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Updated: Sep 28, 2025

Assessment of Child Anthropometry in a Large Epidemiologic Study
Published on: February 2, 2017
Characterizing Pharmacokinetics in Children With Obesity-Physiological, Drug, Patient, and Methodological
Jacqueline G Gerhart1, Stephen Balevic1,2,3, Jaydeep Sinha1,4
1Division of Pharmacotherapy and Experimental Therapeutics, UNC Eshelman School of Pharmacy, The University of North Carolina at Chapel Hill, Chapel Hill, NC, United States.
Insights
Childhood obesity affects drug pharmacokinetics in children. Understanding physiological changes and drug properties is crucial for accurate dosing, especially with rising obesity rates.
Area of Science:
- Pharmacology and Toxicology
- Pediatric Medicine
- Public Health
Background:
- Childhood obesity is a growing global health crisis, impacting nearly 20% of US children.
- Obesity significantly alters drug distribution and elimination, affecting drug exposure and therapeutic outcomes.
- Current weight-based pediatric dosing may not be optimal for children with obesity.
Purpose of the Study:
- To review key considerations for optimizing drug dosing in children with obesity.
- To highlight the interplay between obesity-related physiological changes and drug-specific properties.
- To identify strategies for bridging knowledge gaps in pediatric obesity pharmacokinetics.
Main Methods:
- Review of physiological changes in obese children affecting drug pharmacokinetics.
- Analysis of drug-specific properties (lipophilicity, elimination pathways).
- Discussion of methodological considerations for pharmacokinetic studies (sample size, sampling schemes).
Main Results:
- Obesity alters drug volume of distribution and elimination rates, potentially requiring dose adjustments.
- Appropriate body size metrics for dosing remain a critical question.
- Quantitative frameworks are needed to integrate physiological and drug-specific factors.
Conclusions:
- Accurate pharmacokinetic assessment in obese children requires considering physiology, drug properties, and patient factors.
- Modeling and simulation techniques (e.g., PBPK) are vital for improving dosing strategies.
- Addressing dosing challenges in pediatric obesity is essential given the epidemic's scale.
Abstract:
Childhood obesity is an alarming public health problem. The pediatric obesity rate has quadrupled in the past 30 years, and currently nearly 20% of United States children and 9% of children worldwide are classified as obese. Drug distribution and elimination processes, which determine drug exposure (and thus dosing), can vary significantly between patients with and without obesity. Obesity-related physiological changes, such as increased tissue volume and perfusion, altered blood protein concentrations, and tissue composition can greatly affect a drug's volume of distribution, which might necessitate adjustment in loading doses. Obesity-related changes in the drug eliminating organs, such as altered enzyme activity in the liver and glomerular filtration rate, can affect the rate of drug elimination, which may warrant an adjustment in the maintenance dosing rate. Although weight-based dosing (i.e., in mg/kg) is commonly practiced in pediatrics, choice of the right body size metric (e.g., total body weight, lean body weight, body surface area, etc.) for dosing children with obesity still remains a question. To address this gap, the interplay between obesity-related physiological changes (e.g., altered organ size, composition, and function), and drug-specific properties (e.g., lipophilicity and elimination pathway) needs to be characterized in a quantitative framework. Additionally, methodological considerations, such as adequate sample size and optimal sampling scheme, should also be considered to ensure accurate and precise top-down covariate selection, particularly when designing opportunistic studies in pediatric drug development. Further factors affecting dosing, including existing dosing recommendations, target therapeutic ranges, dose capping, and formulations constraints, are also important to consider when undergoing dose selection for children with obesity. Opportunities to bridge the dosing knowledge gap in children with obesity include modeling and simulating techniques (i.e., population pharmacokinetic and physiologically-based pharmacokinetic [PBPK] modeling), opportunistic clinical data, and real world data. In this review, key considerations related to physiology, drug parameters, patient factors, and methodology that need to be accounted for while studying the influence of obesity on pharmacokinetics in children are highlighted and discussed. Future studies will need to leverage these modeling opportunities to better describe drug exposure in children with obesity as the childhood obesity epidemic continues.
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