Drug Interactions between fedratinib and mirtazapine
This report displays the potential drug interactions for the following 2 drugs:
- fedratinib
- mirtazapine
Interactions between your drugs
mirtazapine fedratinib
Applies to: mirtazapine and fedratinib
MONITOR: Coadministration of mirtazapine with drugs that inhibit one or more of its metabolic pathways may result in increased plasma concentrations of mirtazapine. In vitro data from human liver microsomes indicate that CYP450 2D6 and 1A2 are involved in the formation of the 8-hydroxy metabolite, while CYP450 3A4 is primarily responsible for the formation of the N-desmethyl and N-oxide metabolites. When cimetidine, a weak inhibitor of CYP450 1A2, 2D6 and 3A4, was given at 800 mg twice daily for 14 days to twelve healthy male subjects in combination with mirtazapine 30 mg once daily on days 6 to 12, mean steady-state mirtazapine peak plasma concentration (Cmax) and systemic exposure (AUC) increased by 22% and 54%, respectively. Mirtazapine had no effect on the pharmacokinetics of cimetidine. In another study with 24 healthy male Caucasian subjects, administration of the potent CYP450 3A4 inhibitor ketoconazole at 200 mg twice daily for 6.5 days increased Cmax and AUC of a single 30 mg dose of mirtazapine by approximately 40% and 50%, respectively. A case report described increases in serum mirtazapine concentrations of three- to fourfold in two patients following the addition of fluvoxamine, a potent CYP450 1A2 and weak CYP450 2D6/3A4 inhibitor. One patient reported feeling more anxious with the combination.
MANAGEMENT: The possibility of prolonged and/or increased pharmacologic effects of mirtazapine should be considered during coadministration of drugs that inhibit CYP450 1A2, 2D6 and/or 3A4. Therapeutic response to mirtazapine should be monitored more closely following initiation, discontinuation, or dosing change of CYP450 inhibitors, and the mirtazapine dosage adjusted as necessary. A prolonged duration of monitoring for adverse effects may be required depending on the elimination half-life of the concomitant drug. For example, it should be noted that rolapitant, a moderate CYP450 2D6 inhibitor, can increase plasma concentrations and the risk of adverse effects of mirtazapine for at least 28 days after administration of rolapitant.
References (5)
- (2001) "Product Information. Remeron (mirtazapine)." Organon
- Sitsen JM, Maris FA, Timmer CJ (2000) "Concomitant use of mirtazapine and cimetidine: a drug-drug interaction study in healthy male subjects." Eur J Clin Pharmacol, 56, p. 389-94
- Okubo M, Murayama N, Miura J, Chiba Y, Yamazaki H (2015) "Effects of cytochrome P450 2D6 and 3A5 genotypes and possible coadministered medicines on the metabolic clearance of antidepressant mirtazapine in Japanese patients." Biochem Pharmacol, 93, p. 104-9
- (2015) "Product Information. Varubi (rolapitant)." Tesaro Inc.
- Stormer E, von Moltke LL, Shader RI, Greenblatt DJ (2000) "Metabolism of the antidepressant mirtazapine in vitro: contribution of cytochromes P-450 1A2, 2D6, and 3A4" Drug Metab Dispos, 28, p. 1168-75
Drug and food interactions
mirtazapine food
Applies to: mirtazapine
GENERALLY AVOID: Alcohol may potentiate some of the pharmacologic effects of CNS-active agents. Use in combination may result in additive central nervous system depression and/or impairment of judgment, thinking, and psychomotor skills.
MANAGEMENT: Patients receiving CNS-active agents should be warned of this interaction and advised to avoid or limit consumption of alcohol. Ambulatory patients should be counseled to avoid hazardous activities requiring complete mental alertness and motor coordination until they know how these agents affect them, and to notify their physician if they experience excessive or prolonged CNS effects that interfere with their normal activities.
References (4)
- Warrington SJ, Ankier SI, Turner P (1986) "Evaluation of possible interactions between ethanol and trazodone or amitriptyline." Neuropsychobiology, 15, p. 31-7
- Gilman AG, eds., Nies AS, Rall TW, Taylor P (1990) "Goodman and Gilman's the Pharmacological Basis of Therapeutics." New York, NY: Pergamon Press Inc.
- (2012) "Product Information. Fycompa (perampanel)." Eisai Inc
- (2015) "Product Information. Rexulti (brexpiprazole)." Otsuka American Pharmaceuticals Inc
fedratinib food
Applies to: fedratinib
GENERALLY AVOID: Grapefruit juice may increase the plasma concentrations of fedratinib. The proposed mechanism is inhibition of CYP450 3A4-mediated first-pass metabolism in the gut wall by certain compounds present in grapefruit. Inhibition of hepatic CYP450 3A4 may also contribute. The interaction has not been studied with grapefruit juice, but has been reported for other CYP450 3A4 inhibitors. When a single 300 mg oral dose of fedratinib (0.75 times the recommended dose) was coadministered with 200 mg twice daily ketoconazole, a potent CYP450 3A4 inhibitor, fedratinib total systemic exposure (AUC(inf)) increased by approximately 3-fold. Using physiologically based pharmacokinetic (PBPK) simulations, coadministration of fedratinib 400 mg once daily and ketoconazole 400 mg once daily is predicted to increase fedratinib AUC at steady state by 2-fold. Coadministration with the moderate CYP450 3A4 inhibitors, erythromycin (500 mg three times daily) or diltiazem (120 mg twice daily), is predicted to increase fedratinib AUC by approximately 1.5- to 2-fold following single-dose administration and by approximately 1.2-fold at steady state. In general, the effect of grapefruit juice is concentration-, dose- and preparation-dependent, and can vary widely among brands. Certain preparations of grapefruit juice (e.g., high dose, double strength) have sometimes demonstrated potent inhibition of CYP450 3A4, while other preparations (e.g., low dose, single strength) have typically demonstrated moderate inhibition. Increased fedratinib exposure may potentiate the risk of adverse reactions such as nausea, vomiting, diarrhea, anemia, thrombocytopenia, neutropenia, encephalopathy (including Wernicke's), liver (ALT, AST) and pancreatic (amylase, lipase) enzyme elevations, increased blood creatinine, and secondary malignancies.
Food does not affect the oral bioavailability of fedratinib to a clinically significant extent. Administration of a single 500 mg dose (1.25 times the recommended dose) with a low-fat, low-calorie meal (162 calories; 6% from fat, 78% from carbohydrate, 16% from protein) or a high-fat, high-calorie meal (815 calories; 52% from fat, 33% from carbohydrate, 15% from protein) increased fedratinib peak plasma concentration (Cmax) and systemic exposure (AUC) by up to 14% and 24%, respectively.
MANAGEMENT: Fedratinib may be taken with or without food. However, administration with a high-fat meal may help reduce the incidence of nausea and vomiting. Patients should avoid consumption of grapefruit and grapefruit juice during treatment with fedratinib.
References (3)
- Wu F, Krishna G, Surapaneni S (2020) "Physiologically based pharmacokinetic modeling to assess metabolic drug-drug interaction risks and inform the drug label for fedratinib." Cancer Chemother Pharmacol, 86, p. 461-73
- (2022) "Product Information. Inrebic (fedratinib)." Bristol-Myers Squibb
- (2021) "Product Information. Inrebic (fedratinib)." Bristol-Myers Squibb Pharmaceuticals Ltd
Therapeutic duplication warnings
No warnings were found for your selected drugs.
Therapeutic duplication warnings are only returned when drugs within the same group exceed the recommended therapeutic duplication maximum.
See also
Drug Interaction Classification
Highly clinically significant. Avoid combinations; the risk of the interaction outweighs the benefit. | |
Moderately clinically significant. Usually avoid combinations; use it only under special circumstances. | |
Minimally clinically significant. Minimize risk; assess risk and consider an alternative drug, take steps to circumvent the interaction risk and/or institute a monitoring plan. | |
No interaction information available. |
Further information
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