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Pharmacokinetic Drug Interaction between Tofacitinib and Voriconazole in Rats
Ji-Sang Lee1, Hyo-Sung Kim1, Yong-Seob Jung1
1College of Pharmacy and Research Institute of Pharmaceutical Science and Technology, Ajou University, Suwon 16499, Korea.
Abstract:
Fungal infections are prevalent in patients with immune diseases. Voriconazole, a triazole antifungal drug, inhibits the cytochromes CYP3A4 and CYP2C, and tofacitinib, a Janus kinase inhibitor for the treatment of rheumatoid arthritis, is metabolized by CYP3A4 and CYP2C19 in humans. Here, we investigated their interaction during simultaneous administration of both drugs to rats, either intravenously or orally. The area under the plasma concentration-time curve from time zero to time infinity (AUC) of tofacitinib was significantly greater, by 166% and 171%, respectively, and the time-averaged non-renal clearance (CLNR) of tofacitinib was significantly slower (59.5%) than that for tofacitinib alone. An in vitro metabolism study showed non-competitive inhibition of tofacitinib metabolism in the liver and intestine by voriconazole. The concentration/apparent inhibition constant (Ki) ratios of voriconazole were greater than two, indicating that the inhibition of tofacitinib metabolism could be due to the inhibition of the CYP3A1/2 and CYP2C11 enzymes by voriconazole. The pharmacokinetics of voriconazole were not affected by the co-administration of tofacitinib. In conclusion, the significantly greater AUC and slower CLNR of tofacitinib after intravenous and oral administration of both drugs were attributable to the non-competitive inhibition of tofacitinib metabolism via CYP3A1/2 and CYP2C11 by voriconazole in rats.
Insights
Voriconazole significantly increases tofacitinib levels in rats by inhibiting its metabolism. This drug interaction, observed with simultaneous administration, highlights potential risks for patients on both medications.
Area of Science:
- Pharmacology
- Drug Metabolism
- Drug Interactions
Background:
- Fungal infections are common in immunocompromised patients.
- Voriconazole (antifungal) inhibits CYP3A4/CYP2C enzymes.
- Tofacitinib (rheumatoid arthritis treatment) is metabolized by CYP3A4/CYP2C19.
Purpose of the Study:
- To investigate the pharmacokinetic interaction between voriconazole and tofacitinib.
- To determine the effect of co-administration on drug levels and metabolism in rats.
Main Methods:
- Simultaneous intravenous and oral administration of voriconazole and tofacitinib to rats.
- Pharmacokinetic analysis, including area under the curve (AUC) and non-renal clearance (CLNR).
- In vitro metabolism studies to assess inhibition of tofacitinib metabolism by voriconazole.
Main Results:
- Tofacitinib's AUC significantly increased (166-171%) and CLNR slowed (59.5%) when co-administered with voriconazole.
- Voriconazole non-competitively inhibited tofacitinib metabolism in vitro, likely via CYP3A1/2 and CYP2C11.
- Voriconazole pharmacokinetics were unaffected by tofacitinib co-administration.
Conclusions:
- Voriconazole significantly alters tofacitinib pharmacokinetics in rats.
- The interaction is due to voriconazole-mediated inhibition of tofacitinib metabolism by specific cytochrome P450 enzymes.
- Findings suggest potential for significant drug-drug interactions in clinical settings.
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