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Drug Interactions between amitriptyline / perphenazine and bupropion

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

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Interactions between your drugs

Major

amitriptyline buPROPion

Applies to: amitriptyline / perphenazine and bupropion

ADJUST DOSE: Coadministration of bupropion may elevate the plasma concentrations of drugs metabolized by CYP450 2D6. The proposed mechanism is decreased clearance due to bupropion's inhibition of CYP450 2D6 activity. In a study of 15 male volunteers who were extensive metabolizers of CYP450 2D6, administration of a single 50 mg dose of desipramine following treatment with bupropion 150 mg twice daily increased the desipramine peak plasma concentration (Cmax), systemic exposure (AUC) and half-life by an average of 2-, 5-, and 2-fold, respectively. The effect was present for at least 7 days after the last dose of bupropion. In addition, when combined with serotonergic drugs, such as certain selective serotonin reuptake inhibitors (SSRIs), serotonin and norepinephrine reuptake inhibitors (SNRIs), or tricyclic antidepressants (TCAs) that are CYP450 2D6 substrates, elevated plasma levels may potentiate the risk of a potentially life-threatening condition called serotonin syndrome. In a case report of a 62-year-old woman with depression, serotonin syndrome developed after three weeks of bupropion and sertraline therapy, initially misdiagnosed as worsening depression and treated with venlafaxine, leading to further symptom progression. The patient recovered after discontinuing the offending medications and treating for serotonin syndrome, with authors highlighting bupropion's role in increasing SSRI levels through CYP450 2D6 inhibition. Symptoms of serotonin syndrome include altered mental status, hypertension, restlessness, myoclonus, hyperthermia, hyperreflexia, diaphoresis, shivering, and tremor.

MONITOR CLOSELY: The use of bupropion is associated with a dose-related risk of seizures. The risk may be further increased when coadministered with serotonergic agents that can reduce the seizure threshold such as certain selective serotonin reuptake inhibitors (SSRIs), serotonin and norepinephrine reuptake inhibitors (SNRIs), or tricyclic antidepressants (TCAs). These agents are often individually epileptogenic and may have additive effects when combined. The estimated incidence of seizures is approximately 0.4% for immediate-release bupropion hydrochloride at dosages between 300 to 450 mg/day (equivalent to 348 to 522 mg/day of bupropion hydrobromide) but increases almost tenfold between 450 mg and 600 mg/day (equivalent to 522 and 696 mg/day of bupropion hydrobromide). Data for sustained-release (SR) bupropion hydrochloride revealed a seizure incidence of approximately 0.1% at dosages up to 300 mg/day and 0.4% at 400 mg/day. Likewise, in clinical trials, an overall seizure incidence of approximately 0.1% has been reported with extended-release (XL) bupropion hydrochloride at dosages up to 450 mg/day and approximately 0.39% at 450 mg/day. The 0.4% seizure incidence may exceed that of other marketed antidepressants by as much as 4-fold.

MANAGEMENT: According to bupropion product labeling, if coadministration of bupropion with CYP450 2D6 substrates is required, concomitant medications should be initiated at the lower end of the dose range. If the concomitant agents possess serotonergic activity (e.g., SSRIs, SNRIs, and/or TCAs) patients should be monitored more closely for and counseled about the signs and symptoms of serotonin syndrome (e.g., altered mental status, hypertension, restlessness, myoclonus, hyperthermia, hyperreflexia, diaphoresis, shivering, and tremor). Additionally, if the coadministered agent is known to lower the seizure threshold, extreme caution is advised particularly in the elderly and in patients with a history of seizures or other risk factors for seizures (e.g., head trauma; brain tumor; severe hepatic cirrhosis; metabolic disorders; CNS infections; excessive use of alcohol or sedatives; addiction to opiates, cocaine, or stimulants; diabetes treated with oral hypoglycemic agents or insulin). Bupropion as well as concomitant medications should be initiated at the lower end of the dosage range and titrated gradually as needed and as tolerated. The maximum recommended dosage for the specific bupropion formulation should not be exceeded. Bupropion should be discontinued and not restarted in patients who experience a seizure during treatment.

References (5)
  1. (2024) "Product Information. Zyban SR (bupropion)." GlaxoSmithKline Australia Pty Ltd
  2. (2024) "Product Information. Zyban (bupropion)." GlaxoSmithKline UK Ltd
  3. (2021) "Product Information. Teva-Bupropion XL (bupropion)." Teva Canada Limited
  4. (2023) "Product Information. BuPROPion Hydrochloride XL (buPROPion)." Camber Pharmaceuticals, Inc
  5. Munoz RP (2024) Serotonin syndrome induced by a combination of bupropion and SSRIs https://pubmed.ncbi.nlm.nih.gov/15602102/
Major

buPROPion perphenazine

Applies to: bupropion and amitriptyline / perphenazine

MONITOR CLOSELY: The use of bupropion is associated with a dose-related risk of seizures. The risk may be further increased when coadministered with other agents that can reduce the seizure threshold, including antidepressants, CNS stimulants, acetylcholinesterase inhibitors, phenothiazines, and dopaminergic blocking agents such as neuroleptics and metoclopramide. These agents are often individually epileptogenic and may have additive effects when combined. The estimated incidence of seizures is approximately 0.4% for immediate-release bupropion hydrochloride at dosages between 300 to 450 mg/day (equivalent to 348 to 522 mg/day of bupropion hydrobromide), but increases almost tenfold between 450 mg and 600 mg/day (equivalent to 522 and 696 mg/day of bupropion hydrobromide). Data for sustained-release (SR) bupropion hydrochloride revealed a seizure incidence of approximately 0.1% at dosages up to 300 mg/day and 0.4% at 400 mg/day. Likewise, in clinical trials, an overall seizure incidence of approximately 0.1% has been reported with extended-release (XL) bupropion hydrochloride at dosages up to 450 mg/day and approximately 0.39% at 450 mg/day. The 0.4% seizure incidence may exceed that of other marketed antidepressants by as much as 4-fold.

ADJUST DOSE: Coadministration with bupropion may increase the plasma concentrations of drugs that are metabolized by CYP450 2D6, including many antidepressants, neuroleptics, CNS stimulants (e.g., amphetamines), metoclopramide, and some acetylcholinesterase inhibitors (e.g., donepezil, galantamine). The mechanism is decreased clearance due to inhibition of CYP450 2D6 activity by bupropion and its metabolite, hydroxybupropion. Approximately 93% of Caucasians and more than 98% of Asians and individuals of African descent are extensive metabolizers of CYP450 2D6 and may be affected by this interaction. In a study of 15 male volunteers who were extensive metabolizers of CYP450 2D6, administration of a single 50 mg dose of desipramine following treatment with bupropion 150 mg twice daily increased the desipramine peak plasma concentration (Cmax), systemic exposure (AUC) and half-life by an average of 2-, 5-, and 2-fold, respectively. The effect was present for at least 7 days after the last dose of bupropion. A case report describes a 4-fold increase in plasma levels of imipramine and its metabolite, desipramine, in a 64-year-old woman following the addition of bupropion 225 mg/day. Plasma levels of desipramine were increased twofold more than the imipramine levels, which is consistent with the fact that desipramine is primarily metabolized by CYP450 2D6 while imipramine is also metabolized by other CYP450 isoenzymes. In another report, an 83-year-old woman became unsteady, confused, and lethargic following the addition of bupropion SR 300 mg/day. Her nortriptyline level was found to have increased by 185%. A later rechallenge prompted recurrence of the interaction. Likewise, a 62-year-old woman with no history of seizures developed a generalized tonic-clonic seizure in association with toxic trimipramine plasma levels following the addition of bupropion 300 mg/day. No further seizures occurred following dosage reductions of both drugs.

MANAGEMENT: Extreme caution is advised if bupropion is administered with any substance that can reduce the seizure threshold, particularly in the elderly and in patients with a history of seizures or other risk factors for seizures (e.g., head trauma; brain tumor; severe hepatic cirrhosis; metabolic disorders; CNS infections; excessive use of alcohol or sedatives; addiction to opiates, cocaine, or stimulants; diabetes treated with oral hypoglycemic agents or insulin). Bupropion as well as concomitant medications should be initiated at the lower end of the dosage range and titrated gradually as needed and as tolerated. The maximum recommended dosage for the specific bupropion formulation should not be exceeded. Clinical and laboratory monitoring may be appropriate for concomitant medications that are substrates of CYP450 2D6 whenever bupropion is added to or withdrawn from therapy. Bupropion should be discontinued and not restarted in patients who experience a seizure during treatment.

References (19)
  1. Rosenstein DL, Nelson JC, Jacobs SC (1993) "Seizures associated with antidepressants: a review." J Clin Psychiatry, 54, p. 289-99
  2. James WA, Lippmann S (1991) "Bupropion: overview and prescribing guidelines in depression." South Med J, 84, p. 222-4
  3. Johnston JA, Lineberry CG, Ascher JA, et al. (1991) "A 102-center prospective study of seizure in association with bupropion." J Clin Psychiatry, 52, p. 450-6
  4. Gittelman DK, Kirby MG (1993) "A seizure following bupropion overdose." J Clin Psychiatry, 54, p. 162
  5. Sheehan DV, Welch JB, Fishman SM (1986) "A case of bupropion-induced seizure." J Nerv Ment Dis, 174, p. 496-8
  6. Dufresne RL, Weber SS, Becker RE (1984) "Bupropion hydrochloride." Drug Intell Clin Pharm, 18, p. 957-64
  7. (2001) "Product Information. Wellbutrin (bupropion)." Glaxo Wellcome
  8. Masco HL, Kiev A, Holloman LC, Batey SR, Johnston JA, Lineberry CG (1994) "Safety and efficacy of bupropion and nortriptyline in outpatients with depression." Curr Ther Res Clin Exp, 55, p. 851-63
  9. Storrow AB (1994) "Bupropion overdose and seizure." Am J Emerg Med, 12, p. 183-4
  10. (2001) "Product Information. Wellbutrin SR (bupropion)." Glaxo Wellcome
  11. (2001) "Product Information. Zyban (bupropion)." Glaxo Wellcome
  12. Shad MU (1997) "A possible bupropion and imipramine interaction." J Clin Psychopharmacol, 17, p. 118
  13. Guzey C, Norstrom A, Spigset O (2002) "Change from the CYP2D6 extensive metabolizer to the poor metabolizer phenotype during treatment with bupropion." Ther Drug Monit, 24, p. 436-7
  14. Enns MW (2001) "Seizure during combination of trimipramine and bupropion." J Clin Psychiatry, 62, p. 476-7
  15. Pisani F, Spina E, Oteri G (1999) "Antidepressant drugs and seizure susceptibility: from in vitro data to clinical practice." Epilepsia, 40(Suppl 10), S48-56
  16. (2003) "Product Information. Wellbutrin XL (bupropion)." GlaxoSmithKline
  17. Shin YW, Erm TM, Choi EJ, Kim SY (2004) "A Case of Prolonged Seizure Activity After Combined Use of Bupropion and Clomipramine." Clin Neuropharmacol, 27, p. 192-194
  18. Canadian Pharmacists Association (2006) e-CPS. http://www.pharmacists.ca/function/Subscriptions/ecps.cfm?link=eCPS_quikLink
  19. (2009) "Product Information. Aplenzin (bupropion)." sanofi-aventis
Moderate

amitriptyline perphenazine

Applies to: amitriptyline / perphenazine and amitriptyline / perphenazine

MONITOR: Coadministration of a phenothiazine with a tricyclic antidepressant (TCA) may result in elevated plasma concentrations of one or both drugs as well as additive adverse effects. Most phenothiazines and TCAs have been found to undergo metabolism by CYP450 2D6, thus competitive inhibition of the enzyme may occur when more than one of these agents are administered. Although these drugs have been used together clinically, the possibility of increased risk of serious adverse effects such as central nervous system depression, tardive dyskinesia, hypotension, and prolongation of the QT interval should be considered, as many of these agents alone can and have produced these effects. In addition, excessive anticholinergic effects may occur in combination use, which can result in paralytic ileus, hyperthermia, heat stroke, and the anticholinergic intoxication syndrome. Peripheral symptoms of anticholinergic intoxication commonly include mydriasis, blurred vision, flushed face, fever, dry skin and mucous membranes, tachycardia, urinary retention, and constipation. Central symptoms may include memory loss, disorientation, incoherence, hallucinations, psychosis, delirium, hyperactivity, twitching or jerking movements, stereotypy, and seizures.

MANAGEMENT: Concurrent use of phenothiazines and TCAs should be approached with caution, particularly in the elderly and those with underlying organic brain disease, who tend to be more sensitive to the central anticholinergic effects of these drugs and in whom toxicity symptoms may be easily overlooked. Patients should be advised to notify their physician promptly if they experience potential symptoms of anticholinergic intoxication (e.g., abdominal pain, fever, heat intolerance, blurred vision, confusion, hallucinations) or cardiovascular toxicity (e.g., dizziness, palpitations, arrhythmias, syncope). Ambulatory patients should be counseled to avoid activities requiring mental alertness until they know how these agents affect them. A dosage reduction in one or both drugs may be necessary if excessive adverse effects develop.

References (16)
  1. Loga S, Curry S, Lader M (1981) "Interaction of chlorpromazine and nortriptyline in patients with schizophrenia." Clin Pharmacokinet, 6, p. 454-62
  2. Stadnyk AN, Glezos JD (1983) "Drug-induced heat stroke." Can Med Assoc J, 128, p. 957-9
  3. Bock JL, Nelson JC, Gray S, Jatlow PI (1983) "Desipramine hydroxylation: variability and effect of antipsychotic drugs." Clin Pharmacol Ther, 33, p. 322-8
  4. Gram LF, Overo KF (1972) "Drug interaction: inhibitory effect of neuroleptics on metabolism of tricyclic antidepressants in man." Br Med J, 1, p. 463-5
  5. El-Yousef MK, Manier DH (1974) "Tricyclic antidepressants and phenothiazines." JAMA, 229, p. 1419
  6. Hirschowitz J, Bennett JA, Zemlan FP, Garver DL (1983) "Thioridazine effect on desipramine plasma levels." J Clin Psychopharmacol, 3, p. 376-9
  7. Vandel S, Sandoz M, Vandel B, Bonin B, Allers G, Volmat R (1986) "Biotransformation of amitriptyline in man: interaction with phenothiazines." Neuropsychobiology, 15, p. 15-9
  8. Zelman S, Guillan R (1970) "Heat stroke in phenothiazine-treated patients: a report of three fatalities." Am J Psychiatry, 126, p. 1787-90
  9. Mann SC, Boger WP (1978) "Psychotropic drugs, summer heat and humidity, and hyperplexia: a danger restated." Am J Psychiatry, 135, p. 1097-100
  10. Warnes H, Lehmann HE, Ban TA (1967) "Adynamic ileus during psychoactive medication: a report of three fatal and five severe cases." Can Med Assoc J, 96, p. 1112-3
  11. Siris SG, Cooper TB, Rifkin AE, Brenner R, Lieberman JA (1982) "Plasma imipramine concentrations in patients receiving concomitant fluphenazine decanoate." Am J Psychiatry, 139, p. 104-6
  12. Johnson AL, Hollister LE, Berger PA (1981) "The anticholinergic intoxication syndrome: diagnosis and treatment." J Clin Psychiatry, 42, p. 313-7
  13. Lee BS (1986) "Possibility of hyperpyrexia with antipsychotic and anticholinergic drugs." J Clin Psychiatry, 47, p. 571
  14. Moreau A, Jones BD, Banno V (1986) "Chronic central anticholinergic toxicity in manic depressive illness mimicking dementia." Can J Psychiatry, 31, p. 339-41
  15. Hvizdos AJ, Bennett JA, Wells BG, Rappaport KB, Mendel SA (1983) "Anticholinergic psychosis in a patient receiving usual doses of haloperidol." Clin Pharm, 2, p. 174-8
  16. Maynard GL, Soni P (1996) "Thioridazine interferences with imipramine metabolism and measurement." Ther Drug Monit, 18, p. 729-31

Drug and food interactions

Moderate

buPROPion food

Applies to: bupropion

GENERALLY AVOID: Excessive use or abrupt discontinuation of alcohol after chronic ingestion may precipitate seizures in patients receiving bupropion. Additionally, there have been rare postmarketing reports of adverse neuropsychiatric events or reduced alcohol tolerance in patients who drank alcohol during treatment with bupropion. According to one forensic report, a patient died after taking large doses of both bupropion and alcohol. It is uncertain whether a drug interaction was involved. Single-dose studies in healthy volunteers given bupropion and alcohol failed to demonstrate either a significant pharmacokinetic or pharmacodynamic interaction.

MANAGEMENT: The manufacturer recommends that alcohol consumption be minimized or avoided during bupropion treatment. The use of bupropion is contraindicated in patients undergoing abrupt discontinuation of alcohol.

References (4)
  1. Posner J, Bye A, Jeal S, Peck AW, Whiteman P (1984) "Alcohol and bupropion pharmacokinetics in healthy male volunteers." Eur J Clin Pharmacol, 26, p. 627-30
  2. Ramcharitar V, Levine BS, Goldberger BA, Caplan YH (1992) "Bupropion and alcohol fatal intoxication: case report." Forensic Sci Int, 56, p. 151-6
  3. Hamilton MJ, Bush MS, Peck AW (1984) "The effect of bupropion, a new antidepressant drug, and alcohol and their interaction in man." Eur J Clin Pharmacol, 27, p. 75-80
  4. (2001) "Product Information. Wellbutrin (bupropion)." Glaxo Wellcome
Moderate

amitriptyline food

Applies to: amitriptyline / perphenazine

GENERALLY AVOID: Concomitant use of ethanol and a tricyclic antidepressant (TCA) may result altered TCA plasma levels and efficacy, and additive impairment of motor skills, especially driving skills. Acute ethanol ingestion may inhibit TCA metabolism, while chronic ingestion of large amounts of ethanol may induce hepatic TCA metabolism.

MANAGEMENT: Patients should be advised to avoid alcohol during TCA therapy. Alcoholics who have undergone detoxification should be monitored for decreased TCA efficacy. Dosage adjustments may be required.

References (7)
  1. Dorian P, Sellers EM, Reed KL, et al. (1983) "Amitriptyline and ethanol: pharmacokinetic and pharmacodynamic interaction." Eur J Clin Pharmacol, 25, p. 325-31
  2. Warrington SJ, Ankier SI, Turner P (1986) "Evaluation of possible interactions between ethanol and trazodone or amitriptyline." Neuropsychobiology, 15, p. 31-7
  3. Sandoz M, Vandel S, Vandel B, Bonin B, Allers G, Volmat R (1983) "Biotransformation of amitriptyline in alcoholic depressive patients." Eur J Clin Pharmacol, 24, p. 615-21
  4. Ciraulo DA, Barnhill JG, Jaffe JH (1988) "Clinical pharmacokinetics of imipramine and desipramine in alcoholics and normal volunteers." Clin Pharmacol Ther, 43, p. 509-18
  5. Seppala T, Linnoila M, Elonen E, Mattila MJ, Makl M (1975) "Effect of tricyclic antidepressants and alcohol on psychomotor skills related to driving." Clin Pharmacol Ther, 17, p. 515-22
  6. Ciraulo DA, Barnhill JG, Jaffe JH, Ciraulo AM, Tarmey MF (1990) "Intravenous pharmacokinetics of 2-hydroxyimipramine in alcoholics and normal controls." J Stud Alcohol, 51, p. 366-72
  7. Ciraulo DA, Alderson LM, Chapron DJ, Jaffe JH, Subbarao B, Kramer PA (1982) "Imipramine disposition in alcoholics." J Clin Psychopharmacol, 2, p. 2-7
Moderate

perphenazine food

Applies to: amitriptyline / perphenazine

GENERALLY AVOID: Concurrent use of ethanol and phenothiazines may result in additive CNS depression and psychomotor impairment. Also, ethanol may precipitate dystonic reactions in patients who are taking phenothiazines. The two drugs probably act on different sites in the brain, although the exact mechanism of the interaction is not known.

MANAGEMENT: Patients should be advised to avoid alcohol during phenothiazine therapy.

References (2)
  1. Lutz EG (1976) "Neuroleptic-induced akathisia and dystonia triggered by alcohol." JAMA, 236, p. 2422-3
  2. Freed E (1981) "Alcohol-triggered-neuroleptic-induced tremor, rigidity and dystonia." Med J Aust, 2, p. 44-5
Moderate

buPROPion food

Applies to: bupropion

MONITOR: Additive or synergistic effects on blood pressure may occur when bupropion is combined with sympathomimetic agents such as nasal decongestants, adrenergic bronchodilators, ophthalmic vasoconstrictors, and systemic vasopressors. Treatment with bupropion can result in elevated blood pressure and hypertension. In clinical practice, hypertension, in some cases severe and requiring acute treatment, has been observed in patients receiving bupropion alone and in combination with nicotine replacement therapy. These events have occurred in both patients with and without evidence of preexisting hypertension. Furthermore, postmarketing cases of hypertensive crisis have been reported during the initial titration phase with bupropion-naltrexone treatment.

MANAGEMENT: Caution is advised when bupropion is used with other drugs that increase dopaminergic or noradrenergic activity due to an increased risk of hypertension. Blood pressure and heart rate should be measured prior to initiating bupropion therapy and monitored at regular intervals consistent with usual clinical practice, particularly in patients with preexisting hypertension. Dose reduction or discontinuation of bupropion should be considered in patients who experience clinically significant and sustained increases in blood pressure or heart rate.

References (4)
  1. (2022) "Product Information. Auvelity (bupropion-dextromethorphan)." Axsome Therapeutics, Inc., 1
  2. (2022) "Product Information. Zyban (bupropion)." GlaxoSmithKline UK Ltd
  3. (2022) "Product Information. Wellbutrin XL (bupropion)." Bausch Health, Canada Inc.
  4. (2021) "Product Information. Contrave (bupropion-naltrexone)." Currax Pharmaceuticals LLC
Moderate

amitriptyline food

Applies to: amitriptyline / perphenazine

MONITOR: Smoking cessation may lead to elevated plasma concentrations and enhanced pharmacologic effects of drugs that are substrates of CYP450 1A2 (and possibly CYP450 1A1) and/or certain drugs with a narrow therapeutic index (e.g., flecainide, pentazocine). One proposed mechanism is related to the loss of CYP450 1A2 and 1A1 induction by polycyclic aromatic hydrocarbons in tobacco smoke; when smoking cessation agents are initiated and smoking stops, the metabolism of certain drugs may decrease leading to increased plasma concentrations. The mechanism by which smoking cessation affects narrow therapeutic index drugs that are not known substrates of CYP450 1A2 or 1A1 is unknown. The clinical significance of this interaction is unknown as clinical data are lacking.

MANAGEMENT: Until more information is available, caution is advisable if smoking cessation agents are used concomitantly with drugs that are substrates of CYP450 1A2 or 1A1 and/or those with a narrow therapeutic range. Patients receiving smoking cessation agents may require periodic dose adjustments and closer clinical and laboratory monitoring of medications that are substrates of CYP450 1A2 or 1A1.

References (4)
  1. (2024) "Product Information. Cytisine (cytisinicline)." Consilient Health Ltd
  2. jeong sh, Newcombe D, sheridan j, Tingle M (2015) "Pharmacokinetics of cytisine, an a4 b2 nicotinic receptor partial agonist, in healthy smokers following a single dose." Drug Test Anal, 7, p. 475-82
  3. Vaughan DP, Beckett AH, Robbie DS (1976) "The influence of smoking on the intersubject variation in pentazocine elimination." Br J Clin Pharmacol, 3, p. 279-83
  4. Zevin S, Benowitz NL (1999) "Drug interactions with tobacco smoking: an update" Clin Pharmacokinet, 36, p. 425-38
Moderate

buPROPion food

Applies to: bupropion

MONITOR: The concomitant use of bupropion and nicotine replacement for smoking cessation may increase the risk of hypertension. In a clinical study (n=250), 6.1% of patients who used sustained-release bupropion with nicotine transdermal system developed treatment-emergent hypertension, compared to 2.5% of patients treated with bupropion alone, 1.6% treated with nicotine alone, and 3.1% treated with placebo. Three patients in the bupropion plus nicotine group and one patient in the nicotine-only group discontinued treatment due to hypertension. The majority had evidence of preexisting hypertension.

MANAGEMENT: Blood pressure monitoring is recommended for patients concomitantly using bupropion and nicotine replacement for smoking cessation.

References (1)
  1. (2001) "Product Information. Zyban (bupropion)." Glaxo Wellcome

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

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