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P50 Sensory Gating in Infants
Published on: December 26, 2013
Population pharmacokinetics of gabapentin in infants and children
D Ouellet1, H N Bockbrader, D L Wesche
1Pfizer Global Research & Development (Ann Arbor Laboratories), 2800 Plymouth Road, Ann Arbor, MI 48105, USA. daniele.ouellet@pfizer.com
Insights
Younger children require 33% higher gabapentin doses for equivalent exposure. This study characterized gabapentin pharmacokinetics in pediatric populations, identifying key factors influencing drug disposition.
Area of Science:
- Pharmacology
- Pediatric Medicine
- Clinical Pharmacy
Background:
- Gabapentin is widely used for epilepsy and neuropathic pain.
- Understanding its pharmacokinetics in pediatric populations is crucial for safe and effective dosing.
Purpose of the Study:
- To characterize gabapentin pharmacokinetics in infants and children.
- To identify demographic and physiological factors affecting gabapentin disposition.
Main Methods:
- Population pharmacokinetic modeling using NONMEM.
- Analysis of data from healthy subjects (N=48) and epilepsy patients (N=205).
- Dose range: 10-65 mg/kg/day.
Main Results:
- Gabapentin oral clearance correlates with creatinine clearance, with differences observed across racial groups.
- Younger children (<5 years) exhibit higher and more variable weight-normalized oral clearance.
- Volume of distribution is related to body weight and differs between healthy subjects and patients.
Conclusions:
- Younger children (<5 years) require approximately 33% higher weight-based doses for comparable gabapentin exposure.
- Age and renal function are key determinants of gabapentin pharmacokinetics in pediatric patients.
Purpose:
To characterize gabapentin pharmacokinetics in infants and children using a population approach and to identify important demographic and/or physiologic determinants of gabapentin disposition.
Methods:
Gabapentin was administered in single doses of 10 mg/kg (N=48 healthy subjects, age 1 month-12 years) or in multiple doses of 10-65 mg/kg per day (N=205 patients with epilepsy, age 2 months-13 years) at 08:00, 14:00, and 20:00. Serial concentration-time data from the healthy subjects were combined with sparse data obtained in patients and were modeled using NONMEM.
Results:
Gabapentin oral clearance (l/h) was directly related to creatinine clearance (ml/min) with a slope of 0.116. The slope of the relationship was 36% greater in blacks than in subjects of other races. When oral clearance was normalized for body weight, young children (<5 years) had higher and more variable values than older children. Volume of distribution was related to body weight and appeared to differ between subjects and patients. Intersubject variability was approximately 30% for oral clearance and volume of distribution and was larger for the absorption rate constant and lag time. Residual variability, a measure of intrasubject variability and measurement error, was smaller in subjects than in patients.
Conclusions:
On a weight basis, 33% larger doses would be required in younger children (<5 years) to achieve the same exposure as older children.
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