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Drug Interactions between bupivacaine / fentanyl and Ergocaf-PB

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

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Major

ergotamine fentaNYL

Applies to: Ergocaf-PB (belladonna / caffeine / ergotamine / pentobarbital) and bupivacaine / fentanyl

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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  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
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  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
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  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
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  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
  81. Hunter B, Kleinert MM, Osatnik J, Soria E (2006) "Serotonergic syndrome and abnormal ocular movements: worsening of rigidity by remifentanil?" Anesth Analg, 102, p. 1589
  82. Taylor JJ, Wilson JW, Estes LL (2006) "Linezolid and serotonergic drug interactions: a retrospective survey." Clin Infect Dis, 43, p. 180-7
  83. Strouse TB, Kerrihard TN, Forscher CA, Zakowski P (2006) "Serotonin syndrome precipitated by linezolid in a medically ill patient on duloxetine." J Clin Psychopharmacol, 26, p. 681-683
  84. Keegan MT, Brown DR, Rabinstein AA (2006) "Serotonin syndrome from the interaction of cyclobenzaprine with other serotoninergic drugs." Anesth Analg, 103, p. 1466-8
  85. Paruchuri P, Godkar D, Anandacoomarswamy D, Sheth K, Niranjan S (2006) "Rare case of serotonin syndrome with therapeutic doses of paroxetine." Am J Ther, 13, p. 550-552
  86. Steinberg M, Morin AK (2007) "Mild serotonin syndrome associated with concurrent linezolid and fluoxetine." Am J Health Syst Pharm, 64, p. 59-62
  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
  91. Rang ST, Field J, Irving C (2008) "Serotonin toxicity caused by an interaction between fentanyl and paroxetine." Can J Anaesth, 55, p. 521-5
  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
  99. (2013) "Product Information. Brintellix (vortioxetine)." Takeda Pharmaceuticals America
  100. (2023) "Product Information. Exxua (gepirone)." Mission Pharmacal Company, 1
View all 100 references

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Major

fentaNYL PENTobarbital

Applies to: bupivacaine / fentanyl and Ergocaf-PB (belladonna / caffeine / ergotamine / pentobarbital)

GENERALLY AVOID: Barbiturates may potentiate the central nervous system (CNS) depressant effects of opioids. Concomitant use may result in profound sedation, respiratory depression, coma, and death. On the other hand, some barbiturates can also induce the hepatic metabolism of opioids that are metabolized by CYP450 3A4 such as butorphanol, fentanyl, hydrocodone, methadone and oxycodone, resulting in enhanced clearance. Reduced analgesic efficacy or withdrawal symptoms may occur in patients maintained on their opioid regimen following the addition of a barbiturate. Conversely, discontinuation of the barbiturate may increase plasma concentrations of the opioid and potentiate the risk of overdose and fatal respiratory depression.

MANAGEMENT: The use of opioids in conjunction with other CNS depressants such as barbiturates should generally be avoided unless alternative treatment options are inadequate. If coadministration is necessary, the dosage and duration of each drug should be limited to the minimum required to achieve desired clinical effect, and patients should be closely monitored for signs and symptoms of CNS and respiratory depression. Particular caution is advisable when a barbiturate is added to or withdrawn from therapy in patients receiving opioids that are CYP450 3A4 substrates, as there may be an increased risk of withdrawal symptoms (e.g., restlessness, insomnia, sweating, lacrimation, or rhinorrhea) following initiation of the barbiturate and overdose following discontinuation. A dosage adjustment for one or both drugs may be required.

References

  1. Liu S-J, Wang RI (1984) "Case report of barbiturate-induced enhancement of methadone metabolism and withdrawal syndrome." Am J Psychiatry, 141, p. 1287-8
  2. Bell J, Seres V, Bowron P, Lewis J, Batey R (1988) "The use of serum methadone levels in patients receiving methadone maintenance." Clin Pharmacol Ther, 43, p. 623-9
  3. "Product Information. Duragesic Transdermal System (fentanyl)." Janssen Pharmaceutica, Titusville, NJ.
  4. (2001) "Product Information. OxyContin (oxycodone)." Purdue Frederick Company
  5. Cerner Multum, Inc. "UK Summary of Product Characteristics."
  6. (2006) "Product Information. Ionsys (fentanyl)." Ortho McNeil Pharmaceutical
  7. Cerner Multum, Inc. "Australian Product Information."
  8. (2013) "Product Information. Zohydro ER (hydrocodone)." Zogenix, Inc
  9. (2017) "Product Information. Butorphanol Tartrate (butorphanol)." Apotex Corporation
  10. (2018) "Product Information. Apadaz (acetaminophen-benzhydrocodone)." KemPharm, Inc
View all 10 references

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Moderate

ergotamine PENTobarbital

Applies to: Ergocaf-PB (belladonna / caffeine / ergotamine / pentobarbital) and Ergocaf-PB (belladonna / caffeine / ergotamine / pentobarbital)

MONITOR: Coadministration with inducers of CYP450 3A4 may decrease the plasma concentrations of ergot alkaloids, which are substrates of the isoenzyme.

MANAGEMENT: The potential for diminished pharmacologic effects of ergot alkaloids should be considered during coadministration with CYP450 3A4 inducers. Alternative treatments may be required if an interaction is suspected.

References

  1. Cerner Multum, Inc. "UK Summary of Product Characteristics."
  2. Cerner Multum, Inc. "Australian Product Information."
  3. (2010) "Product Information. Methergine (methylergonovine)." Novartis Pharmaceuticals

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Moderate

fentaNYL belladonna

Applies to: bupivacaine / fentanyl and Ergocaf-PB (belladonna / caffeine / ergotamine / pentobarbital)

MONITOR: Coadministration of opioids with anticholinergic agents may result in additive central nervous system (CNS), gastrointestinal, and genitourinary effects. The risk and/or severity of adverse effects such as sedation, dizziness, confusion, cognitive and psychomotor impairment, dry mouth, constipation, and urinary retention may increase. Severe constipation may lead to paralytic ileus in some cases.

MANAGEMENT: Caution and close monitoring of central nervous system, gastrointestinal, and genitourinary adverse effects are recommended when opioids are used with anticholinergic agents. Ambulatory patients should be counseled to avoid hazardous activities requiring 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. (2002) "Product Information. Demerol (meperidine)." Sanofi Winthrop Pharmaceuticals
  2. (2002) "Product Information. Dolophine (methadone)." Lilly, Eli and Company
  3. (2001) "Product Information. Tylenol with Codeine (acetaminophen-codeine)." Janssen Pharmaceuticals
  4. "Product Information. Duragesic Transdermal System (fentanyl)." Janssen Pharmaceutica, Titusville, NJ.
  5. (2001) "Product Information. Ultram (tramadol)." McNeil Pharmaceutical
  6. (2001) "Product Information. OxyContin (oxycodone)." Purdue Frederick Company
  7. (2001) "Product Information. Kadian (morphine)." Astra-Zeneca Pharmaceuticals
  8. (2004) "Product Information. DepoDur (morphine liposomal)." Endo Laboratories LLC
  9. Cerner Multum, Inc. "UK Summary of Product Characteristics."
  10. (2006) "Product Information. Opana (oxymorphone)." Endo Laboratories LLC
  11. (2009) "Product Information. Nucynta (tapentadol)." PriCara Pharmaceuticals
  12. (2010) "Product Information. Exalgo (hydromorphone)." Covidien
  13. (2016) "Product Information. Belbuca (buprenorphine)." Endo Pharmaceuticals Solutions Inc
  14. (2017) "Product Information. Alfentanil Hydrochloride (alfentanil)." Akorn Inc
  15. (2017) "Product Information. SUFentanil Citrate (sufentanil)." Akorn Inc
  16. (2017) "Product Information. Lortab (acetaminophen-hydrocodone)." Akorn Inc
  17. (2017) "Product Information. Levorphanol Tartrate (levorphanol)." Sentynl Therapeutics
  18. (2018) "Product Information. Naloxone HCl-Pentazocine HCl (naloxone-pentazocine)." Actavis U.S. (Amide Pharmaceutical Inc)
  19. (2018) "Product Information. Apadaz (acetaminophen-benzhydrocodone)." KemPharm, Inc
View all 19 references

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Drug and food interactions

Major

fentaNYL food

Applies to: bupivacaine / fentanyl

GENERALLY AVOID: Alcohol may potentiate the central nervous system (CNS) depressant effects of opioid analgesics including fentanyl. 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: Consumption of grapefruit juice during treatment with oral transmucosal formulations of fentanyl may result in increased plasma concentrations of fentanyl, which is primarily metabolized by CYP450 3A4 isoenzyme in the liver and intestine. Certain compounds present in grapefruit are known to inhibit CYP450 3A4 and may increase the bioavailability of swallowed fentanyl (reportedly up to 75% of a dose) and/or decrease its systemic clearance. The clinical significance is unknown. In 12 healthy volunteers, consumption of 250 mL regular-strength grapefruit juice the night before and 100 mL double-strength grapefruit juice one hour before administration of oral transmucosal fentanyl citrate (600 or 800 mcg lozenge) did not significantly affect fentanyl pharmacokinetics, overall extent of fentanyl-induced miosis (miosis AUC), or subjective self-assessment of various clinical effects compared to control. However, pharmacokinetic alterations associated with interactions involving grapefruit juice are often subject to a high degree of interpatient variability. The possibility of significant interaction in some patients should be considered.

MANAGEMENT: Patients should not consume alcoholic beverages or use drug products that contain alcohol during treatment with fentanyl. Any history of alcohol or illicit drug use should be considered when prescribing fentanyl, and therapy initiated at a lower dosage if necessary. Patients should be closely monitored for signs and symptoms of sedation, respiratory depression, and hypotension. Due to a high degree of interpatient variability with respect to grapefruit juice interactions, patients treated with fentanyl should preferably avoid the consumption of grapefruit and grapefruit juice. In addition, patients receiving transdermal formulations of fentanyl should be cautioned that drug interactions and drug effects may be observed for a prolonged period beyond removal of the patch, as significant amounts of fentanyl are absorbed from the skin for 17 hours or more after the patch is removed.

References

  1. "Product Information. Duragesic Transdermal System (fentanyl)." Janssen Pharmaceutica, Titusville, NJ.
  2. (2001) "Product Information. Actiq (fentanyl)." Abbott Pharmaceutical
  3. Kharasch ED, Whittington D, Hoffer C (2004) "Influence of Hepatic and Intestinal Cytochrome P4503A Activity on the Acute Disposition and Effects of Oral Transmucosal Fentanyl Citrate." Anesthesiology, 101, p. 729-737
  4. Tateishi T, Krivoruk Y, Ueng YF, Wood AJ, Guengerich FP, Wood M (1996) "Identification of human cytochrome P-450 3A4 as the enzyme responsible for fentanyl and sufentanil N-dealkylation." Anesth Analg, 82, p. 167-72
  5. Labroo RB, Paine MF, Thummel KE, Kharasch ED (1997) "Fentanyl metabolism by human hepatic and intestinal cytochrome P450 3A4: implicaitons for interindividual variability in disposition, efficacy, and drug interactions." Drug Metab Dispos, 25, p. 1072-80
View all 5 references

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Major

PENTobarbital food

Applies to: Ergocaf-PB (belladonna / caffeine / ergotamine / pentobarbital)

GENERALLY AVOID: Concurrent acute use of barbiturates and ethanol may result in additive CNS effects, including impaired coordination, sedation, and death. Tolerance of these agents may occur with chronic use. The mechanism is related to inhibition of microsomal enzymes acutely and induction of hepatic microsomal enzymes chronically.

MANAGEMENT: The combination of ethanol and barbiturates should be avoided.

References

  1. Gupta RC, Kofoed J (1966) "Toxological statistics for barbiturates, other sedatives, and tranquilizers in Ontario: a 10-year survey." Can Med Assoc J, 94, p. 863-5
  2. Misra PS, Lefevre A, Ishii H, Rubin E, Lieber CS (1971) "Increase of ethanol, meprobamate and pentobarbital metabolism after chronic ethanol administration in man and in rats." Am J Med, 51, p. 346-51
  3. Saario I, Linnoila M (1976) "Effect of subacute treatment with hypnotics, alone or in combination with alcohol, on psychomotor skills related to driving." Acta Pharmacol Toxicol (Copenh), 38, p. 382-92
  4. Stead AH, Moffat AC (1983) "Quantification of the interaction between barbiturates and alcohol and interpretation of fatal blood concentrations." Hum Toxicol, 2, p. 5-14
  5. Seixas FA (1979) "Drug/alcohol interactions: avert potential dangers." Geriatrics, 34, p. 89-102
View all 5 references

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Moderate

ergotamine food

Applies to: Ergocaf-PB (belladonna / caffeine / ergotamine / pentobarbital)

MONITOR: Grapefruit juice may increase the plasma concentrations of orally administered drugs that are substrates of the CYP450 3A4 isoenzyme. The proposed mechanism is inhibition of CYP450 3A4-mediated first-pass metabolism in the gut wall by certain compounds present in grapefruit. Because grapefruit juice inhibits primarily intestinal rather than hepatic CYP450 3A4, the magnitude of interaction is greatest for those drugs that undergo significant presystemic metabolism by CYP450 3A4 (i.e., drugs with low oral bioavailability). In general, the effect of grapefruit juice is concentration-, dose- and preparation-dependent, and can vary widely among brands. Certain preparations of grapefruit juice (e.g., high dose, double strength) have sometimes demonstrated potent inhibition of CYP450 3A4, while other preparations (e.g., low dose, single strength) have typically demonstrated moderate inhibition. 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.

MANAGEMENT: Patients who regularly consume grapefruit or grapefruit juice should be monitored for adverse effects and altered plasma concentrations of drugs that undergo significant presystemic metabolism by CYP450 3A4. Grapefruit and grapefruit juice should be avoided if an interaction is suspected. Orange juice is not expected to interact with these drugs.

References

  1. Edgar B, Bailey D, Bergstrand R, et al. (1992) "Acute effects of drinking grapefruit juice on the pharmacokinetics and dynamics on felodipine and its potential clinical relevance." Eur J Clin Pharmacol, 42, p. 313-7
  2. Jonkman JH, Sollie FA, Sauter R, Steinijans VW (1991) "The influence of caffeine on the steady-state pharmacokinetics of theophylline." Clin Pharmacol Ther, 49, p. 248-55
  3. Bailey DG, Arnold JM, Munoz C, Spence JD (1993) "Grapefruit juice--felodipine interaction: mechanism, predictability, and effect of naringin." Clin Pharmacol Ther, 53, p. 637-42
  4. Bailey DG, Arnold JMO, Spence JD (1994) "Grapefruit juice and drugs - how significant is the interaction." Clin Pharmacokinet, 26, p. 91-8
  5. Sigusch H, Hippius M, Henschel L, Kaufmann K, Hoffmann A (1994) "Influence of grapefruit juice on the pharmacokinetics of a slow release nifedipine formulation." Pharmazie, 49, p. 522-4
  6. Bailey DG, Arnold JM, Strong HA, Munoz C, Spence JD (1993) "Effect of grapefruit juice and naringin on nisoldipine pharmacokinetics." Clin Pharmacol Ther, 54, p. 589-94
  7. Yamreudeewong W, Henann NE, Fazio A, Lower DL, Cassidy TG (1995) "Drug-food interactions in clinical practice." J Fam Pract, 40, p. 376-84
  8. (1995) "Grapefruit juice interactions with drugs." Med Lett Drugs Ther, 37, p. 73-4
  9. Hukkinen SK, Varhe A, Olkkola KT, Neuvonen PJ (1995) "Plasma concentrations of triazolam are increased by concomitant ingestion of grapefruit juice." Clin Pharmacol Ther, 58, p. 127-31
  10. 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
  11. Majeed A, Kareem A (1996) "Effect of grapefruit juice on cyclosporine pharmacokinetics." Pediatr Nephrol, 10, p. 395
  12. Clifford CP, Adams DA, Murray S, Taylor GW, Wilkins MR, Boobis AR, Davies DS (1996) "Pharmacokinetic and cardiac effects of terfenadine after inhibition of its metabolism by grapefruit juice." Br J Clin Pharmacol, 42, p662
  13. Josefsson M, Zackrisson AL, Ahlner J (1996) "Effect of grapefruit juice on the pharmacokinetics of amlodipine in healthy volunteers." Eur J Clin Pharmacol, 51, p. 189-93
  14. Kantola T, Kivisto KT, Neuvonen PJ (1998) "Grapefruit juice greatly increases serum concentrations of lovastatin and lovastatin acid." Clin Pharmacol Ther, 63, p. 397-402
  15. Ozdemir M, Aktan Y, Boydag BS, Cingi MI, Musmul A (1998) "Interaction between grapefruit juice and diazepam in humans." Eur J Drug Metab Pharmacokinet, 23, p. 55-9
  16. Bailey DG, Malcolm J, Arnold O, Spence JD (1998) "Grapefruit juice-drug interactions." Br J Clin Pharmacol, 46, p. 101-10
  17. Bailey DG, Kreeft JH, Munoz C, Freeman DJ, Bend JR (1998) "Grapefruit juice felodipine interaction: Effect of naringin and 6',7'-dihydroxybergamottin in humans." Clin Pharmacol Ther, 64, p. 248-56
  18. Garg SK, Kumar N, Bhargava VK, Prabhakar SK (1998) "Effect of grapefruit juice on carbamazepine bioavailability in patients with epilepsy." Clin Pharmacol Ther, 64, p. 286-8
  19. Lilja JJ, Kivisto KT, Neuvonen PJ (1998) "Grapefruit juice-simvastatin interaction: Effect on serum concentrations of simvastatin, simvastatin acid, and HMG-CoA reductase inhibitors." Clin Pharmacol Ther, 64, p. 477-83
  20. Fuhr U, Maier-Bruggemann A, Blume H, et al. (1998) "Grapefruit juice increases oral nimodipine bioavailability." Int J Clin Pharmacol Ther, 36, p. 126-32
  21. Lilja JJ, Kivisto KT, Neuvonen PJ (1999) "Grapefruit juice increases serum concentrations of atorvastatin and has no effect on pravastatin." Clin Pharmacol Ther, 66, p. 118-27
  22. Eagling VA, Profit L, Back DJ (1999) "Inhibition of the CYP3A4-mediated metabolism and P-glycoprotein-mediated transport of the HIV-I protease inhibitor saquinavir by grapefruit juice components." Br J Clin Pharmacol, 48, p. 543-52
  23. Damkier P, Hansen LL, Brosen K (1999) "Effect of diclofenac, disulfiram, itraconazole, grapefruit juice and erythromycin on the pharmacokinetics of quinidine." Br J Clin Pharmacol, 48, p. 829-38
  24. Lee AJ, Chan WK, Harralson AF, Buffum J, Bui BCC (1999) "The effects of grapefruit juice on sertraline metabolism: An in vitro and in vivo study." Clin Ther, 21, p. 1890-9
  25. Dresser GK, Spence JD, Bailey DG (2000) "Pharmacokinetic-pharmacodynamic consequences and clinical relevance of cytochrome P450 3A4 inhibition." Clin Pharmacokinet, 38, p. 41-57
  26. Gunston GD, Mehta U (2000) "Potentially serious drug interactions with grapefruit juice." S Afr Med J, 90, p. 41
  27. Takanaga H, Ohnishi A, Maatsuo H, et al. (2000) "Pharmacokinetic analysis of felodipine-grapefruit juice interaction based on an irreversible enzyme inhibition model." Br J Clin Pharmacol, 49, p. 49-58
  28. Libersa CC, Brique SA, Motte KB, et al. (2000) "Dramatic inhibition of amiodarone metabolism induced by grapefruit juice." Br J Clin Pharmacol, 49, p. 373-8
  29. 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
  30. Zaidenstein R, Soback S, Gips M, Avni B, Dishi V, Weissgarten Y, Golik A, Scapa E (2001) "Effect of grapefruit juice on the pharmacokinetics of losartan and its active metabolite E3174 in healthy volunteers." Ther Drug Monit, 23, p. 369-73
  31. Sato J, Nakata H, Owada E, Kikuta T, Umetsu M, Ito K (1993) "Influence of usual intake of dietary caffeine on single-dose kinetics of theophylline in healthy human subjects." Eur J Clin Pharmacol, 44, p. 295-8
  32. Flanagan D (2005) "Understanding the grapefruit-drug interaction." Gen Dent, 53, 282-5; quiz 286
View all 32 references

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Moderate

belladonna food

Applies to: Ergocaf-PB (belladonna / caffeine / ergotamine / pentobarbital)

GENERALLY AVOID: Use of anticholinergic agents with alcohol may result in sufficient impairment of attention so as to render driving and operating machinery more hazardous. In addition, the potential for abuse may be increased with the combination. The mechanism of interaction is not established but may involve additive depressant effects on the central nervous system. No effect of oral propantheline or atropine on blood alcohol levels was observed in healthy volunteers when administered before ingestion of a standard ethanol load. However, one study found impairment of attention in subjects given atropine 0.5 mg or glycopyrrolate 1 mg in combination with alcohol.

MANAGEMENT: Alcohol should generally be avoided during therapy with anticholinergic agents. Patients should be counseled to avoid activities requiring mental alertness until they know how these agents affect them.

References

  1. Linnoila M (1973) "Drug effects on psychomotor skills related to driving: interaction of atropine, glycopyrrhonium and alcohol." Eur J Clin Pharmacol, 6, p. 107-12

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Moderate

ergotamine food

Applies to: Ergocaf-PB (belladonna / caffeine / ergotamine / pentobarbital)

MONITOR: Nicotine may cause vasoconstriction in some patients and potentiate the ischemic response to ergot alkaloids.

MANAGEMENT: Caution may be advisable when ergot alkaloids are used in combination with nicotine products. Patients should be advised to seek immediate medical attention if they experience potential symptoms of ischemia such as coldness, pallor, cyanosis, numbness, tingling, or pain in the extremities; muscle weakness; severe or worsening headache; visual disturbances; severe abdominal pain; chest pain; and shortness of breath.

References

  1. (2001) "Product Information. Migranal (dihydroergotamine nasal)." Novartis Pharmaceuticals
  2. (2004) "Product Information. Cafergot (caffeine-ergotamine)." Novartis Pharmaceuticals
  3. Cerner Multum, Inc. "UK Summary of Product Characteristics."
  4. Cerner Multum, Inc. "Australian Product Information."
View all 4 references

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Minor

caffeine food

Applies to: Ergocaf-PB (belladonna / caffeine / ergotamine / pentobarbital)

The effect of grapefruit juice on the pharmacologic activity of caffeine is controversial. One report suggests that grapefruit juice increases the effect of caffeine. The proposed mechanism is inhibition of cytochrome P-450 metabolism of caffeine. However, a well-conducted pharmacokinetic/pharmacodynamic study did not demonstrate this effect. The clinical significance of this potential interaction is unknown.

References

  1. (1995) "Grapefruit juice interactions with drugs." Med Lett Drugs Ther, 37, p. 73-4
  2. Maish WA, Hampton EM, Whitsett TL, Shepard JD, Lovallo WR (1996) "Influence of grapefruit juice on caffeine pharmacokinetics and pharmacodynamics." Pharmacotherapy, 16, p. 1046-52

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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.