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Deferasirox-induced renal impairment in children: an increasing concern for pediatricians
Laurence Dubourg1,2,3,4,5, Céline Laurain6, Bruno Ranchin6
1Centre de Référence des Maladies Rénales Rares, Service de Néphrologie et Rhumatologie Pédiatriques, Hôpital Femme Mère Enfant, Hospices Civils de Lyon, Bron, France. laurence.dubourg@chu-lyon.fr.
Insights
Deferasirox (DFX) treatment in children with iron overload can lead to kidney problems, affecting both filtration and tubules. Regular kidney monitoring is essential to prevent long-term damage.
Area of Science:
- Pediatric Nephrology
- Pharmacology
- Hematology
Background:
- Deferasirox (DFX) is an oral iron chelator used for transfusion-related iron overload.
- While generally safe, DFX has been associated with renal tubular dysfunction.
- This study investigates DFX's impact on kidney function in children.
Purpose of the Study:
- To evaluate glomerular and tubular function before and after DFX initiation in pediatric patients.
- To assess the incidence and type of renal dysfunction associated with DFX therapy.
Main Methods:
- Ten pediatric patients receiving regular blood transfusions were treated with DFX.
- Renal function (glomerular and tubular) was assessed before and after DFX therapy.
- Follow-up duration was approximately 17 months.
Main Results:
- Prior to DFX, all patients had normal glomerular filtration rate (GFR) and tubular function.
- After DFX initiation, GFR decreased by ~20% in the cohort.
- Nine out of ten patients showed signs of proximal tubular dysfunction, with two experiencing generalized dysfunction.
Conclusions:
- Renal toxicity, including glomerular and proximal tubular dysfunction, is a common adverse event of DFX treatment in children.
- Routine renal function assessment is crucial during DFX therapy.
- Monitoring helps prevent chronic kidney disease resulting from prolonged tubular injury.
Background:
Deferasirox (DFX) is an oral iron chelator with an established dose-dependent efficacy in transfusion-related iron overload. Whereas emerging long-term data confirm the safety of the drug, with transient moderate elevation of serum creatinine level, several authors have reported renal tubular dysfunction. The aim of this study was to evaluate tubular and glomerular function before and after the initiation of DFX therapy in a pediatric patient population.
Methods:
Ten children (4 girls, mean age 12.4 ± 3.9 years) enrolled in a routine blood transfusion program were treated with 24.8 ± 9.6 mg/kg per day of DFX, and renal function was assessed before and 17.2 ± 8.9 months after the initiation of DFX therapy.
Results:
Prior to treatment with DFX, all patients had a normal glomerular function rate (GFR) (125 ± 15 ml/min per 1.73 m(2)) and normal tubular function. Following the initiation of DFX therapy, the GFR decreased by approximately 20 % with one patient with a GFR of <80 mL/min per 1.73 m(2) and seven patients with a GFR of <100 mL/min per 1.73 m(2). Two patients experienced a generalized proximal tubular dysfunction whereas nine patients presented at least one sign of proximal tubular dysfunction.
Conclusions:
Renal toxicity is a frequent adverse event of DFX treatment, presenting as both glomerular and proximal dysfunction. A routine renal assessment is therefore required to prevent chronic kidney disease that may result from prolonged tubular injury.
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