Propranolol pharmacokinetics in infants treated for Infantile Hemangiomas requiring systemic therapy: Modeling and
Laurence Del Frari1, Christine Léauté-Labrèze2, Laurent Guibaud3
1PKPD Department Pierre Fabre Médicament Toulouse France.
Insights
Propranolol dosing for infantile hemangiomas (IH) in infants is weight-based and age-independent. Twice-daily (BID) dosing is effective and flexible, even with irregular timing.
Area of Science:
- Pharmacology
- Pediatrics
- Dermatology
Background:
- Propranolol is the standard treatment for complicated infantile hemangiomas (IH).
- Understanding propranolol pharmacokinetics in infants is crucial for optimizing treatment.
Purpose of the Study:
- To evaluate the pharmacokinetics of a new pediatric propranolol solution in infants with IH.
- To develop a population pharmacokinetic model for propranolol in this population.
- To simulate and compare different dosing regimens.
Main Methods:
- Population pharmacokinetic analysis of 167 plasma concentrations from 22 infants.
- Development of a one-compartment model with first-order kinetics.
- Monte Carlo simulations of twice-daily (BID) and three-times-daily (TID) dosing regimens.
Main Results:
- Weight significantly affected propranolol clearance, but not volume of distribution.
- Typical oral clearance was estimated at 3.06 L/hour/kg, comparable to adults.
- Simulated Cmin and Cmax values showed less than 20% difference between regular BID, irregular BID, and TID regimens.
Conclusions:
- The established model confirms that propranolol dosage (mg/kg) for IH does not require age-specific adjustments in infants.
- BID dosing is supported, offering flexibility with irregular timing, and is comparable to TID dosing in maintaining therapeutic concentrations.
Abstract:
Propranolol has become the first choice therapy for complicated Infantile Hemangiomas (IH). The pharmacokinetics of propranolol were evaluated after repeated oral administration of a new pediatric solution of propranolol at 3 mg kg-1 day-1 given twice daily (BID) in infants (77-243 days) with IH. A population model was built to describe the pharmacokinetics of propranolol in infants and to simulate different dosing regimens. One hundred and sixty-seven plasma concentrations from 22 infants were used in the population analysis. Weight effect was tested on apparent clearance and volume of distribution. Monte-Carlo simulations were performed for 4 dosing regimens: BID dosing with irregular or strict 12-hour intervals and 2 different 3 time daily dosing (TID) regimens. The best model was a one-compartment model with first-order absorption and elimination rates. The weight affected the clearance but not the volume. Typical oral clearance was estimated at 3.06 L hour-1 kg-1 (95% CI: 1.14-8.61 L hour-1 kg-1), close to adult clearance data. When regular BID dosing was compared to TID or irregular BID regimens, simulated median Cmin and Cmax were <20% different. To conclude, a model using a weight allometric function on clearance was established and confirmed that the dose in mg/kg should be used without adaptation by range of age in treatment of complicated IH. The simulations support the use of a BID dosing preferably to a TID dosing thanks to close Cmin and Cmax at steady state between both regimen and showed the possibility of irregular BID dosing, allowing early administration in the evening when needed.
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