Drug Interactions between Elavil and quizartinib
This report displays the potential drug interactions for the following 2 drugs:
- Elavil (amitriptyline)
- quizartinib
Interactions between your drugs
amitriptyline quizartinib
Applies to: Elavil (amitriptyline) and quizartinib
GENERALLY AVOID: Quizartinib can cause dose- and concentration-dependent prolongation of the QT interval. Theoretically, coadministration with other agents that can prolong the QT interval may increase the risk of ventricular arrhythmias including torsade de pointes and sudden death. In a clinical study where 265 patients with newly diagnosed FLT3-ITD-positive acute myeloid leukemia (AML) were treated with quizartinib (38% for >=6 months; 30% for >1 year) in combination with chemotherapy, 2.3% had a Fridericia-corrected QT interval (QTcF) greater than 500 ms and 10% had a QTcF increase from baseline greater than 60 ms. Overall, QT prolongation of any grade occurred in 14% of the quizartinib patients (compared to 4.1% of patients treated with placebo and chemotherapy), and 4% required dose reductions of quizartinib due to QT prolongation. The study excluded patients with a QTcF >=450 ms or other risk factors for QT prolongation or arrhythmic events. Based on an analysis of the exposure-response relationship, quizartinib is predicted to produce a median increase of 18 and 24 ms in the QTcF at steady-state peak plasma concentration during maintenance therapy at the 26.5 mg and 53 mg dose levels, respectively. Across premarketing clinical trials, torsade de pointes arrhythmia was reported in approximately 0.2%, cardiac arrest in 0.6% (including 0.4% with a fatal outcome), and ventricular fibrillation in 0.1% of the total 1,081 patients with AML treated with quizartinib. These severe cardiac events occurred predominantly during the induction phase. In general, the risk of an individual agent or a combination of agents causing ventricular arrhythmia in association with QT prolongation is largely unpredictable but may be increased by certain underlying risk factors such as congenital long QT syndrome, cardiac disease, and electrolyte disturbances (e.g., hypokalemia, hypomagnesemias). In addition, the extent of drug-induced QT prolongation is dependent on the particular drug(s) involved and dosage(s) of the drug(s).
MANAGEMENT: Coadministration of quizartinib with other drugs that can prolong the QT interval should generally be avoided. If concomitant use is required, more frequent monitoring with electrocardiograms (ECGs) is recommended to guide continued treatment. All patients treated with quizartinib should have ECGs performed as well as potassium and magnesium serum levels measured prior to initiation of treatment, at regular intervals during treatment, and when clinically indicated such as following dose escalation or during episodes of diarrhea or vomiting. Do not initiate quizartinib or escalate the dose if QTcF interval is greater than 450 ms. In addition, hypokalemia and hypomagnesemia should be corrected before and during treatment. If QTcF increases to greater than 480 ms during treatment, reduce the dose, interrupt therapy, or permanently discontinue quizartinib as clinically appropriate in accordance with the prescribing information. Patients should be advised to seek prompt medical attention if they experience symptoms that could indicate the occurrence of torsade de pointes such as dizziness, lightheadedness, fainting, palpitation, irregular heart rhythm, shortness of breath, or syncope. Quizartinib should be permanently discontinued in patients who experience torsade de pointes, polymorphic ventricular tachycardia, or QT prolongation with signs or symptoms of life-threatening arrhythmia.
References (1)
- (2023) "Product Information. Vanflyta (quizartinib)." Daiichi Sankyo, Inc.
Drug and food interactions
amitriptyline food
Applies to: Elavil (amitriptyline)
GENERALLY AVOID: Concomitant use of ethanol and a tricyclic antidepressant (TCA) may result altered TCA plasma levels and efficacy, and additive impairment of motor skills, especially driving skills. Acute ethanol ingestion may inhibit TCA metabolism, while chronic ingestion of large amounts of ethanol may induce hepatic TCA metabolism.
MANAGEMENT: Patients should be advised to avoid alcohol during TCA therapy. Alcoholics who have undergone detoxification should be monitored for decreased TCA efficacy. Dosage adjustments may be required.
References (7)
- Dorian P, Sellers EM, Reed KL, et al. (1983) "Amitriptyline and ethanol: pharmacokinetic and pharmacodynamic interaction." Eur J Clin Pharmacol, 25, p. 325-31
- Warrington SJ, Ankier SI, Turner P (1986) "Evaluation of possible interactions between ethanol and trazodone or amitriptyline." Neuropsychobiology, 15, p. 31-7
- Sandoz M, Vandel S, Vandel B, Bonin B, Allers G, Volmat R (1983) "Biotransformation of amitriptyline in alcoholic depressive patients." Eur J Clin Pharmacol, 24, p. 615-21
- Ciraulo DA, Barnhill JG, Jaffe JH (1988) "Clinical pharmacokinetics of imipramine and desipramine in alcoholics and normal volunteers." Clin Pharmacol Ther, 43, p. 509-18
- Seppala T, Linnoila M, Elonen E, Mattila MJ, Makl M (1975) "Effect of tricyclic antidepressants and alcohol on psychomotor skills related to driving." Clin Pharmacol Ther, 17, p. 515-22
- Ciraulo DA, Barnhill JG, Jaffe JH, Ciraulo AM, Tarmey MF (1990) "Intravenous pharmacokinetics of 2-hydroxyimipramine in alcoholics and normal controls." J Stud Alcohol, 51, p. 366-72
- Ciraulo DA, Alderson LM, Chapron DJ, Jaffe JH, Subbarao B, Kramer PA (1982) "Imipramine disposition in alcoholics." J Clin Psychopharmacol, 2, p. 2-7
amitriptyline food
Applies to: Elavil (amitriptyline)
MONITOR: Smoking cessation may lead to elevated plasma concentrations and enhanced pharmacologic effects of drugs that are substrates of CYP450 1A2 (and possibly CYP450 1A1) and/or certain drugs with a narrow therapeutic index (e.g., flecainide, pentazocine). One proposed mechanism is related to the loss of CYP450 1A2 and 1A1 induction by polycyclic aromatic hydrocarbons in tobacco smoke; when smoking cessation agents are initiated and smoking stops, the metabolism of certain drugs may decrease leading to increased plasma concentrations. The mechanism by which smoking cessation affects narrow therapeutic index drugs that are not known substrates of CYP450 1A2 or 1A1 is unknown. The clinical significance of this interaction is unknown as clinical data are lacking.
MANAGEMENT: Until more information is available, caution is advisable if smoking cessation agents are used concomitantly with drugs that are substrates of CYP450 1A2 or 1A1 and/or those with a narrow therapeutic range. Patients receiving smoking cessation agents may require periodic dose adjustments and closer clinical and laboratory monitoring of medications that are substrates of CYP450 1A2 or 1A1.
References (4)
- (2024) "Product Information. Cytisine (cytisinicline)." Consilient Health Ltd
- jeong sh, Newcombe D, sheridan j, Tingle M (2015) "Pharmacokinetics of cytisine, an a4 b2 nicotinic receptor partial agonist, in healthy smokers following a single dose." Drug Test Anal, 7, p. 475-82
- Vaughan DP, Beckett AH, Robbie DS (1976) "The influence of smoking on the intersubject variation in pentazocine elimination." Br J Clin Pharmacol, 3, p. 279-83
- Zevin S, Benowitz NL (1999) "Drug interactions with tobacco smoking: an update" Clin Pharmacokinet, 36, p. 425-38
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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