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Drug Interactions between Liquicet and UroAv-81

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

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Interactions between your drugs

Major

methylene blue HYDROcodone

Applies to: UroAv-81 (hyoscyamine / methenamine / methylene blue / phenyl salicylate / sodium biphosphate) and Liquicet (acetaminophen / hydrocodone)

GENERALLY AVOID: Coadministration of narcotic analgesics with monoamine oxidase inhibitors (MAOIs) has been associated with rare reports of anxiety, confusion, hypotension, respiratory depression, cyanosis, and coma. The mechanism of interaction is unknown, but may involve potentiation of central nervous system (CNS) and respiratory depressant effects by MAOIs. There have also been reports 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. Some opioids such as fentanyl, meperidine, methadone, tapentadol, and tramadol can inhibit serotonin reuptake. However, serotonin syndrome has also occurred with other opioids. Concomitant use of pentazocine with MAOIs may also cause CNS excitation and hypertension through their respective effects on catecholamines.

MANAGEMENT: Narcotic analgesics should generally not be used with MAOIs or other agents that possess MAOI activity (e.g., furazolidone, linezolid, methylene blue, procarbazine). At least 14 days should elapse between discontinuation of MAOI therapy and initiation of treatment with opioids.

References

  1. Browne B, Linter S "Monoamine oxidase inhibitors and narcotic analgesics: a critical review of the implications for treatment." Br J Psychiatry 151 (1987): 210-2
  2. Evans-Prosser CD "The use of pethidine and morphine in the presence of monoamine oxidase inhibitors." Br J Anaesth 40 (1968): 279-82
  3. "Product Information. MS Contin (morphine)." Purdue Frederick Company PROD (2002):
  4. "Product Information. Roxicodone (oxycodone)." Roxane Laboratories Inc PROD (2001):
  5. "Product Information. Levo-Dromoran (levorphanol)." Roche Laboratories PROD (2001):
  6. Garbutt JC "Potentiation of propoxyphene by phenelzine." Am J Psychiatry 144 (1987): 251-2
  7. Zornberg GL, Hegarty JD "Adverse interaction between propoxyphene and phenelzine." Am J Psychiatry 150 (1993): 1270-1
  8. "Product Information. Tylenol with Codeine (acetaminophen-codeine)." Janssen Pharmaceuticals PROD (2001):
  9. Michaels I, Serrins M, Shier NQ, Barash PG "Anesthesia for cardiac surgery in patients receiving monoamine oxidase inhibitors." Anesth Analg 63 (1984): 1041-4
  10. "Product Information. Nubain (nalbuphine)." Endo Laboratories LLC PROD (2001):
  11. "Product Information. Nardil (phenelzine)." Parke-Davis PROD (2001):
  12. "Product Information. Buprenex (buprenorphine)." Reckitt and Colman Pharmaceuticals Inc PROD (2001):
  13. "Product Information. Parnate (tranylcypromine)." SmithKline Beecham PROD (2001):
  14. "Product Information. Marplan (isocarboxazid)." Roche Laboratories PROD (2001):
  15. "Product Information. Emsam (selegiline)." Bristol-Myers Squibb (2006):
  16. "Product Information. Talacen (acetaminophen-pentazocine)." Sanofi-Synthelabo Inc (2006):
View all 16 references

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Major

sodium biphosphate phenyl salicylate

Applies to: UroAv-81 (hyoscyamine / methenamine / methylene blue / phenyl salicylate / sodium biphosphate) and UroAv-81 (hyoscyamine / methenamine / methylene blue / phenyl salicylate / sodium biphosphate)

MONITOR CLOSELY: The following interaction applies only to products containing sodium biphosphate that are used for bowel cleansing. It does not apply to products containing sodium biphosphate that are used for other, non-laxative related purposes.

Coadministration with agents that affect renal function or perfusion such as diuretics, ACE inhibitors, angiotensin receptor blockers, and nonsteroidal anti-inflammatory drugs (NSAIDs) may increase the risk of acute phosphate nephropathy associated with the use of bowel-cleansing phosphate solutions. The risk and/or severity of fluid and electrolyte disturbances may also be increased, which can lead to serious adverse events including cardiac arrhythmias, seizures, and renal impairment. Acute phosphate nephropathy is a rare adverse event that presents as acute renal failure with minimal proteinuria and a bland urine sediment. Renal biopsy findings are consistent with nephrocalcinosis and include acute and/or chronic renal tubular injury, calcium-phosphate crystal deposition in the distal tubules and collecting ducts, and no other pattern of histological injury. The risk of acute phosphate nephropathy stems from the large phosphate load, fluid shifts, and decreased intravascular volume, which can be exacerbated in the presence of medications that affect renal perfusion or function. In reported cases, acute renal failure was typically diagnosed within two to five months of colonoscopy. These cases often resulted in permanent impairment of renal function, some requiring long-term dialysis.

MANAGEMENT: Caution is advised when bowel-cleansing phosphate preparations are prescribed in patients treated with agents that affect renal function or perfusion, particularly if they are frail or elderly. Bowel-cleansing phosphate preparations should not be used in patients who have impaired renal function or perfusion, dehydration, or uncorrected electrolyte abnormalities. In patients at risk for acute phosphate nephropathy, baseline and postprocedure labs including serum electrolytes, calcium, phosphate, BUN, and creatinine should be performed. Patients should be advised not to exceed the recommended dosage of their bowel-cleansing preparation and to drink sufficient quantities of clear fluids during before, during, and after bowel cleansing. Limited data suggest that administration of an electrolyte rehydration solution may attenuate the electrolyte abnormalities and hypovolemia. Hospitalization and intravenous fluid hydration may be appropriate for frail or elderly patients who may be unable to drink an adequate volume of fluid.

References

  1. "Product Information. Fleet Phospho Soda (sodium acid phophate-sodium phosphate)." Fleet, CB (2007):
  2. "Product Information. Visicol (sodium acid phophate-sodium phosphate)." Salix Pharmaceuticals (2007):
  3. FDA. Food and Drug Admnistration "Oral sodium phosphate products for bowel cleansing. http://www.fda.gov/cder/drug/InfoSheets/HCP/OSP_solutionHCP.pdf" (2007):

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Moderate

hyoscyamine HYDROcodone

Applies to: UroAv-81 (hyoscyamine / methenamine / methylene blue / phenyl salicylate / sodium biphosphate) and Liquicet (acetaminophen / hydrocodone)

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. "Product Information. Demerol (meperidine)." Sanofi Winthrop Pharmaceuticals PROD (2002):
  2. "Product Information. Dolophine (methadone)." Lilly, Eli and Company PROD (2002):
  3. "Product Information. Tylenol with Codeine (acetaminophen-codeine)." Janssen Pharmaceuticals PROD (2001):
  4. "Product Information. Duragesic Transdermal System (fentanyl)." Janssen Pharmaceutica, Titusville, NJ.
  5. "Product Information. Ultram (tramadol)." McNeil Pharmaceutical PROD (2001):
  6. "Product Information. OxyContin (oxycodone)." Purdue Frederick Company PROD (2001):
  7. "Product Information. Kadian (morphine)." Astra-Zeneca Pharmaceuticals PROD (2001):
  8. "Product Information. DepoDur (morphine liposomal)." Endo Laboratories LLC (2004):
  9. Cerner Multum, Inc. "UK Summary of Product Characteristics." O 0
  10. "Product Information. Opana (oxymorphone)." Endo Laboratories LLC (2006):
  11. "Product Information. Nucynta (tapentadol)." PriCara Pharmaceuticals (2009):
  12. "Product Information. Exalgo (hydromorphone)." Covidien (2010):
  13. "Product Information. Belbuca (buprenorphine)." Endo Pharmaceuticals Solutions Inc (2016):
  14. "Product Information. Alfentanil Hydrochloride (alfentanil)." Akorn Inc (2017):
  15. "Product Information. SUFentanil Citrate (sufentanil)." Akorn Inc (2017):
  16. "Product Information. Lortab (acetaminophen-hydrocodone)." Akorn Inc (2017):
  17. "Product Information. Levorphanol Tartrate (levorphanol)." Sentynl Therapeutics (2017):
  18. "Product Information. Naloxone HCl-Pentazocine HCl (naloxone-pentazocine)." Actavis U.S. (Amide Pharmaceutical Inc) (2018):
  19. "Product Information. Apadaz (acetaminophen-benzhydrocodone)." KemPharm, Inc (2018):
View all 19 references

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Moderate

sodium biphosphate HYDROcodone

Applies to: UroAv-81 (hyoscyamine / methenamine / methylene blue / phenyl salicylate / sodium biphosphate) and Liquicet (acetaminophen / hydrocodone)

MONITOR: The following interaction applies only to products containing sodium biphosphate that are used for bowel cleansing. It does not apply to products containing sodium biphosphate that are used for other, non-laxative related purposes.

The risk of seizures induced by the use of bowel cleansing preparations may be increased in patients on concomitant medications that can lower the seizure threshold such as selective serotonin reuptake inhibitors (SSRI antidepressants or anorectics), monoamine oxidase inhibitors, neuroleptic agents, central nervous system stimulants, opioids, tricyclic antidepressants, other tricyclic compounds (e.g., cyclobenzaprine, phenothiazines), systemic steroids, carbapenems, cholinergic agents, fluoroquinolones, interferons, chloroquine, mefloquine, lindane, and theophylline. Rare cases of generalized tonic-clonic seizures and/or loss of consciousness in association with low serum osmolality and electrolyte abnormalities (e.g., hyponatremia, hypokalemia, hypocalcemia, hypomagnesemia) have been reported with the use of bowel cleansing products in patients with no prior history of seizures. The condition resolved with correction of fluid and electrolyte abnormalities.

MANAGEMENT: Caution is advised when bowel cleansing preparations are prescribed in patients treated with agents that can lower the seizure threshold. Bowel cleansing preparations should not be used if these patients have impaired renal function or perfusion, dehydration, or uncorrected electrolyte abnormalities. Baseline and postprocedure labs including serum electrolytes, calcium, phosphate, BUN, and creatinine should be considered, particularly in the elderly. Patients should be advised not to exceed the recommended dosage of their bowel cleansing preparation and to drink sufficient quantities of clear fluids before, during, and after the bowel preparation process. Administration of an electrolyte rehydration solution may help attenuate the electrolyte abnormalities and hypovolemia.

References

  1. Salik JM, Kurtin P "Severe hyponatremia after colonoscopy preparation in a patient with the acquired immune deficiency syndrome." Am J Gastroenterol 80 (1985): 177-9
  2. Cerner Multum, Inc. "UK Summary of Product Characteristics." O 0
  3. "Product Information. Fleet Phospho Soda (sodium acid phophate-sodium phosphate)." Fleet, CB (2007):
  4. "Product Information. Visicol (sodium acid phophate-sodium phosphate)." Salix Pharmaceuticals (2007):
  5. Cerner Multum, Inc. "Australian Product Information." O 0
View all 5 references

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Minor

acetaminophen hyoscyamine

Applies to: Liquicet (acetaminophen / hydrocodone) and UroAv-81 (hyoscyamine / methenamine / methylene blue / phenyl salicylate / sodium biphosphate)

Anticholinergic agents may delay and/or decrease the gastrointestinal absorption of acetaminophen by reducing gastric motility and delaying gastric emptying. However, the clinical relevance is probably minimal.

References

  1. Nimmo J, Heading RC, Tothill P, Prescott LF "Pharmacological modification of gastric emptying: effects of propantheline and metoclopramide on paracetamol absorption." Br Med J 1 (1973): 587-9
  2. Clark JM, Seager SJ "Gastric emptying following premedication with glycopyrrolate or atropine." Br J Anaesth 55 (1983): 1195-9
  3. "Product Information. Transderm-Scop (scopolamine)." Ciba Self-Medication Inc PROD

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Drug and food interactions

Major

HYDROcodone food

Applies to: Liquicet (acetaminophen / hydrocodone)

GENERALLY AVOID: Alcohol may potentiate the central nervous system (CNS) depressant effects of opioid analgesics including hydrocodone. 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 alcohol while taking some sustained-release formulations of hydrocodone may cause rapid release of the drug, resulting in high systemic levels of hydrocodone that may be potentially lethal. Alcohol apparently can disrupt the release mechanism of some sustained-release formulations. In study subjects, the rate of absorption of hydrocodone from an extended-release formulation was found to be affected by coadministration with 40% alcohol in the fasted state, as demonstrated by an average 2.4-fold (up to 3.9-fold in one subject) increase in hydrocodone peak plasma concentration and a decrease in the time to peak concentration. Alcohol also increased the extent of absorption by an average of 1.2-fold (up to 1.7-fold in one subject).

GENERALLY AVOID: Grapefruit juice may increase the plasma concentrations of hydrocodone. The proposed mechanism is inhibition of CYP450 3A4-mediated metabolism of hydrocodone by certain compounds present in grapefruit. Increased hydrocodone concentrations could conceivably increase or prolong adverse drug effects and may cause potentially fatal respiratory depression.

MANAGEMENT: Patients taking sustained-release formulations of hydrocodone should not consume alcohol or use medications that contain alcohol. In general, potent narcotics such as hydrocodone should not be combined with alcohol. Patients should also avoid consumption of grapefruit or grapefruit juice during treatment with hydrocodone.

References

  1. "Product Information. Zohydro ER (hydrocodone)." Zogenix, Inc (2013):

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Major

acetaminophen food

Applies to: Liquicet (acetaminophen / hydrocodone)

GENERALLY AVOID: Chronic, excessive consumption of alcohol may increase the risk of acetaminophen-induced hepatotoxicity, which has included rare cases of fatal hepatitis and frank hepatic failure requiring liver transplantation. The proposed mechanism is induction of hepatic microsomal enzymes during chronic alcohol use, which may result in accelerated metabolism of acetaminophen and increased production of potentially hepatotoxic metabolites.

MANAGEMENT: In general, chronic alcoholics should avoid regular or excessive use of acetaminophen. Alternative analgesic/antipyretic therapy may be appropriate in patients who consume three or more alcoholic drinks per day. However, if acetaminophen is used, these patients should be cautioned not to exceed the recommended dosage (maximum 4 g/day in adults and children 12 years of age or older).

References

  1. Kaysen GA, Pond SM, Roper MH, Menke DJ, Marrama MA "Combined hepatic and renal injury in alcoholics during therapeutic use of acetaminophen." Arch Intern Med 145 (1985): 2019-23
  2. O'Dell JR, Zetterman RK, Burnett DA "Centrilobular hepatic fibrosis following acetaminophen-induced hepatic necrosis in an alcoholic." JAMA 255 (1986): 2636-7
  3. Seeff LB, Cuccherini BA, Zimmerman HJ, Adler E, Benjamin SB "Acetaminophen hepatotoxicity in alcoholics." Ann Intern Med 104 (1986): 399-404
  4. Thummel KE, Slattery JT, Nelson SD "Mechanism by which ethanol diminishes the hepatotoxicity of acetaminophen." J Pharmacol Exp Ther 245 (1988): 129-36
  5. McClain CJ, Kromhout JP, Peterson FJ, Holtzman JL "Potentiation of acetaminophen hepatotoxicity by alcohol." JAMA 244 (1980): 251-3
  6. Kartsonis A, Reddy KR, Schiff ER "Alcohol, acetaminophen, and hepatic necrosis." Ann Intern Med 105 (1986): 138-9
  7. Prescott LF, Critchley JA "Drug interactions affecting analgesic toxicity." Am J Med 75 (1983): 113-6
  8. "Product Information. Tylenol (acetaminophen)." McNeil Pharmaceutical PROD (2002):
  9. Whitcomb DC, Block GD "Association of acetaminopphen hepatotoxicity with fasting and ethanol use." JAMA 272 (1994): 1845-50
  10. Bonkovsky HL "Acetaminophen hepatotoxicity, fasting, and ethanol." JAMA 274 (1995): 301
  11. Nelson EB, Temple AR "Acetaminophen hepatotoxicity, fasting, and ethanol." JAMA 274 (1995): 301
  12. Zimmerman HJ, Maddrey WC "Acetaminophen (paracetamol) hepatotoxicity with regular intake of alcohol: analysis of instances of therapeutic misadventure." Hepatology 22 (1995): 767-73
View all 12 references

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Moderate

sodium biphosphate food

Applies to: UroAv-81 (hyoscyamine / methenamine / methylene blue / phenyl salicylate / sodium biphosphate)

ADJUST DOSING INTERVAL: Bowel cleansing products can increase the gastrointestinal transit rate. Oral medications administered within one hour of the start of administration of the bowel cleansing solution may be flushed from the gastrointestinal tract and not properly absorbed.

MANAGEMENT: Patients should be advised that absorption of oral medications may be impaired during bowel cleansing treatment. Oral medications (e.g., anticonvulsants, oral contraceptives, antidiabetic agents, antibiotics) should not be administered during and within one hour of starting bowel cleansing treatment whenever possible. However, if concomitant use cannot be avoided, monitoring for reduced therapeutic effects may be advisable.

References

  1. "Product Information. Golytely (polyethylene glycol 3350 with electrolytes)." Braintree
  2. "Product Information. Prepopik (citric acid/Mg oxide/Na picosulfate)." Ferring Pharmaceuticals Inc (2022):

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Moderate

hyoscyamine food

Applies to: UroAv-81 (hyoscyamine / methenamine / methylene blue / phenyl salicylate / sodium biphosphate)

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

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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.