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Clinical Pharmacokinetics and Pharmacodynamics of Dabrafenib
Alicja Puszkiel1, Gaëlle Noé2, Audrey Bellesoeur3,4
1Cancer Research Center of Toulouse (CRCT), Inserm U1037, Université Paul Sabatier, Toulouse, France.
Abstract:
Dabrafenib is a potent and selective inhibitor of BRAF-mutant kinase that is approved, as monotherapy or in combination with trametinib (mitogen-activated protein kinase (MAPK) kinase (MEK) inhibitor), for unresectable or metastatic BRAF-mutated melanoma, advanced non-small cell lung cancer and anaplastic thyroid cancer harbouring the BRAFV600E mutation. The recommended dose of dabrafenib is 150 mg twice daily (bid) under fasted conditions. After single oral administration of the recommended dose, the absolute oral bioavailability (F) of dabrafenib is 95%. Dabrafenib shows a time-dependent increase in apparent clearance (CL/F) following multiple doses, which is likely due to induction of its own metabolism through cytochrome P450 (CYP) 3A4. Therefore, steady state is reached only after 14 days of daily dose administration. Moreover, the extent of this auto-induction process is dependent on the dose, which explains why dabrafenib systemic exposure at steady state increases less than dose proportionally over the dose range of 75-300 mg bid. The main elimination route of dabrafenib is the oxidative metabolism via CYP3A4/2C8 and biliary excretion. Among the three major metabolites identified, hydroxy-dabrafenib appears to contribute to the pharmacological activity. Age, sex and body weight did not have any clinically significant influence on plasma exposure to dabrafenib. No dose adjustment is needed for patients with mild renal or hepatic impairment, whereas the impacts of severe impairment on dabrafenib pharmacokinetics remain unknown. Considering that dabrafenib is a substrate of CYP3A4/2C8 and is a CYP3A4/2B6/2C inducer, drug-drug interactions are expected with dabrafenib. The relationship between clinical outcomes and plasma exposure to dabrafenib and hydroxy-dabrafenib should be investigated more deeply.
Insights
Dabrafenib, a BRAF inhibitor, shows dose-dependent auto-induction of its metabolism, requiring 14 days to reach steady state. Its pharmacokinetics are unaffected by age, sex, or weight, but drug interactions are anticipated.
Area of Science:
- Pharmacology
- Oncology
- Drug Metabolism
Background:
- Dabrafenib is approved for BRAF-mutant cancers, including melanoma, NSCLC, and anaplastic thyroid cancer.
- It is administered as 150 mg twice daily under fasted conditions.
- Absolute oral bioavailability is high (95%).
Purpose of the Study:
- To characterize the pharmacokinetic profile of dabrafenib.
- To investigate factors influencing dabrafenib exposure.
- To identify potential drug-drug interactions.
Main Methods:
- Pharmacokinetic analysis of dabrafenib following oral administration.
- Assessment of time-dependent changes in apparent clearance.
- Evaluation of metabolic pathways and elimination routes.
Main Results:
- Dabrafenib exhibits time-dependent auto-induction of its metabolism via CYP3A4, leading to steady state after 14 days.
- Systemic exposure increases less than dose proportionally due to auto-induction.
- Metabolism occurs via CYP3A4/2C8, with hydroxy-dabrafenib contributing to activity. Age, sex, and body weight have no significant impact.
Conclusions:
- Dabrafenib's pharmacokinetic profile is characterized by auto-induction and metabolism via CYP3A4/2C8.
- No dose adjustments are needed for mild renal or hepatic impairment.
- Potential for drug-drug interactions exists due to dabrafenib's substrate and inducer properties.
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