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Updated: Mar 26, 2026

An Intestine/Liver Microphysiological System for Drug Pharmacokinetic and Toxicological Assessment
Published on: December 3, 2020
Specific features of pharmacokinetics in children
Petra Matalová1, Karel Urbánek1, Pavel Anzenbacher1
1a Department of Pharmacology , Faculty of Medicine and Dentistry, Palacký University Olomouc and University Hospital Olomouc , Olomouc , Czech Republic.
Insights
Drug disposition in children changes significantly due to growth and development, impacting drug therapy. Understanding how ontogeny influences pharmacokinetics is key to optimizing medication for pediatric patients.
Area of Science:
- Pharmacology
- Pediatrics
- Developmental Biology
Background:
- Human growth and development involve continuous biological changes affecting drug disposition.
- Key factors include alterations in body composition, organ function (liver, kidney), and physiological processes like gastric emptying and intestinal motility.
Purpose of the Study:
- To explore how ontogeny (developmental changes) influences pharmacokinetics in children.
- To optimize drug therapy and dosing strategies for pediatric populations.
Main Methods:
- Review of physiological and biochemical changes during human growth and development.
- Analysis of how these changes affect drug absorption, distribution, metabolism, and excretion (ADME).
Main Results:
- Altered body composition (water content, protein levels) affects drug distribution.
- Developing metabolic pathways (Phase I, Phase II enzymes) and excretory functions (renal filtration) impact drug clearance.
- Non-linear and discordant developmental changes necessitate individualized dosing.
Conclusions:
- Standardized dosing is often inadequate in children due to dynamic pharmacokinetic changes.
- A thorough understanding of developmental influences on pharmacokinetics is crucial for effective and safe pediatric drug therapy.
Abstract:
Human growth and development consist of a continuum of biological events. The impact of these developmental changes in drug disposition is largely related to changes in the body composition (e.g. body water content, plasma protein concentrations) and in the function of organs important in metabolism (e.g. the liver) and excretion (e.g. the kidney). The gastric emptying time during the neonatal period is prolonged, as well as intestinal motility. The ratio of body surface area to body weight is higher in children than in adults, which results in higher absorption of locally applied corticosteroids. Lower plasma protein levels and a higher body water content compared to adults may lead to diminished drug distribution. Phase I drug metabolizing system develops quickly and reaches adult levels between the third and sixth year of age. In newborns up to 3 months, the sulphotransferase activity is more developed than glucuronidation. Glomerular filtration, normalized to body surface area, approaches adult levels by 6 months of age. During the first decade of life, these changes are dynamic and can be non-linear and discordant, making standardized dosing inadequate. During rapid phases of growth/development, drug disposition and response may be altered. The main goal is to optimize drug therapy in children. This can be achieved through a fundamental understanding of how ontogeny influences pharmacokinetics.
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