4.7 Article

Variants in COMT, CYP3A5, CYP2B6, and ABCG2 Alter Quetiapine Pharmacokinetics

期刊

PHARMACEUTICS
卷 13, 期 10, 页码 -

出版社

MDPI
DOI: 10.3390/pharmaceutics13101573

关键词

quetiapine; pharmacogenetics; pharmacokinetics; safety; precision medicine

资金

  1. Instituto de Salud Carlos III (ISCIII)
  2. European Social Fund [FI20/00090]
  3. ISCIII [ICI20/00131]
  4. Universidad Autonoma de Madrid

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This study investigated the impact of genetic variants in pharmacogenes on the pharmacokinetics of quetiapine, finding significant associations between COMT, CYP3A5, CYP2B6, and ABCG2 variants and quetiapine exposure. The discovery of potential COMT metabolites of quetiapine and the role of CYP enzymes in its metabolism suggest important mechanisms for quetiapine accumulation. Further research is needed to confirm the clinical relevance of these findings.
Quetiapine is an atypical antipsychotic widely used for the treatment of schizophrenia and the depressive episodes of bipolar disorder. The aim of this work was to investigate the effect of variants in relevant pharmacogenes in the pharmacokinetics of quetiapine and to exploratorily evaluate adverse drug reaction (ADR) incidence based on genetic polymorphism. Specifically, 49 healthy volunteers enrolled in two bioequivalence clinical trials were included in this study. In addition, 80 variants in 19 relevant pharmacogenes were genotyped, including cytochrome P450 (CYP) genes, catechol-O-methyl transferase (COMT), other enzymes (e.g., UGT1A1 or UGT1A4), and transporters (e.g., SLCO1B1, ABCB1, or ABCG2). The COMT rs13306278 T allele was significantly related to quetiapine-increased exposure. We demonstrated the existence of quetiapine derivatives with a catechol-like structure (7,8-dihydroxi-quetiapine and 7,8-dihydroxi-N-desalkyl-quetiapine), which would be COMT metabolites and would explain quetiapine accumulation through CYP2D6 and CYP3A4 negative feedback. Moreover, CYP3A5 and CYP2B6 phenotypes were related to quetiapine exposure variability, which confirms (for CYP3A5) and suggests (for CYP2B6) that these enzymes play an important role in quetiapine's metabolism. Finally, the ABCG2 rs2231142 T allele was related to quetiapine accumulation. Further studies are required to confirm the clinical relevance of our findings.

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