infections (UTIs) are common, with E. coli as the primary cause. Rising antibiotic resistance necessitates susceptibility-guided treatment, though nitrofurantoin and amikacin show promise for empirical therapy.
Area of Science:
- Pediatric Infectious Diseases
- Microbiology
- Clinical Pharmacy
Background:
- Urinary tract infections (UTIs) are highly prevalent in children.
- Gram-negative and gram-positive bacteria cause UTIs, with Escherichia coli being the most frequent pathogen.
Purpose of the Study:
- To analyze the prevalence of UTIs in pediatric patients.
- To identify common bacterial isolates and their antibiotic susceptibility patterns.
- To evaluate potential empirical treatment options for pediatric UTIs.
Main Methods:
- Retrospective analysis of pediatric UTI cases (6 months to 18 years).
- Urine culture and biochemical identification of bacteria.
- Antimicrobial susceptibility testing using Kirby-Bauer or VITEK 2 compact system.
Main Results:
- UTI prevalence was 23.5%, with E. coli (334/614) and Enterococcus spp. (92/614) as most common isolates.
- High resistance observed for gram-negative bacteria against ampicillin, cefotaxime, ceftriaxone, and norfloxacin.
- Multidrug-resistant and ESBL-producing bacteria found in 47% and 44.1% of cases, respectively.
- Nitrofurantoin, amikacin, colistin, and polymyxin B showed excellent activity against gram-negative bacteria.
- Vancomycin, linezolid, teicoplanin, and nitrofurantoin were effective against gram-positive bacteria.
Conclusions:
- Nitrofurantoin and amikacin are recommended for empirical therapy in pediatric UTIs.
- Increasing antibiotic resistance highlights the critical need for antibiotic susceptibility reports to guide treatment decisions.
Background:
Urinary tract infection (UTI) is among the most common infections occurring during childhood. It is caused by both gram-negative and gram-positive bacteria and Escherichia coli is the most common causative agent.
Methods:
Data of all pediatric patients in the age group of 6 months to 18 years with urinary tract infection were taken for analysis. Urine samples were collected and cultured on the cystine lactose electrolyte-deficient medium. The presence of bacteria was identified using biochemicals, and the antimicrobial test was performed using the Kirby-Bauer test or the VITEK 2 compact system (bioMérieux, Inc., France).
Results:
The prevalence of UTI was 23.5%. In total, 614 specimens tested positive with significant bacteriuria. The male-to-female ratio was 1:2.3. Approximately 54% patients presented with urinary symptoms alone. Culture positivity was significantly associated with pyuria (p < 0.0001). E. coli (334/614) was the most common isolate, followed by Enterococcus spp. (92/614). Colistin, polymyxin B, fosfomycin, nitrofurantoin, netilmicin, and amikacin were extremely good acting antimicrobials. Meanwhile, ampicillin, cefotaxime, ceftriaxone, and norfloxacin were highly resistant to gram-negative bacteria. Multidrug-resistant bacteria and extended-spectrum beta-lactamase-producing bacteria were found in 47% and 44.1% of cases, respectively. Vancomycin, linezolid, teicoplanin, and nitrofurantoin were highly effective against gram-positive bacteria. Furthermore, norfloxacin, trimethoprim/sulfamethoxazole, ciprofloxacin, and tetracycline were highly resistant to gram-positive bacteria. Of the 92, 42 Enterococcus spp. were resistant to high-dose gentamicin.
Conclusion:
Nitrofurantoin and amikacin can be used as empirical therapy for gram-negative and gram-positive bacteria. Because resistance to various commonly used antibiotics is found to be increasing, treatment must be guided by antibiotic susceptibility reports.
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