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Drug Interactions between fexinidazole and Tascenso ODT

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

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Interactions between your drugs

Major

fingolimod fexinidazole

Applies to: Tascenso ODT (fingolimod) and fexinidazole

MONITOR CLOSELY: Coadministration of fingolimod with antineoplastic, immunosuppressive, or other immune-modulating therapies may increase the risk of infections. Fingolimod causes reversible sequestration of lymphocytes in lymphoid tissues. When administered daily, fingolimod produces a dose-dependent reduction in peripheral lymphocyte count to 20% to 30% of baseline values, which may increase the risk of infections. A small study consisting of 12 subjects receiving fingolimod 0.5 mg daily found that lymphocyte count decreased to approximately 60% of baseline within 4 to 6 hours after the first dose and continued to decrease over a 2-week period, reaching a nadir count of approximately 500 cells/mcL, or 30% of baseline. In a placebo-controlled study of 1272 multiple sclerosis patients, 18% of patients on fingolimod 0.5 mg daily reached a nadir of less than 200 cells/mcL on at least one occasion, compared to no patient on placebo. Decreased lymphocyte counts persist during daily dosing and generally return to baseline within 1 to 2 months after stopping the medication. In addition, a mild decrease in the neutrophil count to approximately 80% of baseline occurs during chronic therapy. Serious infections requiring admission to hospital have been reported.

MANAGEMENT: The safety and efficacy of fingolimod in combination with antineoplastic, immunosuppressive, or immune-modulating agents have not been evaluated. Caution is advised during coadministration. A complete blood count is recommended prior to starting fingolimod if a recent one (i.e., within last 6 months) is not available. Treatment suspension should be considered in patients who develop a serious infection, and the benefits and risks reassessed prior to restarting treatment. Because fingolimod remains in the blood for up to two months after the last dose, continued monitoring is recommended throughout this period, and initiating other drugs during this period warrants the same considerations needed for concomitant administration.

MONITOR CLOSELY: Due to its significant bradycardic effects, the risk of QT prolongation and torsade de pointes arrhythmia may be increased during initiation of fingolimod treatment in patients receiving drugs that prolong the QT interval. Fingolimod can cause a decrease in heart rate during initiation of therapy that is apparent within an hour of the first dose and maximal at approximately 6 hours post-dose in most cases, but occasionally up to 20 hours after the first dose. Further, but smaller decreases in heart rate may occur after the second dose, although heart rate eventually returns to baseline within one month of chronic treatment. The mean decrease in heart rate in patients receiving fingolimod 0.5 mg at 6 hours after the first dose was approximately 13 beats per minute (bpm). Heart rates below 40 bpm and AV block were rarely observed. In a study evaluating the effect on QT interval of fingolimod 1.25 or 2.5 mg at steady-state, when a negative chronotropic effect of the drug was still present, fingolimod treatment resulted in a prolongation of the QTc, with an upper bound of the 90% confidence interval of 14.0 msec. There was no consistent signal of increased incidence of QTc outliers, either absolute or change from baseline, associated with fingolimod treatment. In clinical studies, investigators did not observed meaningful prolongation of the QT interval during fingolimod use, but patients at risk for QT prolongation were excluded. In general, the risk of an individual agent or a combination of agents causing ventricular arrhythmia in association with QT prolongation is largely unpredictable but may be increased by certain underlying risk factors such as congenital long QT syndrome, cardiac disease, and electrolyte disturbances (e.g., hypokalemia, hypomagnesemia). In addition, the extent of drug-induced QT prolongation is dependent on the particular drug(s) involved and dosage(s) of the drug(s).

MANAGEMENT: Fingolimod has not been studied in patients receiving drugs that can prolong the QT interval. Because bradycardia and AV block are recognized risk factors for QT prolongation and torsade de pointes arrhythmia, close monitoring is recommended during initiation of fingolimod treatment in patients receiving concomitant drugs that can prolong the QT interval, patients with significant QT prolongation (QTc >470 msec in females or >450 msec in males), or patients with relevant risk factors for QT prolongation (e.g., hypokalemia, hypomagnesemia, congenital QT prolongation). Overnight continuous ECG monitoring after the first dose is recommended in accordance with the product labeling. Fingolimod should not be given if baseline QTc interval is 500 msec or greater. The same precautions are applicable if, after the first month of treatment, fingolimod is discontinued for more than two weeks and then restarted, since the effects on heart rate and AV conduction may recur on reintroduction of fingolimod. Within the first 2 weeks of treatment, first-dose procedures are also recommended after interruption of one day or more; during week 3 and 4 of treatment, first-dose procedures are recommended after treatment interruption of more than 7 days.

References

  1. (2010) "Product Information. Gilenya (fingolimod)." Novartis Pharmaceuticals
  2. FDA. U.S. Food and Drug Administration (2012) FDA Drug Safety Communication: Revised recommendations for cardiovascular monitoring and use of multiple sclerosis drug Gilenya (fingolimod). http://www.fda.gov/Drugs/DrugSafety/ucm303192.htm#data

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Drug and food interactions

Moderate

fexinidazole food

Applies to: fexinidazole

GENERALLY AVOID: Use of alcohol or products containing alcohol during nitroimidazole therapy may result in a disulfiram-like reaction in some patients. There have been a few case reports involving metronidazole, although data overall are not convincing. The presumed mechanism is inhibition of aldehyde dehydrogenase (ALDH) by metronidazole in a manner similar to disulfiram. Following ingestion of alcohol, inhibition of ALDH results in increased concentrations of acetaldehyde, the accumulation of which can produce an unpleasant physiologic response referred to as the 'disulfiram reaction'. Symptoms include flushing, throbbing in head and neck, throbbing headache, respiratory difficulty, nausea, vomiting, sweating, thirst, chest pain, palpitation, dyspnea, hyperventilation, tachycardia, hypotension, syncope, weakness, vertigo, blurred vision, and confusion. Severe reactions may result in respiratory depression, cardiovascular collapse, arrhythmia, myocardial infarction, acute congestive heart failure, unconsciousness, convulsions, and death. However, some investigators have questioned the disulfiram-like properties of metronidazole. One study found neither elevations in blood acetaldehyde nor objective or subjective signs of a disulfiram-like reaction to ethanol in six subjects treated with metronidazole (200 mg three times a day for 5 days) compared to six subjects who received placebo.

GENERALLY AVOID: The potential exists for pharmacodynamic interactions and/or toxicities between fexinidazole and herbal medicines and supplements. In addition, grapefruit and grapefruit juice may, theoretically, increase the plasma concentrations of fexinidazole and the risk of adverse effects. The mechanism is decreased clearance of fexinidazole due to inhibition of CYP450 3A4-mediated first-pass metabolism in the gut wall by certain compounds present in grapefruits. 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.

ADJUST DOSING INTERVAL: Food significantly increases the oral absorption and bioavailability of fexinidazole. Compared with the fasted state, the systemic exposure (AUC) of fexinidazole and its metabolites (fexinidazole sulfoxide [M1], fexinidazole sulfone [M2]) were 4- to 5-fold higher following administration with food.

MANAGEMENT: To ensure maximal oral absorption, fexinidazole should be administered with food each day at about the same time of day (e.g., during or immediately after the main meal of the day). Coadministration of fexinidazole with grapefruit, grapefruit juice, or herbal medicines or supplements should be avoided. Because clear evidence is lacking concerning the safety of ethanol use during nitroimidazole therapy, patients should be apprised of the potential for interaction and instructed to avoid alcoholic beverages and products containing alcohol or propylene glycol while using oral, intravenous, or vaginal preparations of a nitroimidazole. Alcoholic beverages should not be consumed for at least 48 hours after completion of fexinidazole therapy.

References

  1. Giannini AJ, DeFrance DT (1983) "Metronidazole and alcohol: potential for combinative abuse." J Toxicol Clin Toxicol, 20, p. 509-15
  2. Alexander I (1985) "Alcohol-antabuse syndrome in patients receiving metronidazole during gynaecological treatment." Br J Clin Pract, 39, p. 292-3
  3. Harries DP, Teale KF, Sunderland G (1990) "Metronidazole and alcohol: potential problems." Scott Med J, 35, p. 179-80
  4. Edwards DL, Fink PC, Van Dyke PO (1986) "Disulfiram-like reaction associated with intravenous trimethoprim-sulfamethoxazole and metronidazole." Clin Pharm, 5, p. 999-1000
  5. (2002) "Product Information. Flagyl (metronidazole)." Searle
  6. Williams CS, Woodcock KR (2000) "Do ethanol and metronidazole interact to produce a disulfiram-like reaction?." Ann Pharmacother, 34, p. 255-7
  7. Visapaa JP, Tillonen JS, Kaihovaara PS, Salaspuro MP (2002) "Lack of disulfiram-like reaction with metronidazole and ethanol." Ann Pharmacother, 36, p. 971-4
  8. Krulewitch CJ (2003) "An unexpected adverse drug effect." J Midwifery Womens Health, 48, p. 67-8
  9. (2004) "Product Information. Tindamax (tinidazole)." Presutti Laboratories Inc
  10. (2021) "Product Information. Fexinidazole (fexinidazole)." sanofi-aventis
View all 10 references

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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.