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.

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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