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Drug Interactions between Atripla and Lunelle

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

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Moderate

medroxyPROGESTERone efavirenz

Applies to: Lunelle (estradiol / medroxyprogesterone) and Atripla (efavirenz / emtricitabine / tenofovir)

ADDITIONAL CONTRACEPTION RECOMMENDED: There are limited data concerning the potential effect of efavirenz on hormonal contraceptives. Presumably, coadministration with efavirenz may decrease the efficacy of contraceptives containing low-dose estrogens and progestins due to its induction of CYP450 3A4, the isoenzyme that is primarily responsible for the metabolic clearance of sex hormones. However, efavirenz has been found to increase the systemic exposure (AUC) of a single dose of ethinyl estradiol by 37%. The clinical significance of this finding is unknown.

MANAGEMENT: Because the potential interaction between efavirenz and contraceptive hormones has not been fully characterized, and use of efavirenz has been associated with fetal malformations in animal studies, the manufacturer recommends that women avoid pregnancy during efavirenz treatment and that a barrier form of contraception be used in addition to hormonal contraceptives. Alternative or additional methods of birth control should be used during and for at least 4 weeks after efavirenz therapy. Input from a gynecologist or similar expert on adequate contraception, including emergency contraception, should be sought as needed. Intrauterine systems are unlikely to be significantly affected because of their local action.

References

  1. "Product Information. Sustiva (efavirenz)." DuPont Pharmaceuticals PROD (2001):
  2. Cerner Multum, Inc. "UK Summary of Product Characteristics." O 0
  3. Lakhi N, Govind A "Implanon failure in patients on antiretroviral medication: the importance of disclosure." J Fam Plann Reprod Health Care 36 (2010): 181-2
  4. Faculty of Sexual & Reproductive Healthcare "FSRH Clinical Guidance: Drug Interactions with Hormonal Contraception. file:///C:/Users/df033684/Downloads/ceuguidancedruginteractionshormonal.pdf" (2016):
View all 4 references

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Moderate

estradiol efavirenz

Applies to: Lunelle (estradiol / medroxyprogesterone) and Atripla (efavirenz / emtricitabine / tenofovir)

ADDITIONAL CONTRACEPTION RECOMMENDED: Coadministration with inducers of CYP450 3A4 may decrease the plasma concentrations of estrogens and progestins. Estrogens have been shown in in vitro and in vivo studies to be partially metabolized by CYP450 3A4, and other steroids including progestins are also believed to undergo metabolism by this isoenzyme. The interaction has been reported primarily with oral contraceptives. There have been case reports of menstrual breakthrough bleeding or unwanted pregnancy in women receiving low-dose oral contraceptives following the addition of known CYP450 3A4 inducers such as carbamazepine, phenobarbital, phenytoin, rifampin, and St. John's wort. Inadequate response to estrogen replacement therapy has also been reported in a patient treated with phenytoin. Aminoglutethimide, a CYP450 3A4 inducer, has been shown to decrease medroxyprogesterone and megestrol serum levels by 74% in six patients stabilized on their progestin regimen.

MANAGEMENT: Pharmacologic response to estrogens and progestins should be monitored more closely whenever a CYP450 3A4 inducer is added to or withdrawn from therapy, and the hormone dosage adjusted as necessary. For patients receiving hormonal contraceptives, additional or alternative non-hormonal birth control may be advisable during concomitant therapy with CYP450 3A4 inducers. Additional or alternative non-hormonal birth control may be recommended beyond discontinuation of the CYP450 3A4 inducer(s). Individual product labeling should be consulted for specific time frames. Intrauterine systems are unlikely to be significantly affected because of their local action. Input from a gynecologist or similar expert on adequate contraception, including emergency contraception, should be sought as needed. Patients should be advised to notify their physician if they experience inadequate control of symptoms associated with estrogen deficiency (e.g., nocturnal sweating, vasomotor disturbances, atrophic vaginitis) or changes in the uterine bleeding profile.

References

  1. Crawford P, Chadwick DJ, Martin C, et al. "The interaction of phenytoin and carbamazepine with combined oral contraceptive steroids." Br J Clin Pharmacol 30 (1990): 892-6
  2. Venkatesan K "Pharmacokinetic drug interactions with rifampicin." Clin Pharmacokinet 22 (1992): 47-65
  3. Borcherding SM, Baciewicz AM, Self TH "Update on rifampin drug interactions." Arch Intern Med 152 (1992): 711-6
  4. Weber JC "Interaction between oral contraceptives and griseofulvin." Br Med J 288 (1984): 1125-6
  5. McDaniel PA, Caldroney RD "Oral contraceptives and griseofulvin interaction." Drug Intell Clin Pharm 20 (1986): 384
  6. Cote J "Interaction of griseofulvin and oral contraceptives." J Am Acad Dermatol 22 (1990): 124-5
  7. Baciewicz AM "Oral contraceptive drug interactions." Ther Drug Monit 7 (1985): 26-35
  8. Skolnick JL, Stoler BS, Katz DB, Anderson WH "Rifampin, oral contraceptives, and pregnancy." JAMA 236 (1976): 1382
  9. Lundgren S, Lonning PE, Aakvaag A, Kvinnsland S, Lnning PE "Influence of aminoglutethimide on the metabolism of medroxyprogesterone acetate and megestrol acetate in postmenopausal patients with advanced breast cancer." Cancer Chemother Pharmacol 27 (1990): 101-5
  10. Halpenny O, Bye A, Cranny A, Feely J, Daly PA "Influence of aminoglutethimide on plasma levels of medroxyprogesterone acetate." Med Oncol Tumor Pharmacother 7 (1990): 241-7
  11. Mumford JP "Letter: Drugs affecting oral contraceptives." Br Med J 2 (1974): 333-4
  12. Back DJ, Bates M, Bowden A, et al. "The interaction of phenobarbital and other anticonvulsants with oral contraceptive steroid therapy." Contraception 22 (1980): 495-503
  13. Dossetor J "Drug interactions with oral contraceptives." Br Med J 4 (1975): 467-8
  14. Baciewicz AM, Self TH "Rifampin drug interactions." Arch Intern Med 144 (1984): 1667-71
  15. Nocke-finck L "Effects of rifampicin on menstral cycle and on estrogen excretion in patients taking oral contraceptives." JAMA 226 (1973): 378
  16. Bolt HM, Bolt M, Kappus H "Interaction of rifampicin treatment with pharmacokinetics and metabolism of ethinyloestradiol in man." Acta Endocrinol (Copenh) 85 (1977): 189-97
  17. Back DJ, Breckenridge AM, Crawford FE, et al. "The effect of rifampicin on the pharmacokinetics of ethynylestradiol in women." Contraception 21 (1980): 135-43
  18. Furlan AJ, Rothner AD "Anti-epileptic drugs and failure of oral contraceptives." Lancet 1 (1974): 1113
  19. Coulam CB, Annegers JF "Do anticonvulsants reduce the efficacy of oral contraceptives?" Epilepsia 20 (1979): 519-26
  20. Szoka PR, Edgren RA "Drug interactions with oral contraceptives: compilation and analysis of an adverse experience report database." Fertil Steril 49 (1988): s31-8
  21. Mattson RH, Cramer JA, Darney PD, Naftolin F "Use of oral contraceptives by women with epilepsy." JAMA 256 (1986): 238-40
  22. van Dijke CP, Weber JC "Interaction between oral contraceptives and griseofulvin." Br Med J (Clin Res Ed) 288 (1984): 1125-6
  23. Laengner H, Detering K "Letter: Anti-epileptic drugs and failure of oral contraceptives." Lancet 2 (1974): 600
  24. Janz D, Schmidt D "Letter: Anti-epileptic drugs and failure of oral contraceptives." Lancet 1 (1974): 1113
  25. Curran MA "Drug interactions with the pill." Med J Aust 144 (1986): 670-1
  26. Back DJ, Orme ML "Pharmacokinetic drug interactions with oral contraceptives." Clin Pharmacokinet 18 (1990): 472-84
  27. D'Arcy PF "Drug interactions with oral contraceptives." Drug Intell Clin Pharm 20 (1986): 353-62
  28. Notelovitz M, Tjapkes J, Ware M "Interaction between estrogen and dilantin in a menopausal woman." N Engl J Med 304 (1981): 788-9
  29. "Product Information. Premarin (conjugated estrogens)." Wyeth-Ayerst Laboratories PROD (2001):
  30. Strayhorn VA, Baciewicz AM, Self TH "Update on rifampin drug interactions, III." Arch Intern Med 157 (1997): 2453-8
  31. Michalets EL "Update: clinically significant cytochrome P-450 drug interactions." Pharmacotherapy 18 (1998): 84-112
  32. Back DJ, Breckenridge AM, Crawford FE, MacIver M, Orne ML, Rowe PH "Interindividual variation and drug interactions with hormonal steroid contraceptives." Drugs 21 (1981): 46-61
  33. LeBel M, Masson E, Guilbert E, Colborn D, Paquet F, Allard S, Vallee F, Narang PK "Effects of rifabutin and rifampicin on the pharmacokinetics of ethinylestradiol and norethindrone." J Clin Pharmacol 38 (1998): 1042-50
  34. Barditch-Crovo P, Trapnell CB, Ette E, et al. "The effects of rifampin and rifabutin on the pharmacokinetics and pharmacodynamics of a combination oral contraceptive." Clin Pharmacol Ther 65 (1999): 428-38
  35. Weisberg E "Interactions between oral contraceptives and antifungals antibacterials - Is contraceptive failure the result?." Clin Pharmacokinet 36 (1999): 309-13
  36. Klosterskov Jensen P, Saano V, Haring P, Svenstrup B, Menge GP "Possible interaction between oxcarbazepine and an oral contraceptive." Epilepsia 33 (1992): 1149-52
  37. Wilbur K, Ensom MHH "Pharmacokinetic drug interactions between oral contraceptives and second-generation anticonvulsants." Clin Pharmacokinet 38 (2000): 355-65
  38. Durr D, Stieger B, KullakUblick GA, Rentsch KM, Steinert HC, Meier PJ, Fattinger K "St John's Wort induces intestinal P-glycoprotein/MDR1 and intestinal and hepatic CYP3A4." Clin Pharmacol Ther 68 (2000): 598-604
  39. Weaver K, Glasier A "Interaction between broad-spectrum antibiotics and the combined oral contraceptive pill: a literature review." Contraception 59 (1999): 71-8
  40. Zachariassen RD "Loss of oral contraceptive efficacy by concurrent antibiotic administration." Women Health 22 (1994): 17-26
  41. Dickinson BD, Altman RD, Nielsen NH, Sterling ML "Drug interactions between oral contraceptives and antibiotics." Obstet Gynecol 98(5 Pt 1) (2001): 853-60
  42. "Unwanted pregnancy on self-medication with St John's wort despite hormonal contraception." Br J Clin Pharmacol 55 (2003): 112-113
  43. Pfrunder A, Schiesser M, Gerber S, Haschke M, Bitzer J, Drewe J "Interaction of St John's wort with low-dose oral contraceptive therapy: a randomized controlled trial." Br J Clin Pharmacol 56 (2003): 683-90
  44. Hall SD, Wang Z, Huang SM, et al. "The interaction between St John's wort and an oral contraceptive." Clin Pharmacol Ther 74 (2003): 525-35
  45. Gorski JC, Hamman MA, Wang Z, Vasvada N, Huang S, Hall SD "The effect of St. John's wort on the efficacy of oral contraception." Clin Pharmacol Ther 71 (2002): P25
  46. Schwarz UI, Buschel B, Kirch W "Failure of oral contraceptives because of St. John's wort." Eur J Clin Pharmacol 57 (2001): A25
  47. Faculty of Sexual & Reproductive Healthcare "FSRH Clinical Guidance: Drug Interactions with Hormonal Contraception. file:///C:/Users/df033684/Downloads/ceuguidancedruginteractionshormonal.pdf" (2016):
View all 47 references

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Moderate

efavirenz tenofovir

Applies to: Atripla (efavirenz / emtricitabine / tenofovir) and Atripla (efavirenz / emtricitabine / tenofovir)

MONITOR: Coadministration of efavirenz with other agents known to induce hepatotoxicity may potentiate the risk of liver injury. Efavirenz has been associated with hepatotoxicity during postmarketing use. Among reported cases of hepatic failure, a few occurred in patients with no preexisting hepatic disease or other identifiable risk factors.

MANAGEMENT: The risk of hepatic injury should be considered when efavirenz is used in combination with other agents that are potentially hepatotoxic (e.g., acetaminophen; alcohol; androgens and anabolic steroids; antituberculous agents; azole antifungal agents; ACE inhibitors; cyclosporine (high dosages); disulfiram; endothelin receptor antagonists; interferons; ketolide and macrolide antibiotics; kinase inhibitors; minocycline; nonsteroidal anti-inflammatory agents; other HIV reverse transcriptase inhibitors; proteasome inhibitors; retinoids; sulfonamides; tamoxifen; thiazolidinediones; tolvaptan; vincristine; zileuton; anticonvulsants such as carbamazepine, hydantoins, felbamate, and valproic acid; lipid-lowering medications such as fenofibrate, lomitapide, mipomersen, niacin, and statins; herbals and nutritional supplements such as black cohosh, chaparral, comfrey, DHEA, kava, pennyroyal oil, and red yeast rice). Patients should be advised to seek medical attention if they experience potential signs and symptoms of hepatotoxicity such as fever, rash, itching, anorexia, nausea, vomiting, fatigue, malaise, right upper quadrant pain, dark urine, pale stools, and jaundice. Monitoring of liver function tests should occur before and during treatment, especially in patients with underlying hepatic disease (including hepatitis B or C coinfection) or marked transaminase elevations. The benefit of continued therapy with efavirenz should be considered against the unknown risks of significant liver toxicity in patients who develop persistent elevations of serum transaminases greater than five times the upper limit of normal.

References

  1. "Product Information. Sustiva (efavirenz)." DuPont Pharmaceuticals PROD (2001):
  2. Elsharkawy AM, Schwab U, McCarron B, et al. "Efavirenz induced acute liver failure requiring liver transplantation in a slow drug metaboliser." J Clin Virol 58 (2013): 331-3

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Moderate

efavirenz emtricitabine

Applies to: Atripla (efavirenz / emtricitabine / tenofovir) and Atripla (efavirenz / emtricitabine / tenofovir)

MONITOR: Coadministration of efavirenz with other agents known to induce hepatotoxicity may potentiate the risk of liver injury. Efavirenz has been associated with hepatotoxicity during postmarketing use. Among reported cases of hepatic failure, a few occurred in patients with no preexisting hepatic disease or other identifiable risk factors.

MANAGEMENT: The risk of hepatic injury should be considered when efavirenz is used in combination with other agents that are potentially hepatotoxic (e.g., acetaminophen; alcohol; androgens and anabolic steroids; antituberculous agents; azole antifungal agents; ACE inhibitors; cyclosporine (high dosages); disulfiram; endothelin receptor antagonists; interferons; ketolide and macrolide antibiotics; kinase inhibitors; minocycline; nonsteroidal anti-inflammatory agents; other HIV reverse transcriptase inhibitors; proteasome inhibitors; retinoids; sulfonamides; tamoxifen; thiazolidinediones; tolvaptan; vincristine; zileuton; anticonvulsants such as carbamazepine, hydantoins, felbamate, and valproic acid; lipid-lowering medications such as fenofibrate, lomitapide, mipomersen, niacin, and statins; herbals and nutritional supplements such as black cohosh, chaparral, comfrey, DHEA, kava, pennyroyal oil, and red yeast rice). Patients should be advised to seek medical attention if they experience potential signs and symptoms of hepatotoxicity such as fever, rash, itching, anorexia, nausea, vomiting, fatigue, malaise, right upper quadrant pain, dark urine, pale stools, and jaundice. Monitoring of liver function tests should occur before and during treatment, especially in patients with underlying hepatic disease (including hepatitis B or C coinfection) or marked transaminase elevations. The benefit of continued therapy with efavirenz should be considered against the unknown risks of significant liver toxicity in patients who develop persistent elevations of serum transaminases greater than five times the upper limit of normal.

References

  1. "Product Information. Sustiva (efavirenz)." DuPont Pharmaceuticals PROD (2001):
  2. Elsharkawy AM, Schwab U, McCarron B, et al. "Efavirenz induced acute liver failure requiring liver transplantation in a slow drug metaboliser." J Clin Virol 58 (2013): 331-3

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Drug and food interactions

Moderate

efavirenz food

Applies to: Atripla (efavirenz / emtricitabine / tenofovir)

ADJUST DOSING INTERVAL: Administration with food increases the plasma concentrations of efavirenz and may increase the frequency of adverse reactions. According to the product labeling, administration of efavirenz capsules (600 mg single dose) with a high-fat/high-caloric meal (894 kcal, 54 g fat, 54% calories from fat) or a reduced-fat/normal-caloric meal (440 kcal, 2 g fat, 4% calories from fat) was associated with mean increases of 39% and 51% in efavirenz peak plasma concentration (Cmax) and 22% and 17% in systemic exposure (AUC), respectively, compared to administration under fasted conditions. For efavirenz tablets, administration of a single 600 mg dose with a high-fat/high-caloric meal (approximately 1000 kcal, 500-600 kcal from fat) resulted in a 79% increase in mean Cmax and a 28% increase in mean AUC of efavirenz relative to administration under fasted conditions.

MANAGEMENT: Efavirenz should be taken on an empty stomach, preferably at bedtime. Dosing at bedtime may improve the tolerability of nervous system symptoms such as dizziness, insomnia, impaired concentration, somnolence, abnormal dreams and hallucinations, although they often resolve on their own after the first 2 to 4 weeks of therapy . Patients should be advised of the potential for additive central nervous system effects when efavirenz is used concomitantly with alcohol or psychoactive drugs, and to avoid driving or operating hazardous machinery until they know how the medication affects them.

References

  1. "Product Information. Sustiva (efavirenz)." DuPont Pharmaceuticals PROD (2001):

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Minor

estradiol food

Applies to: Lunelle (estradiol / medroxyprogesterone)

Coadministration with grapefruit juice may increase the bioavailability of oral estrogens. The proposed mechanism is inhibition of CYP450 3A4-mediated first-pass metabolism in the gut wall induced by certain compounds present in grapefruits. In a small, randomized, crossover study, the administration of ethinyl estradiol with grapefruit juice (compared to herbal tea) increased peak plasma drug concentration (Cmax) by 37% and area under the concentration-time curve (AUC) by 28%. Based on these findings, grapefruit juice is unlikely to affect the overall safety profile of ethinyl estradiol. However, as with other drug interactions involving grapefruit juice, the pharmacokinetic alterations are subject to a high degree of interpatient variability. Also, the effect on other estrogens has not been studied.

References

  1. Weber A, Jager R, Borner A, et al. "Can grapefruit juice influence ethinyl estradiol bioavailability?" Contraception 53 (1996): 41-7
  2. Schubert W, Eriksson U, Edgar B, Cullberg G, Hedner T "Flavonoids in grapefruit juice inhibit the in vitro hepatic metabolism of 17B-estradiol." Eur J Drug Metab Pharmacokinet 20 (1995): 219-24

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Minor

tenofovir food

Applies to: Atripla (efavirenz / emtricitabine / tenofovir)

Food enhances the oral absorption and bioavailability of tenofovir, the active entity of tenofovir disoproxil fumarate. According to the product labeling, administration of the drug following a high-fat meal increased the mean peak plasma concentration (Cmax) and area under the concentration-time curve (AUC) of tenofovir by approximately 14% and 40%, respectively, compared to administration in the fasting state. However, administration with a light meal did not significantly affect the pharmacokinetics of tenofovir compared to administration in the fasting state. Food delays the time to reach tenofovir Cmax by approximately 1 hour. Tenofovir disoproxil fumarate may be administered without regard to meals.

References

  1. "Product Information. Viread (tenofovir)." Gilead Sciences (2001):

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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.