Risk factors for gentamicin-resistant E. coli in children with community-acquired urinary tract infection

Elsa Roldan-Masedo1, Talia Sainz2,3, Almudena Gutierrez-Arroyo4

  • 1Pediatric Department, Autonoma University, Madrid, Spain.

Insights

Children with chronic conditions or on antibiotic prophylaxis face higher risks of gentamicin-resistant E. coli community-acquired urinary tract infections (CA-UTI). These resistant strains are linked to longer hospital stays and broader antibiotic resistance.

Area of Science:

  • Pediatric Infectious Diseases
  • Antimicrobial Resistance
  • Clinical Microbiology

Background:

  • Gentamicin is a recommended empirical treatment for pediatric community-acquired urinary tract infections (CA-UTI).
  • Rising rates of gentamicin resistance in E. coli necessitate investigation into associated risk factors and clinical outcomes.

Purpose of the Study:

  • To identify risk factors for CA-UTI caused by gentamicin-resistant Escherichia coli in children.
  • To describe the clinical outcomes of pediatric patients with gentamicin-resistant E. coli CA-UTI.

Main Methods:

  • Retrospective case-control study conducted from January 2014 to December 2016 in a tertiary care hospital.
  • Cases: Children (<14 years) with febrile CA-UTI caused by gentamicin-resistant E. coli.
  • Controls: Children (<14 years) with febrile CA-UTI caused by gentamicin-susceptible E. coli.

Main Results:

  • Chronic conditions (OR 3.27) and antibiotic prophylaxis (OR 3.5) were significant risk factors for gentamicin-resistant E. coli CA-UTI.
  • Cases experienced longer hospital stays (5.8 days vs. 4.4 days) compared to controls.
  • Gentamicin-resistant strains showed higher co-resistance to cefuroxime, cefotaxime, quinolones, and produced more ESBLs and carbapenemases.

Conclusions:

  • Chronic conditions and antibiotic prophylaxis are potential risk factors for gentamicin-resistant E. coli CA-UTI in children.
  • Gentamicin-resistant E. coli strains frequently exhibit co-resistance to other antibiotic classes and produce ESBLs/carbapenemases.
  • All identified gentamicin-resistant strains remained sensitive to amikacin.

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