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Candidate Gene Testing in Clinical Cohort Studies with Multiplexed Genotyping and Mass Spectrometry
Published on: June 21, 2018
Retrospective Review of Pharmacogenetic Testing at an Academic Children's Hospital
Timothy A Roberts1,2, Jennifer A Wagner2,3, Tracy Sandritter3
1Division of Adolescent Medicine, Children's Mercy Kansas City, Kansas City, Missouri, USA.
Insights
Pharmacogenetic (PGx) testing shows high utility in children, with actionable gene-drug pairs present in nearly all patients. This testing can guide treatment selection and dosing for nearly half of pediatric patients, particularly for mood disorders and gastritis.
Area of Science:
- Pharmacogenomics
- Pediatric Medicine
- Clinical Pharmacology
Background:
- Limited evidence currently supports the use of pharmacogenetic (PGx) testing in pediatric populations.
- Understanding PGx utility is crucial for optimizing drug therapy in children.
- Identifying specific gene-drug-diagnosis groups can reveal opportunities for personalized medicine in pediatrics.
Purpose of the Study:
- To evaluate the potential utility of PGx testing in pediatric diseases.
- To identify specific gene-drug-diagnosis targets for future pediatric pharmacogenetic research.
- To assess the prevalence of actionable PGx information in a pediatric hospital setting.
Main Methods:
- Retrospective review of PGx testing data from 452 patients at an academic children's hospital.
- Analysis of 28 genes with actionable gene-drug pairs based on CPIC, PharmGKB, and FDA guidelines.
- Identification of actionable gene-drug-diagnosis groups and assessment of treatment/dosing applicability.
Main Results:
- Actionable PGx information was present in 98.7% of pediatric patients tested.
- Nearly half of patients (48.7%) had diagnoses where PGx could guide treatment selection or medication dosing.
- CYP2C19, CYP2D6, and CYP3A5 were the most common genes involved; depression, gastritis/esophagitis, and ADHD were frequent associated conditions.
Conclusions:
- PGx testing demonstrates significant potential utility in pediatric care, applicable to a large proportion of patients.
- Mood disorders and gastritis/esophagitis represent promising areas for future PGx research in children due to high prevalence.
- Further pediatric pharmacogenetic research is warranted to optimize drug therapy and personalize treatment strategies.
Abstract:
There is limited evidence to support pharmacogenetic (PGx) testing in children. We conducted a retrospective review of PGx testing among 452 patients at an academic children's hospital to determine the potential utility of PGx in diseases of childhood and to identify targets for future pediatric pharmacogenetic research. An actionable gene-drug pair associated with the 28 genes tested (Clinical Pharmacogenetics Implementation Consortium (CPIC) level A or B, Pharmacogenomics Knowledge Base (PharmGKB) level 1A or B, or US Food and Drug Administration (FDA) recommendation and a PharmGKB level) was present in 98.7% of patients. We identified 203 actionable gene-drug-diagnosis groups based on the indications for each actionable drug listed in Lexicomp. Among patients with an actionable gene-drug-diagnosis group, 49.3% had a diagnosis where the drug was a therapeutic option and PGx could be used to guide treatment selection. Among patients with an associated diagnosis, 30.9% had a prescription for the actionable drug allowing PGx guided dosing. Three genes (CYP2C19, CYP2D6, and CYP3A5) accounted for all the gene-drug-diagnosis groups with matching diagnoses and prescriptions. The most common gene-drug-diagnosis groups with matching diagnoses and prescriptions were CYP2C19-citalopram-escitalopram-depression 3.3% of patients tested; CYP2C19-dexlansoprazole-gastritis-esophagitis 3.1%; CYP2C19-omeprazole-gastritis-esophagitis 2.4%; CYP2D6-atomoxetine-attention deficit hyperactivity disorder 2.2%; and CYP2C19-citalopram-escitalopram-obsessive-compulsive disorder 1.5%. PGx could be used to guide selection of current treatment options or medication dosing in almost half (48.7%) of pediatric patients tested. Mood disorders and gastritis/esophagitis are promising targets for future study of PGx testing because of the high prevalence of these diagnoses and associated actionable gene-drug pairs in the pediatric population.
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