Utility of the C-pantoprazole breath test as a CYP2C19 phenotyping probe for children.

Keith Feldman, Gregory L Kearns, Robin E Pearce, Susan M Abdel-Rahman, James Steven Leeder, Alec Friesen, Vincent S Staggs, Andrea Gaedigk, Jaylene Weigel, Valentina Shakhnovich

Journal: Clinical and translational science 2022;15(5):1155-1166

PMID: 35099109

Abstract

The C-pantoprazole breath test (PAN-BT) is a safe, noninvasive, in vivo CYP2C19 phenotyping probe for adults. Our objective was to evaluate PAN-BT performance in children, with a focus on discriminating individuals who, according to guidelines from the Clinical Pharmacology Implementation Consortium (CPIC), would benefit from starting dose escalation versus reduction for proton pump inhibitors (PPIs). Children (n = 65, 6-17 years) genotyped for CYP2C19 variants *2, *3, *4, and *17 received a single oral dose of C-pantoprazole. Plasma concentrations of pantoprazole and its metabolites, and changes in exhaled CO (termed delta-over-baseline or DOB), were measured 10 times over 8 h using high performance liquid chromatography with ultraviolet detection and spectrophotometry, respectively. Pharmacokinetic parameters of interest were generated and DOB features derived using feature engineering for the first 180 min postadministration. DOB features, age, sex, and obesity status were used to run bootstrap analysis at each timepoint (T ) independently. For each iteration, stratified samples were drawn based on genotype prevalence in the original cohort. A random forest was trained, and predictive performance of PAN-BT was evaluated. Strong discriminating ability for CYP2C19 intermediate versus normal/rapid metabolizer phenotype was noted at DOB (mean sensitivity: 0.522, specificity: 0.784), with consistent model outperformance over a random or a stratified classifier approach at each timepoint (p < 0.001). With additional refinement and investigation, the test could become a useful and convenient dosing tool in clinic to help identify children who would benefit most from PPI dose escalation versus dose reduction, in accordance with CPIC guidelines.

© 2022 The Authors. Clinical and Translational Science published by Wiley Periodicals LLC on behalf of American Society for Clinical Pharmacology and Therapeutics.

Address: University of Missouri-Kansas City School of Medicine, Kansas City, Missouri, USA.; Children's Mercy Kansas City, Kansas City, Missouri, USA.; Texas Christian University and UNTHSC School of Medicine, Fort Worth, Texas, USA.; Oklahoma School of Community Medicine, Tulsa, Oklahoma, USA.; Center for Children's Healthy Lifestyles & Nutrition, Kansas City, Missouri, USA.

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