Renal scars in children with febrile urinary tract infection - Looking for associated factors

Tanja Hübertz Horsager1, Søren Hagstrøm2, Regitze Skals3

  • 1Department of Paediatrics and Adolescence Medicine, Lillebaelt Hospital Kolding, Kolding, Denmark.

Insights

Febrile urinary tract infections in children can lead to kidney damage. High C-reactive protein and neutrophil counts during infection may indicate risk for renal scarring or decreased function.

Area of Science:

  • Pediatric Nephrology
  • Infectious Diseases
  • Diagnostic Imaging

Background:

  • Febrile urinary tract infection (UTI) is a common pediatric illness with potential for long-term kidney complications.
  • Identifying early indicators of renal scarring and decreased function is crucial for at-risk children.
  • Early detection can guide interventions to prevent chronic kidney disease.

Purpose of the Study:

  • To identify factors associated with decreased split renal function (DSRF) and renal scarring after febrile UTI in children.
  • To correlate acute-phase clinical, laboratory, and radiologic findings with long-term kidney outcomes.
  • To aid in identifying children susceptible to complications from febrile UTI.

Main Methods:

  • Retrospective review of medical records for 212 children (0-15 years) with febrile UTI.
  • Analysis of clinical, laboratory (CRP, ANC, urine dipstick), and radiologic findings.
  • Nuclear imaging at 6-month follow-up to assess DSRF and renal scarring.

Main Results:

  • 26.5% of patients showed abnormal follow-up imaging (DSRF <45% and/or scarring).
  • Higher C-reactive protein (CRP) and absolute neutrophil count (ANC) were linked to abnormal imaging.
  • Positive nitrite dipstick and fever >38.5°C with CRP >50 mg/L indicated higher risk.

Conclusions:

  • Elevated CRP and ANC may be associated with DSRF and renal scarring post-febrile UTI.
  • Fever >38.5°C combined with high CRP suggests increased risk.
  • Further research is needed to confirm these factors as definitive predictors due to study limitations.
Abstract

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