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An Intestine/Liver Microphysiological System for Drug Pharmacokinetic and Toxicological Assessment
Published on: December 3, 2020
Pharmacokinetics of proton pump inhibitors in children
Catherine Litalien1, Yves Théorêt, Christophe Faure
1Department of Pediatrics, University of Montreal, Montreal, Canada.
Insights
Proton pump inhibitors (PPIs) show rapid absorption and metabolism in children, similar to adults, but with faster clearance. Dosing variability in pediatric patients may stem from interindividual pharmacokinetic differences.
Area of Science:
- Pharmacology
- Pediatric Medicine
- Drug Metabolism
Background:
- Proton pump inhibitors (PPIs) are widely used for pediatric acid-related diseases.
- Pharmacokinetic data for PPIs in children are limited, especially for newer agents like rabeprazole and esomeprazole.
- Enantiomer metabolism of PPIs in pediatric populations remains unstudied.
Purpose of the Study:
- To review the current understanding of proton pump inhibitor pharmacokinetics in pediatric populations.
- To highlight data gaps and areas for future research in pediatric PPI use.
Main Methods:
- Literature review of published pharmacokinetic studies on PPIs in children.
- Analysis of available data on absorption, metabolism, bioavailability, and clearance of omeprazole, lansoprazole, and pantoprazole in pediatric patients.
Main Results:
- PPIs are rapidly absorbed (1-3 hours) and metabolized (half-life ~1 hour) in children, with significant interindividual variability.
- Oral formulations are enteric-coated due to acid lability; extemporaneous liquid preparations lack bioavailability data.
- Apparent clearance is faster in children than adults, potentially requiring higher weight-based doses.
- CYP2C19 genetic polymorphism impacts PPI metabolism, similar to adults.
Conclusions:
- Pediatric PPI pharmacokinetics share similarities with adults but exhibit faster clearance and significant variability.
- Further research is crucial, particularly for children under 2 years and for less-studied PPIs.
- Understanding pharmacokinetic variability is key to optimizing pediatric PPI dosing and therapeutic outcomes.
Abstract:
The use of proton pump inhibitors (PPIs) has become widespread in children and infants for the management of paediatric acid-related disease. Pharmacokinetic profiles of only omeprazole and lansoprazole have been well characterised in children over 2 years of age with acid-related diseases. Few data have been recently published regarding the pharmacokinetics of pantoprazole in children, and none are available for rabeprazole or esomeprazole. The metabolism of PPI enantiomers has never been studied in the paediatric population. A one-compartment model best describes the pharmacokinetic behaviour of omeprazole, lansoprazole and pantoprazole in children, with important interindividual variability for each pharmacokinetic parameter. Like adults, PPIs are rapidly absorbed in children following oral administration; the mean time to reach maximum plasma concentration varies from 1 to 3 hours. Since these agents are acid labile, their oral formulations consist of capsules containing enteric-coated granules. No liquid formulation is available for any of the PPIs. Thus, for those patients unable to swallow capsules, extemporaneous liquid preparations for omeprazole and lansoprazole have been reported; however, neither the absolute nor the relative bioavailabilities of these oral formulations have been studied in children. Intravenous formulations are available for omeprazole (in Europe), lansoprazole and pantoprazole. PPIs are rapidly metabolised in children, with short elimination half-lives of around 1 hour, similar to that reported for adults. All PPIs are extensively metabolised by the liver, primarily by cytochrome P450 (CYP) isoforms CYP2C19 and CYP3A4, to inactive metabolites, with little unchanged drug excreted in the urine. Similar to that seen in adults, the absolute bioavailability of omeprazole increases with repeated dosing in children; this phenomenon is thought to be due to a combination of decreased first-pass elimination and reduced systemic clearance. The apparent clearance (CL/F) of omeprazole, lansoprazole and pantoprazole appears to be faster for children than for adults. A higher metabolic capacity in children as well as differences in the extent of PPI bioavailability are most likely responsible for this finding. This may partly account for the need in children for variable and sometimes considerably greater doses of PPIs, on a per kilogram basis, than for adults to achieve similar plasma concentrations. Furthermore, no studies have been able to demonstrate a statistically significant correlation between age and pharmacokinetic parameters among children. Despite the small number of very young infants studied, there is some evidence for reduced PPI metabolism in newborns. The limited paediatric data regarding the impact of CYP2C19 genetic polymorphism on PPI metabolism are similar to those reported for adults, with poor metabolisers having 6- to 10-fold higher area under the concentration-time curve values compared with extensive metabolisers. Finally, because a pharmacokinetic/pharmacodynamic relationship exists for PPIs, the significant interindividual variability in their disposition may partly explain the wide range of therapeutic doses used in children. Further studies are needed to better define the pharmacokinetics of PPIs in children <2 years of age.
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