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Drug Interactions between Nuedexta and tramadol

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

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Interactions between your drugs

Major

quiNIDine dextromethorphan

Applies to: Nuedexta (dextromethorphan / quinidine) and Nuedexta (dextromethorphan / quinidine)

GENERALLY AVOID: Coadministration with potent CYP450 2D6 inhibitors (e.g., quinidine, terbinafine) may significantly increase the plasma concentrations of dextromethorphan in patients who are extensive metabolizers of this isoenzyme (approximately 93% of Caucasians and more than 98% of Asians and individuals of African descent). The proposed mechanism is inhibition of the CYP450 2D6-mediated O-demethylation of dextromethorphan. Studies in humans have shown an increase in systemic exposure of dextromethorphan of up to 43-fold when given concurrently with quinidine. Increased plasma concentrations increase the risk of dextromethorphan-related adverse effects (e.g., agitation, confusion, tremor, insomnia, diarrhea, and respiratory depression) and serotonin syndrome. However, this interaction has also been used clinically, with dextromethorphan in combination with quinidine indicated by some authorities for the treatment of pseudobulbar affect. Data evaluating the impact of this interaction in patients who are poor metabolizers of CYP450 2D6 are limited; most studies include extensive metabolizers of this isoenzyme. It is expected that poor metabolizers would have elevated dextromethorphan levels without concurrent quinidine

MANAGEMENT: The combination of dextromethorphan with potent CYP450 2D6 inhibitors should be generally avoided. Some manufacturers consider the concomitant use of dextromethorphan and selective serotonin reuptake inhibitors contraindicated. If use is considered necessary, the patient should be monitored for signs of dextromethorphan adverse effects (e.g., agitation, confusion, tremor, insomnia, diarrhea, and respiratory depression) and serotonin syndrome, and advised to notify their health care professional if these adverse effects develop or worsen. Dose reduction of dextromethorphan may also be required.

References

  1. Zhang Y, Britto MR, Valderhaug KL, Wedlund PJ, Smith RA (1992) "Dextromethorphan: enhancing its systemic availability by way of low-dose quinidine-mediated inhibition of cytochrome P4502D6." Clin Pharmacol Ther, 51, p. 647-55
  2. Schadel M, Wu DA, Otton SV, Kalow W, Sellers EM (1995) "Pharmacokinetics of dextromethorphan and metabolites in humans: influence of the CYP2d6 phenotype and quinidine inhibition." J Clin Psychopharmacol, 15, p. 263-9
  3. Capon DA, Bochner F, Kerry N, Mikus G, Danz C, Somogyi AA (1996) "The influence of CYP2d6 polymorphism and quinidine on the disposition and antitussive effect of dextromethorphan in humans." Clin Pharmacol Ther, 60, p. 295-307
  4. Cerner Multum, Inc. "UK Summary of Product Characteristics."
  5. Cerner Multum, Inc. "Australian Product Information."
  6. (2010) "Product Information. Nuedexta (dextromethorphan-quinidine)." Avanir Pharmaceuticals, Inc
View all 6 references

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Major

quiNIDine traMADol

Applies to: Nuedexta (dextromethorphan / quinidine) and tramadol

GENERALLY AVOID: Class IA (e.g., disopyramide, quinidine, procainamide) and class III (e.g., amiodarone, dofetilide, sotalol) antiarrhythmic agents can cause dose-related prolongation of the QT interval. Theoretically, coadministration with other agents that can prolong the QT interval may result in additive effects and increased risk of ventricular arrhythmias including torsade de pointes and sudden death. 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: Coadministration of class IA or class III antiarrhythmic agents with other drugs that can prolong the QT interval should preferably be avoided unless benefits are anticipated to outweigh the risks. Caution and clinical monitoring are recommended if concomitant use is required. Patients should be advised to seek prompt 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

  1. (2002) "Product Information. Cordarone (amiodarone)." Wyeth-Ayerst Laboratories
  2. (2002) "Product Information. Vascor (bepridil)." McNeil Pharmaceutical
  3. (2001) "Product Information. Procan SR (procainamide)." Parke-Davis
  4. "Product Information. Quiniglute (quinidine)." Berlex, Richmond, CA.
  5. (2001) "Product Information. Betapace (sotalol)." Berlex Laboratories
  6. (2001) "Product Information. Norpace (disopyramide)." Searle
  7. Trujillo TC, Nolan PE (2000) "Antiarrhythmic agents - Drug interactions of clinical significance." Drug Safety, 23, p. 509-32
  8. Yamreudeewong W, DeBisschop M, Martin L, Lower D (2003) "Potentially Significant Drug Interactions of Class III Antiarrhythmic Drugs." Drug Saf, 26, p. 421-38
  9. Cerner Multum, Inc. "UK Summary of Product Characteristics."
  10. Canadian Pharmacists Association (2006) e-CPS. http://www.pharmacists.ca/function/Subscriptions/ecps.cfm?link=eCPS_quikLink
  11. Cerner Multum, Inc. "Australian Product Information."
  12. EMA. European Medicines Agency. European Union (2013) EMA - List of medicines under additional monitoring. http://www.ema.europa.eu/ema/index.jsp?curl=pages/regulation/document_listing/document_listing_000366.jsp&mid=WC0b01ac058067c852
  13. Maxa JL, Hebeler RF, Adeeko MA (2006) "Torsades de pointes following concurrent amiodarone and levofloxacin therapy." Proc (Bayl Univ Med Cent), 19, p. 345-6
View all 13 references

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Major

dextromethorphan traMADol

Applies to: Nuedexta (dextromethorphan / quinidine) and tramadol

MONITOR CLOSELY: Concomitant use of agents with serotonergic activity such as serotonin reuptake inhibitors, monoamine oxidase inhibitors, tricyclic antidepressants, 5-HT1 receptor agonists, ergot alkaloids, cyclobenzaprine, lithium, St. John's wort, phenylpiperidine opioids, dextromethorphan, and tryptophan may potentiate the risk of serotonin syndrome, which is a rare but serious and potentially fatal condition thought to result from hyperstimulation of brainstem 5-HT1A and 2A receptors. Symptoms of the serotonin syndrome may include mental status changes such as irritability, altered consciousness, confusion, hallucination, and coma; autonomic dysfunction such as tachycardia, hyperthermia, diaphoresis, shivering, blood pressure lability, and mydriasis; neuromuscular abnormalities such as hyperreflexia, myoclonus, tremor, rigidity, and ataxia; and gastrointestinal symptoms such as abdominal cramping, nausea, vomiting, and diarrhea.

MANAGEMENT: In general, the concomitant use of multiple serotonergic agents should be avoided if possible, or otherwise approached with caution if potential benefit is deemed to outweigh the risk. Patients should be closely monitored for symptoms of the serotonin syndrome during treatment. Particular caution is advised when increasing the dosages of these agents. The potential risk for serotonin syndrome should be considered even when administering serotonergic agents sequentially, as some agents may demonstrate a prolonged elimination half-life. For example, some experts suggest a 5-week washout period following use of fluoxetine and 3 weeks following the use of vortioxetine before administering another serotonergic agent. Individual product labeling for washout periods should be consulted for current recommendations. If serotonin syndrome develops or is suspected during the course of therapy, all serotonergic agents should be discontinued immediately and supportive care rendered as necessary. Moderately ill patients may also benefit from the administration of a serotonin antagonist (e.g., cyproheptadine, chlorpromazine). Severe cases should be managed under consultation with a toxicologist and may require sedation, neuromuscular paralysis, intubation, and mechanical ventilation in addition to the other measures.

References

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  14. (2001) "Product Information. Effexor (venlafaxine)." Wyeth-Ayerst Laboratories
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  16. (2001) "Product Information. Paxil (paroxetine)." GlaxoSmithKline
  17. (2001) "Product Information. Flexeril (cyclobenzaprine)." Merck & Co., Inc
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  21. (2001) "Product Information. Luvox (fluvoxamine)." Solvay Pharmaceuticals Inc
  22. Reeves RR, Bullen JA (1995) "Serotonin syndrome produced by paroxetine and low-dose trazodone." Psychosomatics, 36, p. 159-60
  23. Harvey AT, Preskorn SH (1995) "Interactions of serotonin reuptake inhibitors with tricyclic antidepressants." Arch Gen Psychiatry, 52, p. 783-4
  24. Baetz M, Malcolm D (1995) "Serotonin syndrome from fluvoxamine and buspirone." Can J Psychiatry, 40, p. 428-9
  25. Fischer P (1995) "Serotonin syndrome in the elderly after antidepressive monotherapy." J Clin Psychopharmacol, 15, p. 440-2
  26. Corkeron MA (1995) "Serotonin syndrome - a potentially fatal complication of antidepressant therapy." Med J Aust, 163, p. 481-2
  27. George TP, Godleski LS (1996) "Possible serotonin syndrome with trazodone addition to fluoxetine." Biol Psychiatry, 39, p. 384-5
  28. Skop BP, Finkelstein JA, Mareth TR, Magoon MR, Brown TM (1994) "The serotonin syndrome associated wtih paroxetine, an over-the-counter cold remedy, and vascular disease." Am J Emerg Med, 12, p. 642-4
  29. Mason BJ, Blackburn KH (1997) "Possible serotonin syndrome associated with tramadol and sertraline coadministration." Ann Pharmacother, 31, p. 175-7
  30. John L, Perreault MM, Tao T, Blew PG (1997) "Serotonin syndrome associated with nefazodone and paroxetine." Ann Emerg Med, 29, p. 287-9
  31. (2001) "Product Information. Zomig (zolmitriptan)." Astra-Zeneca Pharmaceuticals
  32. (2001) "Product Information. Meridia (sibutramine)." Knoll Pharmaceutical Company
  33. Mills KC (1997) "Serotonin syndrome: A clinical update." Crit Care Clin, 13, p. 763
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  35. (2001) "Product Information. Maxalt (rizatriptan)." Merck & Co., Inc
  36. (2001) "Product Information. Celexa (citalopram)." Forest Pharmaceuticals
  37. Gardner DM, Lynd LD (1998) "Sumatriptan contraindications and the serotonin syndrome." Ann Pharmacother, 32, p. 33-8
  38. Mathew NT, Tietjen GE, Lucker C (1996) "Serotonin syndrome complicating migraine pharmacotherapy." Cephalalgia, 16, p. 323-7
  39. Chan BSH, Graudins A, Whyte IM, Dawson AH, Braitberg G, Duggin GG (1998) "Serotonin syndrome resulting from drug interactions." Med J Aust, 169, p. 523-5
  40. Egberts AC, ter Borg J, Brodie-Meijer CC (1997) "Serotonin syndrome attributed to tramadol addition to paroxetine therapy." Int Clin Psychopharmacol, 12, p. 181-2
  41. Weiner AL (1999) "Meperidine as a potential cause of serotonin syndrome in the emergency department." Acad Emerg Med, 6, p. 156-8
  42. Miller LG (1998) "Herbal medicinals: selected clinical considerations focusing on known or potential drug-herb interactions." Arch Intern Med, 158, p. 2200-11
  43. Gordon JB (1998) "SSRI's and St. John's Wort: possible toxicity?" Am Fam Physician, 57, 950,953
  44. Lantz MS, Buchalter E, Giambanco V (1999) "St. John's wort and antidepressant drug interactions in the elderly." J Geriatr Psychiatr Neurol, 12, p. 7-10
  45. Fugh-Berman A (2000) "Herb-drug interactions." Lancet, 355, p. 134-8
  46. (2001) "Product Information. Zyvox (linezolid)." Pharmacia and Upjohn
  47. Perry NK (2000) "Venlafaxine-induced serotonin syndrome with relapse following amitriptyline." Postgrad Med J, 76, p. 254-6
  48. Manos GH (2000) "Possible serotonin syndrome associated with buspirone added to fluoxetine." Ann Pharmacother, 34, p. 871-4
  49. Nijhawan PK, Katz G, Winter S (1996) "Psychiatric illness and the serotonin syndrome: an emerging adverse drug effect leading to intensive care unit admission." Crit Care Med, 24, p. 1086-9
  50. Laird LK (1996) "Issues in the monopharmacotherapy and polypharmacotherapy of obsessive-compulsive disorder." Psychopharmacol Bull, 32, p. 569-78
  51. Margolese HC, Chouinard G (2000) "Serotonin syndrome from addition of low-dose trazodone to nefazodone." Am J Psychiatry, 157, p. 1022
  52. Mackay FJ, Dunn NR, Mann RD (1999) "Antidepressants and the serotonin syndrome in general practice." Br J Gen Pract, 49, p. 871-4
  53. Smith DL, Wenegrat BG (2000) "A case report of serotonin syndrome associated with combined nefazodone and fluoxetine." J Clin Psychiatry, 61, p. 146
  54. Rosebraugh CJ, floxkhart DA, Yasuda SU, Woosley RL (2001) "Visual hallucination and tremor induced by sertraline and oxycodone in a bone marrow transplant patient." J Clin Pharmacol, 41, p. 224-7
  55. Izzo AA, Ernst E (2001) "Interactions between herbal medicines and prescribed drugs: a systematic review." Drugs, 61, p. 2163-75
  56. Duggal HS, Fetchko J (2002) "Serotonin syndrome and atypical antipsychotics." Am J Psychiatry, 159, p. 672-3
  57. Wigen CL, Goetz MB (2002) "Serotonin syndrome and linezolid." Clin Infect Dis, 34, p. 1651-2
  58. Hammerness P, Parada H, Abrams A (2002) "Linezolid: MAOI Activity and Potential Drug Interactions." Psychosomatics, 43, p. 248-9
  59. (2002) "Product Information. Lexapro (escitalopram)." Forest Pharmaceuticals
  60. Dougherty JA, Young H, Shafi T (2002) "Serotonin syndrome induced by amitriptyline, meperidine, and venlafaxine." Ann Pharmacother, 36, p. 1647-1648
  61. Turkel SB, Nadala JG, Wincor MZ (2001) "Possible serotonin syndrome in association with 5-HT3 antagonist agents." Psychosomatics, 42, p. 258-60
  62. Martin TG (1996) "Serotonin syndrome." Ann Emerg Med, 28, p. 520-6
  63. Lavery S, Ravi H, McDaniel WW, Pushkin YR (2001) "Linezolid and serotonin syndrome." Psychosomatics, 42, p. 432-4
  64. Lane R, Baldwin D (1997) "Selective serotonin reuptake inhibitor--induced serotonin syndrome: review." J Clin Psychopharmacol, 17, p. 208-21
  65. Bernard L, Stern R, Lew D, Hoffmeyer P (2003) "Serotonin syndrome after concomitant treatment with linezolid and citalopram." Clin Infect Dis, 36, p. 1197
  66. Dannawi M (2002) "Possible serotonin syndrome after combination of buspirone and St John's Wort." J Psychopharmacol, 16, p. 401
  67. Tissot TA (2003) "Probable meperidine-induced serotonin syndrome in a patient with a history of fluoxetine use." Anesthesiology, 98, p. 1511-1512
  68. Hachem RY, Hicks K, Huen A, Raad I (2003) "Myelosuppression and serotonin syndrome associated with concurrent use of linezolid and selective serotonin reuptake inhibitors in bone marrow transplant recipients." Clin Infect Dis, 37, E8-E11
  69. Gillman PK (2003) "Linezolid and serotonin toxicity." Clin Infect Dis, 37, p. 1274-5
  70. Roy S, Fortier LP (2003) "Fentanyl-induced rigidity during emergence from general anesthesia potentiated by venlafexine." Can J Anaesth, 50, p. 32-5
  71. Giese SY, Neborsky R (2001) "Serotonin syndrome: potential consequences of Meridia combined with Demerol or fentanyl." Plast Reconstr Surg, 107, p. 293-4
  72. Jones SL, Athan E, O'Brien D (2004) "Serotonin syndrome due to co-administration of linezolid and venlafaxine." J Antimicrob Chemother, 54, p. 289-90
  73. Tahir N (2004) "Serotonin syndrome as a consequence of drug-resistant infections: an interaction between linezolid and citalopram." J Am Med Dir Assoc, 5, p. 111-3
  74. (2004) "Product Information. Cymbalta (duloxetine)." Lilly, Eli and Company
  75. Thomas CR, Rosenberg M, Blythe V, Meyer WJ 3rd (2004) "Serotonin syndrome and linezolid." J Am Acad Child Adolesc Psychiatry, 43, p. 790
  76. Boyer EW, Shannon M (2005) "The serotonin syndrome." N Engl J Med, 352, p. 1112-20
  77. Bergeron L, Boule M, Perreault S (2005) "Serotonin toxicity associated with concomitant use of linezolid." Ann Pharmacother, 39, p. 956-61
  78. Morales N, Vermette H (2005) "Serotonin syndrome associated with linezolid treatment after discontinuation of fluoxetine." Psychosomatics, 46, p. 274-5
  79. Morales-Molina JA, Mateu-de Antonio J, Marin-Casino M, Grau S (2005) "Linezolid-associated serotonin syndrome: what we can learn from cases reported so far." J Antimicrob Chemother, 56, p. 1176-8
  80. DeBellis RJ, Schaefer OP, Liquori M, Volturo GA (2005) "Linezolid-associated serotonin syndrome after concomitant treatment with citalopram and mirtazepine in a critically ill bone marrow transplant recipient." J Intensive Care Med, 20, p. 351-3
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  87. Packer S, Berman SA (2007) "Serotonin syndrome precipitated by the monoamine oxidase inhibitor linezolid." Am J Psychiatry, 164, p. 346-7
  88. Shapiro RE, Tepper SJ (2007) "The serotonin syndrome, triptans, and the potential for drug-drug interactions." Headache, 47, p. 266-9
  89. Ailawadhi S, Sung KW, Carlson LA, Baer MR (2007) "Serotonin syndrome caused by interaction between citalopram and fentanyl." J Clin Pharm Ther, 32, p. 199-202
  90. (2008) "Product Information. Pristiq (desvenlafaxine)." Wyeth Laboratories
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  92. (2009) "Product Information. Savella (milnacipran)." Forest Pharmaceuticals
  93. (2009) "Product Information. Nucynta (tapentadol)." PriCara Pharmaceuticals
  94. Lee J, Franz L, Goforth HW (2009) "Serotonin syndrome in a chronic-pain patient receiving concurrent methadone, ciprofloxacin, and venlafaxine." Psychosomatics, 50, p. 638-9
  95. (2011) "Product Information. Viibryd (vilazodone)." Trovis Pharmaceuticals LLC
  96. Mugele J, Nanagas KA, Tormoehlen LM (2012) "Serotonin Syndrome Associated With MDPV Use: A Case Report." Ann Emerg Med
  97. (2012) "Product Information. Oleptro (trazodone)." Labopharm Inc
  98. (2013) "Product Information. Fetzima (levomilnacipran)." Forest Pharmaceuticals
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  100. (2023) "Product Information. Exxua (gepirone)." Mission Pharmacal Company, 1
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Drug and food interactions

Moderate

quiNIDine food

Applies to: Nuedexta (dextromethorphan / quinidine)

GENERALLY AVOID: In a small, randomized, crossover study, the administration of quinidine with grapefruit juice (compared to water) to healthy volunteers significantly prolonged the time to reach peak plasma quinidine concentrations and decreased the plasma concentrations of its major metabolite, 3-hydroxyquinidine. These changes were associated pharmacodynamically with both a delay and a reduction in the maximal effect on QTc interval. The proposed mechanism is delay of gastric emptying as well as inhibition of CYP450 3A4-mediated first-pass metabolism in the gut wall induced by certain compounds present in grapefruits.

MANAGEMENT: Given the drug's narrow therapeutic index, patients receiving quinidine therapy should avoid the consumption of grapefruits and grapefruit juice to prevent any undue fluctuations in plasma drug levels.

References

  1. Ace LN, Jaffe JM, Kunka RL (1983) "Effect of food and an antacid on quinidine bioavailability." Biopharm Drug Dispos, 4, p. 183-90
  2. Min DI, Ku YM, Geraets DR, Lee HC (1996) "Effect of grapefruit juice on the pharmacokinetics and pharmacodynamics of quinidine in healthy volunteers." J Clin Pharmacol, 36, p. 469-76
  3. Ha HR, Chen J, Leuenberger PM, Freiburghaus AU, Follah F (1995) "In vitro inhibition of midazolam and quinidine metabolism by flavonoids." Eur J Clin Pharmacol, 48, p. 367-71
  4. Bailey DG, Dresser GR, Kreeft JH, Munoz C, Freeman DJ, Bend JR (2000) "Grapefruit-felodipine interaction: Effect of unprocessed fruit and probable active ingredients." Clin Pharmacol Ther, 68, p. 468-77
View all 4 references

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Moderate

dextromethorphan food

Applies to: Nuedexta (dextromethorphan / quinidine)

GENERALLY AVOID: Alcohol may potentiate some of the pharmacologic effects of CNS-active agents. Use in combination may result in additive central nervous system depression and/or impairment of judgment, thinking, and psychomotor skills.

MANAGEMENT: Patients receiving CNS-active agents should be warned of this interaction and advised to avoid or limit consumption of alcohol. Ambulatory patients should be counseled to avoid hazardous activities requiring complete mental alertness and motor coordination until they know how these agents affect them, and to notify their physician if they experience excessive or prolonged CNS effects that interfere with their normal activities.

References

  1. Warrington SJ, Ankier SI, Turner P (1986) "Evaluation of possible interactions between ethanol and trazodone or amitriptyline." Neuropsychobiology, 15, p. 31-7
  2. Gilman AG, eds., Nies AS, Rall TW, Taylor P (1990) "Goodman and Gilman's the Pharmacological Basis of Therapeutics." New York, NY: Pergamon Press Inc.
  3. (2012) "Product Information. Fycompa (perampanel)." Eisai Inc
  4. (2015) "Product Information. Rexulti (brexpiprazole)." Otsuka American Pharmaceuticals Inc
View all 4 references

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Moderate

traMADol food

Applies to: tramadol

GENERALLY AVOID: Alcohol may potentiate some of the pharmacologic effects of CNS-active agents. Use in combination may result in additive central nervous system depression and/or impairment of judgment, thinking, and psychomotor skills.

MANAGEMENT: Patients receiving CNS-active agents should be warned of this interaction and advised to avoid or limit consumption of alcohol. Ambulatory patients should be counseled to avoid hazardous activities requiring complete mental alertness and motor coordination until they know how these agents affect them, and to notify their physician if they experience excessive or prolonged CNS effects that interfere with their normal activities.

References

  1. Warrington SJ, Ankier SI, Turner P (1986) "Evaluation of possible interactions between ethanol and trazodone or amitriptyline." Neuropsychobiology, 15, p. 31-7
  2. Gilman AG, eds., Nies AS, Rall TW, Taylor P (1990) "Goodman and Gilman's the Pharmacological Basis of Therapeutics." New York, NY: Pergamon Press Inc.
  3. (2012) "Product Information. Fycompa (perampanel)." Eisai Inc
  4. (2015) "Product Information. Rexulti (brexpiprazole)." Otsuka American Pharmaceuticals Inc
View all 4 references

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Therapeutic duplication warnings

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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.