Drug Interactions between adenosine and ponesimod
This report displays the potential drug interactions for the following 2 drugs:
- adenosine
- ponesimod
Interactions between your drugs
adenosine ponesimod
Applies to: adenosine and ponesimod
GENERALLY AVOID: Due to its significant bradycardic effects, the risk of QT prolongation and torsade de pointes arrhythmia may be increased during initiation of ponesimod treatment in patients receiving drugs that prolong the QT interval. Posenimod can cause a transient decrease in heart rate during initiation of therapy that is usually apparent within an hour of the first dose and reaches its nadir within 2 to 4 hours. The heart rate typically recovers to baseline levels 4 to 5 hours after administration, and the effect diminishes with repeated dosing on subsequent days, indicating tolerance. In an active-controlled clinical study, bradycardia at treatment initiation and sinus bradycardia on ECG (defined as heart rate less than 50 bpm) occurred in 5.8% of ponesimod-treated patients compared to 1.6% of patients receiving teriflunomide. The mean decrease in heart rate on day 1 of ponesimod dosing was 6 bpm. Following day 1, decreases in heart rate were less pronounced. Post-dose heart rates below or equal to 40 bpm were rarely observed. However, decreases in heart rate induced by ponesimod can be reversed by atropine if necessary. Initiation of ponesimod treatment has also resulted in transient AV conduction delays that follow a similar temporal pattern as that observed for decreases in heart rate during dose titration. In the same study, first-degree AV block (prolonged PR interval on ECG) occurred in 3.4% of ponesimod-treated patients and 1.2% of patients receiving teriflunomide. Second- and third-degree AV blocks were not reported in patients treated with ponesimod. Overall, bradycardia and conduction abnormalities were usually transient and asymptomatic, and resolved within the first 24 hours without intervention or discontinuation of ponesimod treatment. In a study evaluating the effect on QT interval of ponesimod 40 mg and 100 mg (respectively 2- and 5-fold the recommended maintenance dose) administered until steady-state, ponesimod treatment resulted in maximum mean prolongations of the QTcF of 11.8 ms (40 mg) and 16.2 ms (100 mg). No subject had absolute QTcF greater than 480 ms or change in QTcF from baseline greater than 90 ms following ponesimod treatment. 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: Ponesimod 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 ponesimod 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 ponesimod 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.
References (1)
- (2021) "Product Information. Ponvory (ponesimod)." Janssen Pharmaceuticals
Drug and food interactions
adenosine food
Applies to: adenosine
ADJUST DOSING INTERVAL: Caffeine and other xanthine derivatives (e.g., theophylline) are nonspecific, competitive antagonists of adenosine receptors and may interfere with the hemodynamic effects of adenosine. There have been case reports of patients receiving theophylline who required higher than normal dosages of adenosine for the treatment of paroxysmal supraventricular tachycardia. In studies of healthy volunteers, caffeine and theophylline have been shown to reduce the cardiovascular response to adenosine infusions (i.e., heart rate increases, vasodilation, blood pressure changes), and theophylline has also been shown to attenuate adenosine-induced respiratory effects and chest pain/discomfort.
MANAGEMENT: Clinicians should be aware that adenosine may be less effective in the presence of xanthine derivatives including caffeine. Patients should avoid consumption of caffeine-containing products for at least 12 hours, preferably 24 hours, prior to administration of adenosine for myocardial perfusion imaging.
References (6)
- Conti CR (1991) "Adenosine: clinical pharmacology and applications." Clin Cardiol, 14, p. 91-3
- Smits P, Schouten J, Thien T (1987) "Respiratory stimulant effects of adenosine in man after caffeine and enprofylline." Br J Clin Pharmacol, 24, p. 816-9
- Minton NA, Henry JA (1991) "Pharmacodynamic interactions between infused adenosine and oral theophylline." Hum Exp Toxicol, 10, p. 411-8
- (2001) "Product Information. Adenocard (adenosine)." Fujisawa
- "Multum Information Services, Inc. Expert Review Panel"
- (2001) "Product Information. Adenoscan (adenosine)." Fujisawa
adenosine food
Applies to: adenosine
ADJUST DOSING INTERVAL: Methylxanthines (e.g., caffeine, theophylline) are nonspecific, competitive antagonists of adenosine receptors. As such, they may interfere with the pharmacologic effects of adenosine and other adenosine receptor agonists such as dipyridamole and regadenoson. There have been case reports of patients receiving theophylline who required higher than normal dosages of adenosine for the treatment of paroxysmal supraventricular tachycardia. In studies of healthy volunteers, caffeine and theophylline have been shown to reduce the cardiovascular response to adenosine infusions (i.e., heart rate increases, vasodilation, blood pressure changes), and theophylline has also been shown to attenuate adenosine-induced respiratory effects and chest pain/discomfort. Similarly, caffeine has been found to reduce the hemodynamic response to dipyridamole, and both caffeine and theophylline have been reported to cause false-negative results in myocardial scintigraphy tests using dipyridamole. In a placebo-controlled study that assessed the effects of oral caffeine on regadenoson-induced increase in coronary flow reserve (CFR), healthy subjects who took caffeine 200 mg orally two hours prior to regadenoson administration exhibited a median CFR that was 92% that of subjects who took placebo. The study was done using positron emission tomography with radiolabeled water.
MANAGEMENT: Clinicians should be aware that adenosine and other adenosine receptor agonists may be less effective in the presence of methylxanthines. Methylxanthines including caffeine should be withheld for 12 to 24 hours (or five half-lives) prior to administration of adenosine receptor agonists for myocardial perfusion imaging. However, parenteral aminophylline should be readily available for treating severe or persistent adverse reactions to adenosine receptor agonists such as bronchospasm or chest pain.
References (9)
- Conti CR (1991) "Adenosine: clinical pharmacology and applications." Clin Cardiol, 14, p. 91-3
- Smits P, Aengevaeren WR, Corstens FH, Thien T (1989) "Caffeine reduces dipyridamole-induced myocardial ischemia." J Nucl Med, 30, p. 1723-6
- Smits P, Schouten J, Thien T (1987) "Respiratory stimulant effects of adenosine in man after caffeine and enprofylline." Br J Clin Pharmacol, 24, p. 816-9
- Minton NA, Henry JA (1991) "Pharmacodynamic interactions between infused adenosine and oral theophylline." Hum Exp Toxicol, 10, p. 411-8
- (2002) "Product Information. Persantine (dipyridamole)." Boehringer-Ingelheim
- (2001) "Product Information. Adenocard (adenosine)." Fujisawa
- Ranhosky A, Kempthorne-Rawson J, the Intravenous Dipyridamole Thallium Imaging Study Group (1990) "The safety of intravenous dipyridamole thallium myocardial perfusion imaging." Circulation, 81, p. 1205-9
- (2001) "Product Information. Adenoscan (adenosine)." Fujisawa
- (2008) "Product Information. Lexiscan (regadenoson)." Astellas Pharma US, Inc
adenosine food
Applies to: adenosine
Nicotine may enhance adenosine-associated tachycardia and chest pain. The mechanism is not known. No special precautions appear to be necessary.
References (2)
- Smits P, Eijsbouts A, Thien T (1989) "Nicotine enhances the circulatory effects of adenosine in human beings." Clin Pharmacol Ther, 46, p. 272-8
- Sylven C, Beermann B, Kaijser L, Jonzon B (1990) "Nicotine enhances angina pectoris-like chest pain and atriovenricular blockade provoked by intravenous bolus of adenosine in healthy volunteers." J Cardiovasc Pharmacol, 16, p. 962-5
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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