Population pharmacokinetics and dosing optimization of perampanel in children with epilepsy: A real-world study

Sichan Li1, Jiaqin Yi2,3, YaLi Tuo1

  • 1Department of Pharmacy, Wuhan Children's Hospital (Wuhan Maternal and Child Health Care Hospital), Tongji Medical College, Huazhong University of Science and Technology, Wuhan, China.

Epilepsia
|April 4, 2024
PubMed

Insights

This study explored perampanel pharmacokinetics in children with epilepsy. Findings support individualized dosing strategies for perampanel (PER) to improve treatment outcomes in pediatric epilepsy patients.

Area of Science:

  • Pharmacology
  • Pediatric Neurology
  • Clinical Pharmacy

Background:

  • Epilepsy is a common neurological disorder in children.
  • Perampanel (PER) is an antiepileptic drug used to treat various seizure types.
  • Optimizing PER dosing in pediatric patients is crucial for efficacy and safety.

Purpose of the Study:

  • To investigate the pharmacokinetics of perampanel (PER) in pediatric epilepsy patients.
  • To identify factors influencing PER pharmacokinetic variability.
  • To establish an evidence-based approach for individualized PER dosing in children.

Main Methods:

  • Prospective study involving 194 pediatric patients (<18 years).
  • Collected PER plasma concentrations and genetic data.
  • Utilized nonlinear mixed-effects models to characterize PER disposition kinetics.
  • Determined effective PER plasma concentration range via efficacy and safety assessments.
  • Performed Monte Carlo simulations for dosing regimen optimization.

Main Results:

  • PER pharmacokinetics modeled by a one-compartment system.
  • Body weight, total bilirubin, and oxcarbazepine significantly impacted PER pharmacokinetics.
  • Estimated apparent clearance: 0.016 ± 0.009 L/h/kg; volume of distribution: 1.47 ± 0.78 L/kg.
  • Predicted effective PER range: 215-862 μg/L.
  • Proposed optimized dosing scenarios based on covariates.

Conclusions:

  • Characterized pharmacokinetic/pharmacodynamic properties of PER in pediatric epilepsy.
  • Employed a pharmacometric approach using real-world data.
  • Supported an individualized dosing strategy for PER in pediatric epilepsy patients.
Abstract

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