Drug Interactions between melatonin and Metoprolol Succinate ER
This report displays the potential drug interactions for the following 2 drugs:
- melatonin
- Metoprolol Succinate ER (metoprolol)
Interactions between your drugs
No interactions were found between melatonin and Metoprolol Succinate ER. However, this does not necessarily mean no interactions exist. Always consult your healthcare provider.
melatonin
A total of 342 drugs are known to interact with melatonin.
- Melatonin is in the following drug classes: minerals and electrolytes, miscellaneous anxiolytics, sedatives and hypnotics, nutraceutical products.
- Melatonin is used to treat the following conditions:
Metoprolol Succinate ER
A total of 544 drugs are known to interact with Metoprolol Succinate ER.
- Metoprolol succinate er is in the drug class cardioselective beta blockers.
- Metoprolol succinate er is used to treat the following conditions:
Drug and food interactions
metoprolol food
Applies to: Metoprolol Succinate ER (metoprolol)
ADJUST DOSING INTERVAL: The bioavailability of metoprolol may be enhanced by food.
MANAGEMENT: Patients may be instructed to take metoprolol at the same time each day, preferably with or immediately following meals.
References (2)
- (2001) "Product Information. Lopressor (metoprolol)." Novartis Pharmaceuticals
- Darcy PF (1995) "Nutrient-drug interactions." Adverse Drug React Toxicol Rev, 14, p. 233-54
melatonin food
Applies to: melatonin
MONITOR: Oral caffeine may significantly increase the bioavailability of melatonin. The proposed mechanism is inhibition of CYP450 1A2 first-pass metabolism. After administration of melatonin 6 mg and caffeine 200 mg orally (approximately equivalent to 1 large cup of coffee) to 12 healthy subjects, the mean peak plasma concentration (Cmax) of melatonin increased by 137% and the area under the concentration-time curve (AUC) increased by 120%. The metabolic inhibition was greater in nonsmokers (n=6) than in smokers (n=6). The greatest effect was seen in subjects with the *1F/*1F genotype (n=7), whose melatonin Cmax increased by 202%. The half-life did not change significantly. The clinical significance of this interaction is unknown.
According to some authorities, alcohol may reduce the effect of melatonin on sleep. The mechanism of this interaction is not fully understood.
In addition, CYP450 1A2 inducers like cigarette smoking may reduce exogenous melatonin plasma levels. In a small clinical trial (n=8), habitual smokers had their melatonin plasma levels measured two times, each after a single oral dose of 25 mg of melatonin. They had smoked prior to the first measurement but had not smoked for 7 days prior to the second. Cigarette smoking significantly reduced melatonin plasma exposure (AUC) as compared to melatonin levels after 7 days of smoking abstinence (7.34 +/- 1.85 versus 21.07 +/- 7.28 nmol/L*h, respectively).
MANAGEMENT: Caution and monitoring are recommended if melatonin is used with inhibitors of CYP450 1A2 like caffeine or inducers of CYP450 1A2 like cigarette smoking. Consumption of alcohol should be avoided when taking melatonin.
References (3)
- Hartter S, Nordmark A, Rose DM, Bertilsson L, Tybring G, Laine K (2003) "Effects of caffeine intake on the pharmacokinetics of melatonin, a probe drug for CYP1A2 activity." Br J Clin Pharmacol, 56, p. 679-682
- Cerner Multum, Inc. "UK Summary of Product Characteristics."
- Ursing C, Bahr CV, Brismar K, Rojdmark S (2005) "Influence of cigarette smoking on melatonin levels in man" Eur J Clin Pharmacol, 61, p. 197-201
metoprolol food
Applies to: Metoprolol Succinate ER (metoprolol)
ADJUST DOSING INTERVAL: Concurrent administration with calcium salts may decrease the oral bioavailability of atenolol and possibly other beta-blockers. The exact mechanism of interaction is unknown. In six healthy subjects, calcium 500 mg (as lactate, carbonate, and gluconate) reduced the mean peak plasma concentration (Cmax) and area under the concentration-time curve (AUC) of atenolol (100 mg) by 51% and 32%, respectively. The elimination half-life increased by 44%. Twelve hours after the combination, beta-blocking activity (as indicated by inhibition of exercise tachycardia) was reduced compared to that with atenolol alone. However, during a 4-week treatment in six hypertensive patients, there was no difference in blood pressure values between treatments. The investigators suggest that prolongation of the elimination half-life induced by calcium coadministration may have led to atenolol cumulation during long-term dosing, which compensated for the reduced bioavailability.
MANAGEMENT: It may help to separate the administration times of beta-blockers and calcium products by at least 2 hours. Patients should be monitored for potentially diminished beta-blocking effects following the addition of calcium therapy.
References (1)
- Kirch W, Schafer-Korting M, Axthelm T, Kohler H, Mutschler E (1981) "Interaction of atenolol with furosemide and calcium and aluminum salts." Clin Pharmacol Ther, 30, p. 429-35
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
Always consult your healthcare provider to ensure the information displayed on this page applies to your personal circumstances.
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