Key result
CYP2C19 poor and intermediate metabolizers show higher trough plasma concentrations of voriconazole, PPIs, and antidepressants.
Why the study?
Genetic variability in CYP2C19 affects drug efficacy and toxicity in pediatric patients receiving CYP2C19-metabolized drugs, necessitating treatment adaptation based on genotype.
Does CYP2C19 genotyping optimize treatment with drugs metabolized by CYP2C19 in pediatric patients?
Does CYP2C19 genotyping optimize treatment with drugs metabolized by CYP2C19 in pediatric patients?
CYP2C19 genotyping is a useful tool to optimize the dosing of voriconazole, PPIs, and antidepressants in pediatric patients, though data for clopidogrel remain lacking.
Supports exploring CYP2C19-guided dosing for voriconazole, PPIs, and antidepressants in children; leaves open outcome trials and clopidogrel data.
Genetic variability in CYP2C19 may be associated with both lack of efficacy and toxicity of drugs due to its different metabolic status based on the presence of particular alleles. This literature review summarizes current knowledge relative to the association or treatment adaptation based on CYP2C19 genetics in a pediatric population receiving drugs metabolized by CYP2C19, such as voriconazole, antidepressants, clopidogrel and proton pump inhibitors. Additionally, we also presented one of the approaches that we developed for detection of variant alleles in the CYP2C19 gene. A total of 25 articles on PubMed were retained for the study. All studies included pediatric patients (age up to 21 years) having benefited from an assessment of CYP2C19. CYP2C19 poor and intermediate metabolizers exhibit a higher trough plasma concentration of voriconazole, and PPIs compared to the rapid and ultra-rapid metabolizers. The pharmacogenetic data relative to CYP2C19 and clopidogrel in the pediatric population are not yet available. CYP2C19 poor metabolizers have a higher trough plasma concentration of antidepressants compared to the rapid and the ultra-rapid metabolizers. Modification of allele-specific PCR through the introduction of artificial mismatch is presented. CYP2C19 genotyping remains a powerful tool needed to optimize the treatment of children receiving voriconazole, PPIs, and anti-depressants.
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Pierre-François et al. (2022) conducted a review in Pediatric patients receiving drugs metabolized by CYP2C19. CYP2C19 poor and intermediate metabolizer status vs. Rapid and ultra-rapid metabolizers was evaluated on Trough plasma concentration of drugs metabolized by CYP2C19. CYP2C19 poor and intermediate metabolizers exhibited higher trough plasma concentrations of voriconazole, proton pump inhibitors, and antidepressants compared to rapid and ultra-rapid metabolizers.