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Published on: October 20, 2023
Population Pharmacokinetics of Lopinavir/Ritonavir: Changes Across Formulations and Human Development From Infancy
Jincheng Yang1, Mina Nikanjam2, Brookie M Best1,3
1Skaggs School of Pharmacy and Pharmaceutical Science, University of California, San Diego, CA, USA.
Insights
Lopinavir/ritonavir (LPV/r) dosing for infants under six months may lead to suboptimal drug concentrations. This population pharmacokinetic analysis highlights the need for formulation and age-specific dosing adjustments for effective HIV treatment in young children.
Area of Science:
- Pharmacokinetics and Drug Metabolism
- Pediatric Pharmacology
- Infectious Disease Therapeutics
Background:
- Lopinavir/ritonavir (LPV/r) is a WHO-recommended first-line HIV treatment for children.
- Pediatric dosing requires understanding drug concentration changes with age and formulation.
Purpose of the Study:
- To analyze LPV/r population pharmacokinetics (PK) in infants, children, adolescents, and adults.
- To evaluate the impact of maturation and different drug formulations on LPV PK.
- To assess current WHO dosing recommendations for LPV/r in young children.
Main Methods:
- Composite population PK analysis using data from 6 pediatric and adult studies.
- Nonlinear mixed-effects modeling (NONMEM) with a semiphysiologic model.
- Monte Carlo simulations to evaluate dosing recommendations.
Main Results:
- LPV bioavailability increased with age and tablet formulation.
- Infants younger than 6 months had lower LPV exposure (AUC and Cmin) compared to older individuals.
- Current WHO weight-band dosing resulted in low LPV concentrations in many infants <6 months using the liquid formulation.
Conclusions:
- Age and formulation significantly impact LPV/r absorption and bioavailability.
- Current WHO dosing may not ensure adequate LPV concentrations in infants younger than 6 months.
- Further optimization of LPV/r dosing strategies for young infants is warranted.
Abstract:
Lopinavir/ritonavir (LPV/r) is recommended by the World Health Organization as first-line treatment for HIV-infected infants and young children. We performed a composite population pharmacokinetic (PK) analysis on LPV plasma concentration data from 6 pediatric and adult studies to determine maturation and formulation effects from infancy to adulthood. Intensive PK data were available for infants, children, adolescents, and adults (297 intensive profiles/1662 LPV concentrations). LPV PK data included 1 adult, 1 combined pediatric-adult, and 4 pediatric studies (age 6 weeks to 63 years) with 3 formulations (gel-capsule, liquid, melt-extrusion tablets). LPV concentrations were modeled using nonlinear mixed effects modeling (NONMEM v. 7.3; GloboMax, Hanover, Maryland) with a one compartment semiphysiologic model. LPV clearance was described by hepatic plasma flow (QHP ) times hepatic extraction (EH ), with EH estimated from the PK data. Volume was scaled by linear weight (WT/70)1.0 . Bioavailability was assessed separately as a function of hepatic extraction and the fraction absorbed from the gastrointestinal tract. The absorption component of bioavailability increased with age and tablet formulation. Monte Carlo simulations of the final model using current World Health Organization weight-band dosing recommendations demonstrated that participants younger than 6 months of age had a lower area under the drug concentration-time curve (94.8 vs >107.4 μg hr/mL) and minimum observed concentration of drug in blood plasma (5.0 vs > 7.1 μg/mL) values compared to older children and adults. Although World Health Organization dosing recommendations include a larger dosage (mg/m2 ) in infants to account for higher apparent clearance, they still result in low LPV concentrations in many infants younger than 6 months of age receiving the liquid formulation.
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