Drug Interactions between amprenavir and methadone
This report displays the potential drug interactions for the following 2 drugs:
- amprenavir
- methadone
Interactions between your drugs
methadone amprenavir
Applies to: methadone and amprenavir
GENERALLY AVOID: Coadministration of amprenavir and methadone may result in decreased plasma concentrations of both drugs. The exact mechanism of interaction has not been described. In 16 subjects treated with methadone (44 to 100 mg daily for at least 30 days) and amprenavir (1200 mg twice a day for 10 days), mean peak plasma concentration (Cmax), systemic exposure (AUC) and trough plasma concentration (Cmin) of the active R(+) enantiomer of methadone were reduced by 25%, 13% and 21%, respectively, compared to administration of methadone alone. The combination was also associated with a 27%, 30% and 25% decrease in serum amprenavir Cmax, AUC and Cmin, respectively, compared to a non-matched historical control group.
MANAGEMENT: Given the risk of reduced viral susceptibility and resistance development associated with subtherapeutic antiretroviral drug levels, alternative antiretroviral therapy should be considered in patients treated with methadone. Patients who are prescribed the combination should be monitored for potentially reduced antiretroviral response and opiate withdrawal symptoms. Patients should be advised to notify their caregiver if they experience symptoms of methadone withdrawal such as restlessness, insomnia, sweating, lacrimation, or rhinorrhea.
References (2)
- (2001) "Product Information. Agenerase (amprenavir)." Glaxo Wellcome
- (2003) "Product Information. Lexiva (fosamprenavir)." GlaxoSmithKline
Drug and food interactions
methadone food
Applies to: methadone
GENERALLY AVOID: Alcohol may potentiate the central nervous system (CNS) depressant effects of methadone. Concomitant use may result in additive CNS depression and impairment of judgment, thinking, and psychomotor skills. In more severe cases, hypotension, respiratory depression, profound sedation, coma, or even death may occur.
GENERALLY AVOID: Coadministration with grapefruit juice may increase the plasma concentrations of methadone. The proposed mechanism is inhibition of CYP450 3A4-mediated first-pass metabolism in the gut wall by certain compounds present in grapefruits. In 8 study subjects stabilized on methadone maintenance treatment, ingestion of regular strength grapefruit juice (200 mL one-half hour before and 200 mL simultaneously with the daily methadone dose) for five days resulted in an approximately 17% mean increase in methadone peak plasma concentration (Cmax) and systemic exposure (AUC) and a 14% mean decrease in apparent clearance for both the R(+) and S(-) enantiomers. Grapefruit juice did not affect the time to peak level (Tmax), terminal half-life, or apparent volume of distribution of methadone. No signs or symptoms of methadone toxicity or changes in intensity of withdrawal symptoms were reported in the study. 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. In addition, high dosages (particularly above 200 mg/day) and high serum levels of methadone have been associated with QT interval prolongation and torsade de pointes arrhythmia.
MANAGEMENT: Patients should not consume alcoholic beverages or use drug products that contain alcohol during treatment with methadone. Any history of alcohol or illicit drug use should be considered when prescribing methadone, and therapy initiated at a lower dosage if necessary. Patients should be closely monitored for signs and symptoms of sedation, respiratory depression, and hypotension. In addition, patients treated with oral methadone should preferably avoid or limit the consumption of grapefruit juice, particularly during the induction of maintenance treatment. Given the interindividual variability in the pharmacokinetics of methadone, a significant interaction with grapefruit juice in certain patients cannot be ruled out. Patients should be advised to seek immediate 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.
References (11)
- Iribarne C, Berthou F, Baird S, Dreano Y, Picart D, Bail JP, Beaune P, Menez JF (1996) "Involvement of cytochrome P450 3A4 enzyme in the N-demethylation of methadone in human liver microsomes." Chem Res Toxicol, 9, p. 365-73
- Oda Y, Kharasch ED (2001) "Metabolism of methadone and levo-alpha-acetylmethadol (LAAM) by human intestinal cytochrome P450 3A4 (CYP3A4): potential contribution of intestinal metabolism to presystemic clearance and bioactivation." J Pharmacol Exp Ther, 298, p. 1021-32
- Benmebarek M, Devaud C, Gex-Fabry M, et al. (2004) "Effects of grapefruit juice on the pharmacokinetics of the enantiomers of methadone." Clin Pharmacol Ther, 76, p. 55-63
- Foster DJ, Somogyi AA, Bochner F (1999) "Methadone N-demethylation in human liver microsomes: lack of stereoselectivity and involvement of CYP3A4." Br J Clin Pharmacol, 47, p. 403-12
- (2023) "Product Information. Methadone Hydrochloride (methadone)." SpecGx LLC
- (2023) "Product Information. Methadose (methadone)." Mallinckrodt Medical Inc
- (2024) "Product Information. Methadone (methadone)." Martindale Pharmaceuticals Ltd
- (2023) "Product Information. Physeptone (methadone)." Martindale Pharmaceuticals Ltd
- (2023) "Product Information. Metharose (methadone)." Rosemont Pharmaceuticals Ltd
- (2023) "Product Information. methADONe (AFT) (methADONe)." AFT Pharmaceuticals Pty Ltd
- (2022) "Product Information. Apo-Methadone (methadone)." Apotex Inc
amprenavir food
Applies to: amprenavir
GENERALLY AVOID: Administration with a high-fat meal may decrease the oral bioavailability of amprenavir. The mechanism is unknown. In healthy volunteers, consumption of a standardized high-fat meal decreased the peak plasma concentration (Cmax) and area under the concentration-time curve (AUC) of amprenavir (1200 mg single oral dose) by 36% and 21%, respectively, compared to administration in the fasted state. The time to reach Cmax (Tmax) was increased 44% following a high-fat meal.
Grapefruit juice does not appear to significantly affect the pharmacokinetics of amprenavir. In 12 healthy volunteers, administration with grapefruit juice (200 mL) decreased the mean peak plasma concentration (Cmax) of amprenavir (1200 mg single oral dose) by 22% compared to water. The median time to reach Cmax (Tmax) was prolonged from 0.75 to 1.13 hours. These pharmacokinetic changes are not thought to be clinically significant, since antiretroviral response is more closely associated with systemic exposure (AUC) and trough plasma concentration (Cmin), which were not affected in the study.
MANAGEMENT: Amprenavir may be taken with or without food, but should not be taken with a high-fat meal.
References (2)
- (2001) "Product Information. Agenerase (amprenavir)." Glaxo Wellcome
- Demarles D, Gillotin C, Bonaventure-Paci S, Vincent I, Fosse S, Taburet AM (2002) "Single-dose pharmacokinetics of amprenavir coadministered with grapefruit juice." Antimicrob Agents Chemother, 46, p. 1589-1590
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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