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Drug Interactions between aluminum hydroxide / aspirin / calcium carbonate / magnesium hydroxide and Selfemra

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

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Interactions between your drugs

Moderate

aspirin FLUoxetine

Applies to: aluminum hydroxide / aspirin / calcium carbonate / magnesium hydroxide and Selfemra (fluoxetine)

MONITOR: Serotonin reuptake inhibitors (SRIs) may potentiate the risk of bleeding in patients treated with ulcerogenic agents and agents that affect hemostasis such as anticoagulants, platelet inhibitors, thrombin inhibitors, thrombolytic agents, or agents that commonly cause thrombocytopenia. The tricyclic antidepressant, clomipramine, is also a strong SRI and may interact similarly. Serotonin release by platelets plays an important role in hemostasis, thus SRIs may alter platelet function and induce bleeding. Published case reports have documented the occurrence of bleeding episodes in patients treated with psychotropic agents that interfere with serotonin reuptake. Bleeding events related to SRIs have ranged from ecchymosis, hematoma, epistaxis, and petechiae to life-threatening hemorrhages. Additional epidemiological studies have confirmed the association between use of these agents and the occurrence of upper gastrointestinal bleeding, and concurrent use of NSAIDs or aspirin was found to potentiate the risk. Preliminary data also suggest that there may be a pharmacodynamic interaction between SSRIs and oral anticoagulants that can cause an increased bleeding diathesis. Concomitant administration of paroxetine and warfarin, specifically, has been associated with an increased frequency of bleeding without apparent changes in the disposition of either drug or changes in the prothrombin time. Bleeding has also been reported with fluoxetine and warfarin, while citalopram and sertraline have been reported to prolong the prothrombin time of patients taking warfarin by about 5% to 8%. In the RE-LY study (Randomized Evaluation of Long-term anticoagulant therapy), SRIs were associated with an increased risk of bleeding in all treatment groups.

MANAGEMENT: Caution is advised if SRIs or clomipramine are used in combination with other drugs that affect hemostasis. Close clinical and laboratory observation for hematologic complications is recommended. Patients should be advised to promptly report any signs of bleeding to their physician, including pain, swelling, headache, dizziness, weakness, prolonged bleeding from cuts, increased menstrual flow, vaginal bleeding, nosebleeds, bleeding of gums from brushing, unusual bleeding or bruising, red or brown urine, or red or black stools.

References

  1. Aranth J, Lindberg C "Bleeding, a side effect of fluoxetine." Am J Psychiatry 149 (1992): 412
  2. Claire RJ, Servis ME, Cram DL Jr "Potential interaction between warfarin sodium and fluoxetine." Am J Psychiatry 148 (1991): 1604
  3. Yaryura-Tobias JA, Kirschen H, Ninan P, Mosberg HJ "Fluoxetine and bleeding in obsessive-compulsive disorder." Am J Psychiatry 148 (1991): 949
  4. Humphries JE, Wheby MS, VandenBerg SR "Fluoxetine and the bleeding time." Arch Pathol Lab Med 114 (1990): 727-8
  5. Alderman CP, Moritz CK, Ben-Tovim DI "Abnormal platelet aggregation associated with fluoxetine therapy." Ann Pharmacother 26 (1992): 1517-9
  6. Ciraulo DA, Shader RI "Fluoxetine drug-drug interactions. II." J Clin Psychopharmacol 10 (1990): 213-7
  7. "Product Information. Zoloft (sertraline)." Roerig Division PROD (2001):
  8. Woolfrey S, Gammack NS, Dewar MS, Brown PJ "Fluoxetine-warfarin interaction." BMJ 307 (1993): 241
  9. "Product Information. Prozac (fluoxetine)." Dista Products Company PROD (2001):
  10. "Product Information. Effexor (venlafaxine)." Wyeth-Ayerst Laboratories PROD (2001):
  11. Bannister SJ, Houser VP, Hulse JD, Kisicki JC, Rasmussen JG "Evaluation of the potential for interactions of paroxetine with diazepam, cimetidine, warfarin, and digoxin." Acta Psychiatr Scand Suppl 350 (1989): 102-6
  12. "Product Information. Paxil (paroxetine)." GlaxoSmithKline PROD (2001):
  13. Messiha FS "Fluoxetine - adverse effects and drug-drug interactions." J Toxicol Clin Toxicol 31 (1993): 603-30
  14. Ottervanger JP, Stricker BH, Huls J, Weeda JN "Bleeding attributed to the intake of paroxetine." Am J Psychiatry 151 (1994): 781-2
  15. "Product Information. Luvox (fluvoxamine)." Solvay Pharmaceuticals Inc PROD (2001):
  16. Krivy J, Wiener J "Sertraline and platelet counts in idiopathic thrombocytopenia purpura." Lancet 345 (1995): 132
  17. Skop BP, Brown TM "Potential vascular and bleeding complications of treatment with selective serotonin reuptake inhibitors." Psychosomatics 37 (1996): 12-6
  18. Pai VB, Kelly MW "Bruising associated with the use of fluoxetine." Ann Pharmacother 30 (1996): 786-8
  19. Alderman CP, Seshadri P, Ben-Tovim DI "Effects of serotonin reuptake inhibitors on hemostasis." Ann Pharmacother 30 (1996): 1232-4
  20. Leung M, Shore R "Fluvoxamine-associated bleeding." Can J Psychiatry 41 (1996): 604-5
  21. Dent LA, Orrock MW "Warfarin-fluoxetine and diazepam-fluoxetine interaction." Pharmacotherapy 17 (1997): 170-2
  22. Ford MA, Anderson ML, Rindone JP, Jaskar DW "Lack of effect of fluoxetine on the hypoprothrombinemic response of warfarin." J Clin Psychopharmacol 17 (1997): 110-2
  23. "Product Information. Celexa (citalopram)." Forest Pharmaceuticals PROD (2001):
  24. de Abajo FJ, Rodriguez LA, Montero D "Association between selective serotonin reuptake inhibitors and upper gastrointestinal bleeding: population based case-control study." BMJ 319 (1999): 1106-9
  25. de Abajo FJ, Jick H, Derby L, Jick S, Schmitz S "Intracranial haemorrhage and use of selective serotonin reuptake inhibitors." Br J Clin Pharmacol 50 (2000): 43-7
  26. Settle EC "Antidepressant drugs: disturbing and potentially dangerous adverse effects." J Clin Psychiatry 59 Suppl 16 (1998): 25-30
  27. Hergovich N, Aigner M, Eichler HG, Entlicher J, Drucker C, Jilma B "Paroxetine decreases platelet serotonin storage and platelet function in human beings." Clin Pharmacol Ther 68 (2000): 435-42
  28. Layton D, Clark DWJ, Pearce GL, Shakir SAW "Is there an association between selective serotonin reuptake inhibitors and risk of abnormal bleeding? Results from a cohort study based on prescription event monitoring in England." Eur J Clin Pharmacol 57 (2001): 167-76
  29. "Product Information. Lexapro (escitalopram)." Forest Pharmaceuticals (2002):
  30. de Maistre E, Allart C, Lecompte T, Bollaert PE "Severe bleeding associated with use of low molecular weight heparin and selective serotonin reuptake inhibitors." Am J Med 113 (2002): 530-2
  31. Dalton SO, Johansen C, Mellemkjaer L, Norgard B, Sorensen HT, Olsen JH "Use of selective serotonin reuptake inhibitors and risk of upper gastrointestinal tract bleeding: a population-based cohort study." Arch Intern Med 163 (2003): 59-64
  32. "Product Information. Cymbalta (duloxetine)." Lilly, Eli and Company (2004):
  33. Tata LJ, Fortun PJ, Hubbard RB, et al. "Does concurrent prescription of selective serotonin reuptake inhibitors and non-steroidal anti-inflammatory drugs substantially increase the risk of upper gastrointestinal bleeding?" Aliment Pharmacol Ther 22 (2005): 175-81
  34. Cerner Multum, Inc. "Australian Product Information." O 0
  35. "Product Information. Pristiq (desvenlafaxine)." Wyeth Laboratories (2008):
  36. "Product Information. Savella (milnacipran)." Forest Pharmaceuticals (2009):
  37. "Product Information. Viibryd (vilazodone)." Trovis Pharmaceuticals LLC (2011):
  38. "Product Information. Fetzima (levomilnacipran)." Forest Pharmaceuticals (2013):
  39. "Product Information. Brintellix (vortioxetine)." Takeda Pharmaceuticals America (2013):
View all 39 references

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Moderate

aspirin calcium carbonate

Applies to: aluminum hydroxide / aspirin / calcium carbonate / magnesium hydroxide and aluminum hydroxide / aspirin / calcium carbonate / magnesium hydroxide

MONITOR: Chronic administration of antacids may reduce serum salicylate concentrations in patients receiving large doses of aspirin or other salicylates. The mechanism involves reduction in salicylate renal tubular reabsorption due to urinary alkalinization by antacids, resulting in increased renal salicylate clearance. In three children treated with large doses of aspirin for rheumatic fever, serum salicylate levels declined 30% to 70% during coadministration with a magnesium and aluminum hydroxide antacid. Other studies have found similar, albeit less dramatic results. Antacids reportedly have no effect on the oral bioavailability of aspirin in healthy adults. However, administration of antacids containing either aluminum and magnesium hydroxide or calcium carbonate two hours before aspirin dosing led to reduced absorption of aspirin in uremic patients.

MANAGEMENT: Patients treated chronically with antacids (or oral medications that contain antacids such as didanosine buffered tablets or pediatric oral solution) and large doses of salicylates (i.e. 3 g/day or more) should be monitored for potentially diminished or inadequate analgesic and anti-inflammatory effects, and the salicylate dosage adjusted if necessary.

References

  1. D'Arcy PF, McElnay JC "Drug-antacid interactions: assessment of clinical importance." Drug Intell Clin Pharm 21 (1987): 607-17
  2. Gaspari F, Vigano G, Locatelli M, Remuzzi G "Influence of antacid administrations on aspirin absorption in patients with chronic renal failure on maintenance hemodialysis." Am J Kidney Dis 11 (1988): 338-42
  3. Furst DE "Clinically important interactions of nonsteroidal antiinflammatory drugs with other medications." J Rheumatol Suppl 17 (1988): 58-62
  4. Miners JO "Drug interactions involving aspirin (acetylsalicylic acid) and salicylic acid." Clin Pharmacokinet 17 (1989): 327-44
  5. Levy G, Lampman T, Kamath BL, Garrettson LK "Decreased serum salicylate concentrations in children with rheumatic fever treated with antacid." N Engl J Med 293 (1975): 323-5
  6. Shastri RA "Effect of antacids on salicylate kinetics." Int J Clin Pharmacol Ther Toxicol 23 (1985): 480-4
  7. Covington TR, eds., Lawson LC, Young LL "Handbook of Nonprescription Drugs." Washington, DC: American Pharmaceutical Association (1993):
  8. Brouwers JRBJ, Desmet PAGM "Pharmacokinetic-pharmacodynamic drug interactions with nonsteroidal anti-inflammatory drugs." Clin Pharmacokinet 27 (1994): 462-85
  9. "Product Information. Diflunisal (diflunisal)." Chartwell RX, LLC. (2023):
View all 9 references

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Moderate

aspirin aluminum hydroxide

Applies to: aluminum hydroxide / aspirin / calcium carbonate / magnesium hydroxide and aluminum hydroxide / aspirin / calcium carbonate / magnesium hydroxide

MONITOR: Chronic administration of antacids may reduce serum salicylate concentrations in patients receiving large doses of aspirin or other salicylates. The mechanism involves reduction in salicylate renal tubular reabsorption due to urinary alkalinization by antacids, resulting in increased renal salicylate clearance. In three children treated with large doses of aspirin for rheumatic fever, serum salicylate levels declined 30% to 70% during coadministration with a magnesium and aluminum hydroxide antacid. Other studies have found similar, albeit less dramatic results. Antacids reportedly have no effect on the oral bioavailability of aspirin in healthy adults. However, administration of antacids containing either aluminum and magnesium hydroxide or calcium carbonate two hours before aspirin dosing led to reduced absorption of aspirin in uremic patients.

MANAGEMENT: Patients treated chronically with antacids (or oral medications that contain antacids such as didanosine buffered tablets or pediatric oral solution) and large doses of salicylates (i.e. 3 g/day or more) should be monitored for potentially diminished or inadequate analgesic and anti-inflammatory effects, and the salicylate dosage adjusted if necessary.

References

  1. D'Arcy PF, McElnay JC "Drug-antacid interactions: assessment of clinical importance." Drug Intell Clin Pharm 21 (1987): 607-17
  2. Gaspari F, Vigano G, Locatelli M, Remuzzi G "Influence of antacid administrations on aspirin absorption in patients with chronic renal failure on maintenance hemodialysis." Am J Kidney Dis 11 (1988): 338-42
  3. Furst DE "Clinically important interactions of nonsteroidal antiinflammatory drugs with other medications." J Rheumatol Suppl 17 (1988): 58-62
  4. Miners JO "Drug interactions involving aspirin (acetylsalicylic acid) and salicylic acid." Clin Pharmacokinet 17 (1989): 327-44
  5. Levy G, Lampman T, Kamath BL, Garrettson LK "Decreased serum salicylate concentrations in children with rheumatic fever treated with antacid." N Engl J Med 293 (1975): 323-5
  6. Shastri RA "Effect of antacids on salicylate kinetics." Int J Clin Pharmacol Ther Toxicol 23 (1985): 480-4
  7. Covington TR, eds., Lawson LC, Young LL "Handbook of Nonprescription Drugs." Washington, DC: American Pharmaceutical Association (1993):
  8. Brouwers JRBJ, Desmet PAGM "Pharmacokinetic-pharmacodynamic drug interactions with nonsteroidal anti-inflammatory drugs." Clin Pharmacokinet 27 (1994): 462-85
  9. "Product Information. Diflunisal (diflunisal)." Chartwell RX, LLC. (2023):
View all 9 references

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Moderate

aspirin magnesium hydroxide

Applies to: aluminum hydroxide / aspirin / calcium carbonate / magnesium hydroxide and aluminum hydroxide / aspirin / calcium carbonate / magnesium hydroxide

MONITOR: Chronic administration of antacids may reduce serum salicylate concentrations in patients receiving large doses of aspirin or other salicylates. The mechanism involves reduction in salicylate renal tubular reabsorption due to urinary alkalinization by antacids, resulting in increased renal salicylate clearance. In three children treated with large doses of aspirin for rheumatic fever, serum salicylate levels declined 30% to 70% during coadministration with a magnesium and aluminum hydroxide antacid. Other studies have found similar, albeit less dramatic results. Antacids reportedly have no effect on the oral bioavailability of aspirin in healthy adults. However, administration of antacids containing either aluminum and magnesium hydroxide or calcium carbonate two hours before aspirin dosing led to reduced absorption of aspirin in uremic patients.

MANAGEMENT: Patients treated chronically with antacids (or oral medications that contain antacids such as didanosine buffered tablets or pediatric oral solution) and large doses of salicylates (i.e. 3 g/day or more) should be monitored for potentially diminished or inadequate analgesic and anti-inflammatory effects, and the salicylate dosage adjusted if necessary.

References

  1. D'Arcy PF, McElnay JC "Drug-antacid interactions: assessment of clinical importance." Drug Intell Clin Pharm 21 (1987): 607-17
  2. Gaspari F, Vigano G, Locatelli M, Remuzzi G "Influence of antacid administrations on aspirin absorption in patients with chronic renal failure on maintenance hemodialysis." Am J Kidney Dis 11 (1988): 338-42
  3. Furst DE "Clinically important interactions of nonsteroidal antiinflammatory drugs with other medications." J Rheumatol Suppl 17 (1988): 58-62
  4. Miners JO "Drug interactions involving aspirin (acetylsalicylic acid) and salicylic acid." Clin Pharmacokinet 17 (1989): 327-44
  5. Levy G, Lampman T, Kamath BL, Garrettson LK "Decreased serum salicylate concentrations in children with rheumatic fever treated with antacid." N Engl J Med 293 (1975): 323-5
  6. Shastri RA "Effect of antacids on salicylate kinetics." Int J Clin Pharmacol Ther Toxicol 23 (1985): 480-4
  7. Covington TR, eds., Lawson LC, Young LL "Handbook of Nonprescription Drugs." Washington, DC: American Pharmaceutical Association (1993):
  8. Brouwers JRBJ, Desmet PAGM "Pharmacokinetic-pharmacodynamic drug interactions with nonsteroidal anti-inflammatory drugs." Clin Pharmacokinet 27 (1994): 462-85
  9. "Product Information. Diflunisal (diflunisal)." Chartwell RX, LLC. (2023):
View all 9 references

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Moderate

FLUoxetine magnesium hydroxide

Applies to: Selfemra (fluoxetine) and aluminum hydroxide / aspirin / calcium carbonate / magnesium hydroxide

MONITOR: Bowel cleansing as well as overuse of certain laxatives may cause electrolyte loss and increase the risk of torsade de pointes ventricular arrhythmia in patients treated with drugs that prolong the QT interval. Electrolyte disturbances including hypokalemia and hypomagnesemia have been reported with laxative abuse and are known risk factors for torsade de pointes associated with QT interval prolongation.

MANAGEMENT: Patients treated with drugs that prolong the QT interval should exercise caution when self-medicating with laxatives. The recommended dosage and duration of use should not be exceeded. Patients treated with lactulose for more than six months should be monitored periodically for electrolyte imbalance. 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. Chin RL "Laxative-induced hypokalemia." Ann Emerg Med 32 (1998): 517-8
  2. Muller-Lissner SA "Adverse effects of laxatives: fact and fiction." Pharmacology 47 (1993): 138-45
  3. Cerner Multum, Inc. "UK Summary of Product Characteristics." O 0
  4. Canadian Pharmacists Association "e-CPS. http://www.pharmacists.ca/function/Subscriptions/ecps.cfm?link=eCPS_quikLink" (2006):
  5. Cerner Multum, Inc. "Australian Product Information." O 0
  6. Schaefer DC, Cheskin LJ "Constipation in the elderly." Am Fam Physician 58 (1998): 907-14
View all 6 references

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Drug and food interactions

Major

aluminum hydroxide food

Applies to: aluminum hydroxide / aspirin / calcium carbonate / magnesium hydroxide

GENERALLY AVOID: The concomitant administration of aluminum-containing products (e.g., antacids and phosphate binders) and citrates may significantly increase serum aluminum concentrations, resulting in toxicity. Citrates or citric acid are contained in numerous soft drinks, citrus fruits, juices, and effervescent and dispersible drug formulations. Citrates enhance the gastrointestinal absorption of aluminum by an unknown mechanism, which may involve the formation of a soluble aluminum-citrate complex. Various studies have reported that citrate increases aluminum absorption by 4.6- to 50-fold in healthy subjects. Patients with renal insufficiency are particularly at risk of developing hyperaluminemia and encephalopathy. Fatalities have been reported. Patients with renal failure or on hemodialysis may also be at risk from soft drinks and effervescent and dispersible drug formulations that contain citrates or citric acid. It is unknown what effect citrus fruits or juices would have on aluminum absorption in healthy patients.

MANAGEMENT: The concomitant use of aluminum- and citrate-containing products and foods should be avoided by renally impaired patients. Hemodialysis patients should especially be cautioned about effervescent and dispersible over-the-counter remedies and soft drinks. Some experts also recommend that healthy patients should separate doses of aluminum-containing antacids and citrates by 2 to 3 hours.

ADJUST DOSING INTERVAL: The administration of aluminum-containing antacids with enteral nutrition may result in precipitation, formation of bezoars, and obstruction of feeding tubes. The proposed mechanism is the formation of an insoluble complex between the aluminum and the protein in the enteral feeding. Several cases of esophageal plugs and nasogastric tube obstructions have been reported in patients receiving high-protein liquids and an aluminum hydroxide-magnesium hydroxide antacid or an aluminum hydroxide antacid.

MANAGEMENT: Some experts recommend that antacids should not be mixed with or given after high protein formulations, that the antacid dose should be separated from the feeding by as much as possible, and that the tube should be thoroughly flushed before administration.

References

  1. Cerner Multum, Inc. "UK Summary of Product Characteristics." O 0
  2. Wohlt PD, Zheng L, Gunderson S, Balzar SA, Johnson BD, Fish JT "Recommendations for the use of medications with continuous enteral nutrition." Am J Health Syst Pharm 66 (2009): 1438-67

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Moderate

FLUoxetine food

Applies to: Selfemra (fluoxetine)

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

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Moderate

calcium carbonate food

Applies to: aluminum hydroxide / aspirin / calcium carbonate / magnesium hydroxide

ADJUST DOSING INTERVAL: Administration with food may increase the absorption of calcium. However, foods high in oxalic acid (spinach or rhubarb), or phytic acid (bran and whole grains) may decrease calcium absorption.

MANAGEMENT: Calcium may be administered with food to increase absorption. Consider withholding calcium administration for at least 2 hours before or after consuming foods high in oxalic acid or phytic acid.

References

  1. Cerner Multum, Inc. "UK Summary of Product Characteristics." O 0
  2. Canadian Pharmacists Association "e-CPS. http://www.pharmacists.ca/function/Subscriptions/ecps.cfm?link=eCPS_quikLink" (2006):
  3. Cerner Multum, Inc. "Australian Product Information." O 0
  4. Agencia EspaƱola de Medicamentos y Productos Sanitarios Healthcare "Centro de informaciĆ³n online de medicamentos de la AEMPS - CIMA. https://cima.aemps.es/cima/publico/home.html" (2008):
  5. Mangels AR "Bone nutrients for vegetarians." Am J Clin Nutr 100 (2014): epub
  6. Davies NT "Anti-nutrient factors affecting mineral utilization." Proc Nutr Soc 38 (1979): 121-8
View all 6 references

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Moderate

aspirin food

Applies to: aluminum hydroxide / aspirin / calcium carbonate / magnesium hydroxide

GENERALLY AVOID: The concurrent use of aspirin or nonsteroidal anti-inflammatory drugs (NSAIDs) and ethanol may lead to gastrointestinal (GI) blood loss. The mechanism may be due to a combined local effect as well as inhibition of prostaglandins leading to decreased integrity of the GI lining.

MANAGEMENT: Patients should be counseled on this potential interaction and advised to refrain from alcohol consumption while taking aspirin or NSAIDs.

References

  1. "Product Information. Motrin (ibuprofen)." Pharmacia and Upjohn PROD (2002):

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Minor

aspirin food

Applies to: aluminum hydroxide / aspirin / calcium carbonate / magnesium hydroxide

One study has reported that coadministration of caffeine and aspirin lead to a 25% increase in the rate of appearance and 17% increase in maximum concentration of salicylate in the plasma. A significantly higher area under the plasma concentration time curve of salicylate was also reported when both drugs were administered together. The exact mechanism of this interaction has not been specified. Physicians and patients should be aware that coadministration of aspirin and caffeine may lead to higher salicylate levels faster.

References

  1. Yoovathaworn KC, Sriwatanakul K, Thithapandha A "Influence of caffeine on aspirin pharmacokinetics." Eur J Drug Metab Pharmacokinet 11 (1986): 71-6

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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.