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Published on: January 28, 2012
Population Pharmacokinetics of Lithium in Young Pediatric Patients With Intellectual Disability
Junying Yuan1, Bohao Zhang1,2, Yiran Xu1
1Henan Key Laboratory of Child Brain Injury and Henan Pediatric Clinical Research Center, Institute of Neuroscience and Third Affiliated Hospital and of Zhengzhou University, Zhengzhou, China.
Insights
Low-dose lithium pharmacokinetics (PK) in young children with intellectual disability were studied. Results show PK properties are similar to adults, supporting further dosage optimization for neurological conditions.
Area of Science:
- Pharmacology
- Pediatric Neurology
- Pharmacokinetics
Background:
- Lithium is a neuroprotective agent with potential therapeutic applications in childhood brain injury.
- Limited pharmacokinetic data exist for low-dose lithium use in pediatric populations.
- Intellectual disability in children may alter drug metabolism and disposition.
Purpose of the Study:
- To investigate the pharmacokinetic (PK) profile of low-dose lithium carbonate in young children with intellectual disability.
- To develop a population PK model for lithium in this specific pediatric group.
- To assess the influence of age, gender, and body weight on lithium PK.
Main Methods:
- A single oral dose of lithium carbonate was administered to 52 children (aged 4-10 years) with intellectual disability.
- Serum lithium concentrations were measured over time post-administration.
- Nonlinear mixed-effects modeling (NONMEM) was used to analyze PK data and develop a population model.
Main Results:
- A two-compartment model adequately described lithium disposition, characterized by transient absorption and first-order elimination.
- Body weight was identified as a significant covariate, influencing PK parameters.
- Estimated population PK parameters (clearance, volumes) were determined for a reference child (20 kg).
Conclusions:
- Lithium's PK properties in young children with intellectual disability are comparable to those in older children and adults.
- The developed population PK model demonstrates good predictive performance.
- This model provides a foundation for future PK/pharmacodynamic (PK/PD) analyses to optimize lithium dosing regimens in children.
Abstract:
Background: Lithium is a well-established treatment for bipolar disorders and has been shown to be neuroprotective, and thus low doses might be useful for the treatment of childhood brain injury and neurological sequelae. However, pharmacokinetic (PK) data in children are limited. This study was to investigate the PKs after oral administration of low-dose lithium carbonate in young children with intellectual disability. Methods: Fifty-two children with intellectual disability aged 4-10 years old were enrolled. A series of blood samples were collected after a single-dose administration of lithium carbonate. The serum lithium concentration was measured using a validated ion chromatography assay, and the PK concentration data were modeled using a nonlinear mixed effect model in the NONMEM program. Results: The lithium concentration over time was adequately described by a two-compartment disposition, with a transient absorption and first-order elimination process. The inclusion of body weight as an allometric factor significantly improved the model fit, but age and gender were not associated with the PKs of lithium. The clearance, central volume, inter-compartmental clearance, and peripheral volume estimates from the final population PK model were 0.98 L/h, 13.1 L, 0.84 L/h, and 8.2 L for children with a body weight of 20 kg. The model evaluation suggested that there is no obvious discrepancy between the observations and predictions in the proposed model. A visual predictive check demonstrated the good predictive performance of the final model. Conclusions: The lithium PK properties in young children were similar to those in older children and adults. The proposed model can be used for further PK/PD analysis to optimize the dosage regimen of lithium in children.
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