Kidney Measurement and Glomerular Filtration Rate Evolution in Children with Polycystic Kidney Disease

Ramona Stroescu1,2, Mihai Gafencu2,3, Ruxandra Maria Steflea2,3

  • 1Department XI of Pediatrics-1st Pediatric Discipline, Center for Research on Growth and Developmental Disorders in Children, "Victor Babes" University of Medicine and Pharmacy Timisoara, Eftimie Murgu Sq. No. 2, 300041 Timisoara, Romania.

PubMed

Insights

Autosomal dominant polycystic kidney disease (ADPKD) in children often presents with normal kidney function, despite enlarged kidneys. The quadratic estimation of glomerular filtration rate (qGFR) provides a more accurate assessment than the Schwartz formula, avoiding false hyperfiltration classification.

Area of Science:

  • Nephrology
  • Pediatric Nephrology
  • Medical Genetics

Background:

  • Autosomal dominant polycystic kidney disease (ADPKD) is an inherited disorder causing renal tubular cystic dilatations and kidney enlargement.
  • Cystic expansion in ADPKD reduces functional nephrons, leading to progressive decline in renal function and complications like glomerular hyperfiltration, albuminuria, proteinuria, and hematuria.
  • ADPKD presentation in children varies significantly, from asymptomatic cases to rapid progression, with early-onset disease (<2 years) showing faster renal function decline.

Purpose of the Study:

  • To explore glomerular filtration rate (GFR) dynamics and renal ultrasound-adjusted percentiles in children with ADPKD.
  • To compare the accuracy of the modified Schwartz formula with the quadratic equation for estimating GFR in pediatric ADPKD patients.
  • To evaluate the prevalence of glomerular hyperfiltration in children with ADPKD using different GFR estimation methods.

Main Methods:

  • Retrospective analysis of 16 pediatric patients with ADPKD.
  • Measurement of glomerular filtration rates (GFR) using both the modified Schwartz formula and a quadratic equation (qGFR) after adjusting serum creatinine.
  • Assessment of kidney size using renal ultrasound-adjusted percentiles and correlation with GFR dynamics over a 1-year follow-up.

Main Results:

  • 14 out of 16 patients exhibited kidney percentiles over 90%.
  • The quadratic equation (qGFR) estimated lower GFR values (111.95 ± 12.43 mL/min/1.73 m²) compared to the Schwartz eGFR (126.28 ± 33.07 mL/min/1.73 m²), p = 0.14.
  • Using qGFR, no patients reached the glomerular hyperfiltration threshold, and GFR showed linear or slightly decreasing trends (ΔeGFR = -0.32 ± 5.78 mL/min/1.73 m²), unlike the Schwartz formula which could falsely indicate hyperfiltration (ΔeGFR = 7.51 ± 19.46 mL/min/1.73 m²), p = 0.019.

Conclusions:

  • Children with ADPKD often have enlarged kidneys but may maintain normal or near-normal renal function.
  • The quadratic equation provides a more reliable estimation of GFR in pediatric ADPKD, accurately reflecting renal function dynamics and avoiding misclassification of hyperfiltration.
  • Accurate GFR assessment is crucial for managing pediatric ADPKD, guiding treatment strategies, and predicting disease progression.

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