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Drug Interactions between glasdegib and siponimod

This report displays the potential drug interactions for the following 2 drugs:

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Major

glasdegib siponimod

Applies to: glasdegib and siponimod

GENERALLY AVOID: Due to its significant bradycardic effects, the risk of QT prolongation and torsade de pointes arrhythmia may be increased during initiation of siponimod treatment in patients receiving drugs that prolong the QT interval. Siponimod can cause a decrease in heart rate during initiation of therapy that is apparent within an hour of the first dose, and the day 1 decline is maximal at approximately 3 to 4 hours. The maximal decrease in heart rate from baseline was seen between day 5 and 6. After day 6, heart rate starts increasing and reaches placebo levels within 10 days after treatment initiation. The highest daily post-dose decrease in absolute hourly mean heart rate is observed on day 1, with a decrease of 5 to 6 bpm. Following day 1, decreases in heart rate are less pronounced. Heart rates below 40 bpm were rarely observed. In controlled clinical trials, bradycardia (including sinus bradycardia and decreased heart rate) occurred in 6% of siponimod-treated patients compared to 3% of patients receiving placebo. Initiation of siponimod treatment has also resulted in transient AV conduction delays. First-degree AV block (prolonged PR interval on ECG) occurred in 5.1% of siponimod-treated patients and 1.9% of patients receiving placebo. Second-degree AV blocks, usually Mobitz type I (Wenckebach), have been observed at the time of siponimod initiation in less than 1.7% of patients. Bradycardia and conduction abnormalities were usually transient and asymptomatic, and resolved within the first 24 hours, but they occasionally required treatment with atropine. In a study evaluating the effect on QT interval of siponimod 2 or 10 mg at steady-state, siponimod treatment resulted in maximum prolongations of the QTc of 7.8 and 7.2 msec, respectively, with upper bounds of the 90% confidence interval of 9.93 and 9.72 msec, respectively. 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, hypomagnesemia). 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: Siponimod has not been studied in patients receiving drugs that can prolong the QT interval. Because bradycardia and AV block are recognized risk factors for QT prolongation and torsade de pointes arrhythmia, treatment with siponimod should generally not be initiated in patients who are concurrently treated with QT prolonging drugs with known arrhythmogenic properties. Advice from a cardiologist should be sought if treatment with siponimod is considered in patients on concurrent therapy with QT prolonging drugs with a known risk of torsades de pointes or drugs that slow heart rate or AV conduction.

MONITOR CLOSELY: Coadministration of siponimod with antineoplastic, immunosuppressive, or other immune-modulating therapies may increase the risk of unintended additive immunosuppressive effects. Siponimod causes reversible sequestration of lymphocytes in lymphoid tissues. When administered daily, siponimod produces a dose-dependent reduction in peripheral lymphocyte count to 20% to 30% of baseline values, which may increase the risk of infections. Life-threatening and rare fatal infections have occurred in association with siponimod. Decreased lymphocyte counts persist during chronic daily dosing and generally return to normal within 10 days after stopping the medication. Pharmacodynamic effects, such as decreased peripheral lymphocytes, may persist for 3 to 4 weeks after the last dose, and as a result, use of immunosuppressants during this time may also lead to additive immune effects.

MANAGEMENT: The safety and efficacy of siponimod in combination with antineoplastic, immunosuppressive, or immune-modulating agents have not been evaluated. Caution is advised during coadministration and for 3 to 4 weeks after the last dose of siponimod. When switching from drugs with prolonged immune effects to siponimod, the half-life and mode of action of these drugs must be considered to avoid unintended additive immunosuppressive effects while at the same time minimizing risk of disease reactivation.

References

  1. Cerner Multum, Inc. "Australian Product Information."
  2. (2019) "Product Information. Mayzent (siponimod)." Novartis Pharmaceuticals

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Drug and food interactions

Moderate

glasdegib food

Applies to: glasdegib

GENERALLY AVOID: Coadministration with grapefruit or grapefruit juice may increase the plasma concentrations of glasdegib. The proposed mechanism is inhibition of CYP450 3A4-mediated first-pass metabolism in the gut wall induced by certain compounds present in grapefruit. When glasdegib was coadministered with ketoconazole, a potent CYP450 3A4 inhibitor, glasdegib peak plasma concentration (Cmax) and systemic exposure (AUC) increased by 1.4- and 2.4-fold, respectively, compared to administration of glasdegib alone. The interaction has not been studied with other, less potent CYP450 3A4 inhibitors. Because grapefruit juice inhibits primarily intestinal rather than hepatic CYP450 3A4, the magnitude of interaction is greatest for those drugs that undergo significant presystemic metabolism by CYP450 3A4 (i.e., drugs with low oral bioavailability). 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. Pharmacokinetic interactions involving grapefruit juice are also subject to a high degree of interpatient variability, thus the extent to which a given patient may be affected is difficult to predict.

When administered with a high-fat, high-calorie meal (800 to 1000 total calories, 500 to 600 fat calories, 250 carbohydrate calories, and 150 protein calories), glasdegib Cmax and AUC decreased by 31% and 16%, respectively.

MANAGEMENT: Glasdegib may be administered with or without food. Coadministration of grapefruit or grapefruit juice with glasdegib should preferably be avoided.

References

  1. (2023) "Product Information. Daurismo (glasdegib)." Pfizer U.S. Pharmaceuticals Group
  2. (2022) "Product Information. Daurismo (glasdegib)." Pfizer Ltd
  3. (2022) "Product Information. Daurismo (glasdegib)." Pfizer Canada ULC

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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.


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Drug Interaction Classification

These classifications are only a guideline. The relevance of a particular drug interaction to a specific individual is difficult to determine. Always consult your healthcare provider before starting or stopping any medication.
Major Highly clinically significant. Avoid combinations; the risk of the interaction outweighs the benefit.
Moderate Moderately clinically significant. Usually avoid combinations; use it only under special circumstances.
Minor 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.
Unknown No interaction information available.

Further information

Always consult your healthcare provider to ensure the information displayed on this page applies to your personal circumstances.