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2025 article

A Physiologically-Based Pharmacokinetic Model to Characterize Dasotraline Pharmacokinetics and CYP-mediated Drug-Drug Interactions

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INTRODUCTION: : 0.14). Dasotraline is not a CYP inducer but is an inhibitor of CYP2B6, CYP2C19, CYP2D6, and CYP3A4/5. METHODS: A dasotraline PBPK model was established by a middle-out approach based on in vitro and clinical results. Simulations were performed to evaluate CYP-mediated drugdrug interactions (DDI) with dasotraline as a victim and perpetrator, the impact of polymorphic CYP2B6 on dasotraline PK, as well as the role CYP2B6 autoinhibition on dasotraline accumulation at steady state. RESULTS: The PBPK model well described clinically observed PK not only after a single dose, but also predicted substantial accumulation of dasotraline due to auto-inhibition of CYP2B6-mediated clearance. In addition, the simulated CYP2B6-mediated DDI precisely depicted the clinically observed DDI. Although hepatic elimination of dasotraline is primarily mediated by CYP2B6, simulations suggest that the impact of CYP2B6 polymorphism on pharmacokinetics is minimal, likely due to compensatory auto-inhibition of the enzyme. As a result, dose adjustment based on CYP2B6 phenotype is likely unnecessary. DISCUSSION: A PBPK model was developed via the middle-out approach to predict CYPmediated DDI with dasotraline as either a victim or a perpetrator and the impact of polymorphic CYP2B6 on dasotraline PK. The PBPK model was developed assuming the hepatic metabolism of dasotraline is only determined by CYP enzymes based on the in vitro studies. Although the minor contribution of non-CYP enzymes may not be ruled out, the simulations on CYP mediated DDI with dasotraline as the victim will unlikely be significantly different. CONCLUSION: The PBPK model developed via the middle-out approach provides a quantitative tool to predict CYP-mediated DDI with dasotraline as either a victim or a perpetrator and the impact of polymorphic CYP2B6 on dasotraline PK. This model may aid in optimizing dosing strategies to minimize the risks associated with CYP-mediated interactions and significant accumulation following repeated dosing.

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DOI retrouvé dans Crossref DOI retrouvé ; titre concordant.

Titre Crossref
A Physiologically-Based Pharmacokinetic Model to Characterize Dasotraline Pharmacokinetics and CYP-mediated Drug-Drug Interactions
Date Crossref
01/07/2025
Éditeur
Bentham Science Publishers Ltd.
Type
journal-article

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Institutions déclarées

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