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Pamidronate distribution in pediatric renal and rheumatologic patients
Philip D Acott1, Jaime A Wong, John F S Crocker
1Department of Pediatrics, Dalhousie University, Halifax, Nova Scotia, Canada. Philip.acott@iwk.nshealth.ca
Insights
Pamidronate is safe for pediatric patients with bone diseases, showing rapid elimination and significant bone uptake similar to adults. This bisphosphonate treatment demonstrates effective short-term safety and efficacy in children.
Area of Science:
- Pharmacology
- Pediatric Nephrology
- Pediatric Rheumatology
Background:
- Pamidronate is a bisphosphonate used to treat bone disorders.
- Understanding its pharmacokinetics in pediatric patients is crucial for safe and effective treatment.
Purpose of the Study:
- To evaluate the distribution and elimination of pamidronate in pediatric patients with renal and rheumatologic conditions.
- To assess the relationship between pamidronate excretion and bone metabolism markers.
Main Methods:
- Whole blood pamidronate levels were measured in 7 pediatric patients for 4 hours post-infusion.
- Urinary excretion and clearances were analyzed in 18 patients.
- Correlations were drawn between urinary pamidronate, renal function, calcium levels, and bone turnover markers.
Main Results:
- Pamidronate reached steady-state concentrations within 30 minutes, with rapid blood clearance (half-life < 1 hour).
- Approximately 68% of the dose was incorporated into bone, similar to adult uptake.
- Bone-specific alkaline phosphatase correlated with pamidronate bone uptake (p=0.002).
Conclusions:
- Pamidronate (1 mg/kg every 2 months) appears safe short-term for pediatric patients.
- The drug achieves low blood levels and demonstrates comparable skeletal uptake to adults.
- No correlation found between urinary excretion and bone resorption markers or renal function.
Objective:
To evaluate the distribution and elimination of pamidronate in a population of pediatric patients with renal and rheumatologic disease.
Methods:
Pamidronate whole blood levels were collected for the first 4 h after first exposure in 7 patients. The relationship between the rate of urinary excretion of pamidronate and bone formation or resorption was examined in 18 patients while receiving pamidronate at a total dose of 1 mg/kg/dose infused intravenously over a 4-h period. The urinary pamidronate clearances were correlated with renal function, calcium levels and measures of bone formation and resorption.
Results:
Pamidronate levels reached steady state concentrations of 0.9-1.5 microg/ml within 30 min and the clearance of the drug (mean+/-SE) from blood was 180.0+/-64.2 ml/kg/h with an elimination half-life of less than 1 h. The mean urinary excretion of 31.5+/-2.2% of the administered dose indicated that about 68% of the drug was incorporated into bone, confirming the uptake of pamidronate into bone was similar in pediatric patients compared to that previously reported for adults. Bone specific alkaline phosphatase, which is a marker for bone growth and formation, had significant correlation with the uptake of pamidronate into bone (p=0.002). No correlation was demonstrated with a marker for bone resorption (urinary N-telopeptide/creatinine ratio), or with creatinine clearance or calciuria when assessed 2 months after treatment.
Conclusion:
Pamidronate at a dose of 1 mg/kg/dose every 2 months appears safe in the short term for pediatric patients, achieves relatively low whole blood pamidronate levels, and has similar skeletal uptake of pamidronate compared to adults.
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