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Updated: Apr 21, 2026

An Intestine/Liver Microphysiological System for Drug Pharmacokinetic and Toxicological Assessment
Published on: December 3, 2020
Pharmacogenomics of acetaminophen in pediatric populations: a moving target
Anne E Krasniak1, Gregory T Knipp2, Craig K Svensson1
1Department of Medicinal Chemistry and Molecular Pharmacology, College of Pharmacy, Purdue University West Lafayette, IN, USA.
Insights
Acetaminophen (APAP) efficacy and toxicity vary significantly between patients, especially children. Understanding age-related changes in drug metabolism and genetics is crucial for optimizing pediatric APAP treatment.
Area of Science:
- Pharmacology
- Genetics
- Pediatrics
Background:
- Acetaminophen (APAP) is a common over-the-counter medication for fever and pain.
- Current APAP use is suboptimal due to significant inter-patient variability in efficacy and toxicity.
- Predictive tools for drug efficacy and developmental toxicity are lacking in pediatric populations.
Purpose of the Study:
- To review the ontogenesis of regulatory pathways in APAP disposition.
- To examine variability in APAP metabolism and pharmacogenetics across pediatric, adolescent, and adult patients.
- To summarize pharmacogenetic studies related to pediatric APAP treatment.
Main Methods:
- Review of literature on APAP disposition and pharmacogenomics.
- Focus on ontogenic changes in regulatory pathways.
- Analysis of pharmacogenetic polymorphisms affecting APAP metabolism.
Main Results:
- Significant variability exists in APAP efficacy and toxicity across age groups.
- Differences in metabolism, transport, and genetics contribute to age-related toxicity.
- Pharmacogenomic applications in pediatrics face challenges due to dynamic physiological changes.
Conclusions:
- A consensus on pharmacogenetic management of APAP in pediatric populations is not yet established.
- A systems biology approach is needed to understand ontogenic regulatory pathways.
- Further research on the interaction between age and genetic variations is necessary for personalized pediatric APAP therapy.
Abstract:
Acetaminophen (APAP) is widely used as an over-the-counter fever reducer and pain reliever. However, the current therapeutic use of APAP is not optimal. The inter-patient variability in both efficacy and toxicity limits the use of this drug. This is particularly an issue in pediatric populations, where tools for predicting drug efficacy and developmental toxicity are not well established. Variability in toxicity between age groups may be accounted for by differences in metabolism, transport, and the genetics behind those differences. While pharmacogenomics has been revolutionizing the paradigm of pharmacotherapy for many drugs, its application in pediatric populations faces significant challenges given the dynamic ontogenic changes in cellular and systems physiology. In this review we focused on the ontogenesis of the regulatory pathways involved in the disposition of APAP and on the variability between pediatric, adolescent, and adult patients. We also summarize important polymorphisms of the pharmacogenes associated with APAP metabolism. Pharmacogenetic studies in pediatric APAP treatment are also reviewed. We conclude that while a consensus in pharmacogenetic management of APAP in pediatric populations has not been achieved, a systems biology based strategy for comprehensively understanding the ontogenic regulatory pathway as well as the interaction between age and genetic variations are particularly necessary in order to address this question.
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