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Preparation of Naringenin Solution for In Vivo Application
Published on: August 10, 2021
Pharmacokinetics of Dasatinib in Rats: a Potential Food-Drug Interaction with Naringenin
Mohammad Raish1, Ajaz Ahmad2, Badr Abdul Karim3
1Department of Pharmaceutics, College of Pharmacy, King Saud University, 11451, Riyadh, Saudi Arabia. mraish@ksu.edu.sa.
Background And Objectives:
The novel tyrosine kinase inhibitor (TKI) dasatinib, a multitarget inhibitor of Bcr-Abl and Src family kinases, has been licensed for the treatment of Ph+ acute lymphoblastic leukemia and chronic myeloid leukemia. Many citrus-based foods include the flavonoid naringenin, which is commonly available. Dasatinib is a Cyp3a4, P-gp, and Bcrp1 substrate, which makes it sensitive to potential food-drug interactions. The concurrent use of naringenin may change the pharmacokinetics of dasatinib, which could result in adverse effects and toxicity. The present investigation examined the impact of naringenin on the pharmacokinetics interactions of DAS and proposes a possible interaction mechanism in Wistar rats.
Methods:
Rats were provided with a single oral dose of dasatinib (25 mg/kg) with or without naringenin pretreatment (150 mg/kg p.o. daily for 7 days, n = 6 in each group). Dasatinib was quantified in plasma by UHPLC MS/MS assay. Noncompartmental analysis was used to compute the pharmacokinetic parameters, and immunoblot was used to assess the protein expression in the hepatic and intestinal tissues.
Results:
Following 7 days of naringenin pretreatment, the plasma mean concentration of dasatinib was enhanced compared with without pretreatment. In rats that were pretreated with naringenin, the pharmacokinetics of the orally administered dasatinib (25 mg/kg) was shown to be significantly different from that of dasatinib given without pretreatment (p < 0.05). There was a significant enhancement in pharmacokinetic parameters elimination half-life (T1/2), time to maximum concentration ( Tmax), maximum concentration )Cmax), area under the concentration-time curve (AUC0-t), area under the moment curve (AUMC0-∞), and mean residence time (MRT) by 28.41%, 50%, 103.54%, 72.64%, 115.08%, and 15.19%, respectively (p < 0.05) and suppression in elimination rate constant (Kel), volume of distribution (Vd), and clearance (CL) by 21.09%, 31.13%, and 46.25%, respectively, in comparison with dasatinib alone group (p < 0.05). The enhancement in dasatinib bioavailability and systemic exposure resulted from the significant inhibition of Cyp3a2, Mdr1/P-gp, and Bcrp1 expression and suppression of the dasatinib hepatic and intestinal metabolism, which enhanced the rate of dasatinib absorption and decreased its elimination.
Conclusion:
Concurrent use of naringenin-containing supplements, herbs, or foods with dasatinib may cause serious and potentially life-threatening drug interactions. Further studies are necessary to determine the clinical significance of these findings.
Insights
Naringenin pretreatment significantly increases dasatinib exposure in rats by inhibiting drug-metabolizing enzymes and transporters. This food-drug interaction highlights potential risks with concurrent use of naringenin and dasatinib.
Area of Science:
- Pharmacology
- Drug Metabolism and Pharmacokinetics
- Toxicology
Background:
- Dasatinib, a tyrosine kinase inhibitor for leukemia, is a substrate for CYP3A4, P-gp, and BCRP1.
- Naringenin, a flavonoid found in citrus fruits, may interact with drug-metabolizing enzymes and transporters.
- Potential for food-drug interactions between naringenin and dasatinib exists, possibly leading to toxicity.
Purpose of the Study:
- To investigate the pharmacokinetic interaction between naringenin and dasatinib in Wistar rats.
- To elucidate the mechanism underlying this potential food-drug interaction.
Main Methods:
- Rats received oral dasatinib (25 mg/kg) with or without 7-day naringenin pretreatment (150 mg/kg daily).
- Plasma dasatinib concentrations were measured using UHPLC-MS/MS.
- Pharmacokinetic parameters were calculated via noncompartmental analysis; protein expression of CYP3A4, P-gp, and BCRP1 was assessed by immunoblotting.
Main Results:
- Naringenin pretreatment significantly altered dasatinib pharmacokinetics (p < 0.05).
- Key parameters like Cmax, AUC0-t, and T1/2 were significantly increased, indicating enhanced exposure and bioavailability.
- Inhibition of hepatic and intestinal CYP3A2, P-gp, and BCRP1 expression was observed, suggesting a mechanism involving reduced metabolism and elimination.
Conclusions:
- Concurrent administration of naringenin with dasatinib may lead to significant drug interactions.
- These interactions can increase dasatinib exposure, potentially causing adverse effects and toxicity.
- Clinical studies are warranted to confirm the significance of these findings in human patients.
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