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Clinical Pharmacokinetics and Pharmacodynamics of Nintedanib
Sven Wind1, Ulrike Schmid2, Matthias Freiwald2
1Translational Medicine and Clinical Pharmacology, Boehringer Ingelheim Pharma GmbH & Co. KG, Birkendorfer Strasse 65, 88397, Biberach an der Riss, Germany. sven.wind@boehringer-ingelheim.com.
Abstract:
Nintedanib is an oral, small-molecule tyrosine kinase inhibitor approved for the treatment of idiopathic pulmonary fibrosis and patients with advanced non-small cell cancer of adenocarcinoma tumour histology. Nintedanib competitively binds to the kinase domains of vascular endothelial growth factor (VEGF), platelet-derived growth factor (PDGF) and fibroblast growth factor (FGF). Studies in healthy volunteers and in patients with advanced cancer have shown that nintedanib has time-independent pharmacokinetic characteristics. Maximum plasma concentrations of nintedanib are reached approximately 2-4 h after oral administration and thereafter decline at least bi-exponentially. Over the investigated dose range of 50-450 mg once daily and 150-300 mg twice daily, nintedanib exposure increases are dose proportional. Nintedanib is metabolised via hydrolytic ester cleavage, resulting in the formation of the free acid moiety that is subsequently glucuronidated and excreted in the faeces. Less than 1% of drug-related radioactivity is eliminated in urine. The terminal elimination half-life of nintedanib is about 10-15 h. Accumulation after repeated twice-daily dosing is negligible. Sex and renal function have no influence on nintedanib pharmacokinetics, while effects of ethnicity, low body weight, older age and smoking are within the inter-patient variability range of nintedanib exposure and no dose adjustments are required. Administration of nintedanib in patients with moderate or severe hepatic impairment is not recommended, and patients with mild hepatic impairment should be monitored closely and the dose adjusted accordingly. Nintedanib has a low potential for drug-drug interactions, especially with drugs metabolised by cytochrome P450 enzymes. Concomitant treatment with potent inhibitors or inducers of the P-glycoprotein transporter can affect the pharmacokinetics of nintedanib. At an investigated dose of 200 mg twice daily, nintedanib does not have proarrhythmic potential.
Insights
Nintedanib, a tyrosine kinase inhibitor for idiopathic pulmonary fibrosis and advanced lung cancer, shows predictable pharmacokinetics. Dose adjustments are not needed for most factors, except in hepatic impairment.
Area of Science:
- Pharmacology
- Oncology
- Pulmonology
Background:
- Nintedanib is an oral tyrosine kinase inhibitor used for idiopathic pulmonary fibrosis and advanced non-small cell lung cancer.
- It targets vascular endothelial growth factor (VEGF), platelet-derived growth factor (PDGF), and fibroblast growth factor (FGF) receptors.
Purpose of the Study:
- To characterize the pharmacokinetic profile of nintedanib in healthy volunteers and cancer patients.
- To assess the influence of various factors on nintedanib pharmacokinetics and identify potential drug interactions.
Main Methods:
- Pharmacokinetic studies in healthy volunteers and cancer patients.
- Dose-ranging studies (50-450 mg once daily, 150-300 mg twice daily).
- Analysis of metabolism, excretion, and influence of demographic and clinical factors.
Main Results:
- Nintedanib exhibits time-independent pharmacokinetics with dose-proportional exposure.
- Metabolism occurs via ester cleavage and glucuronidation, with primary excretion in feces.
- No significant impact of sex, renal function, ethnicity, age, or smoking on pharmacokinetics; dose adjustments not required.
- Hepatic impairment necessitates caution and potential dose adjustment; low potential for CYP450 interactions.
- No proarrhythmic potential observed at 200 mg twice daily.
Conclusions:
- Nintedanib demonstrates predictable pharmacokinetics across a range of doses and patient populations.
- Nintedanib has a favorable interaction profile, with key considerations for hepatic impairment.
- The drug's pharmacokinetic characteristics support its established therapeutic uses.
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