Drug Interactions between methotrexate and thalidomide
This report displays the potential drug interactions for the following 2 drugs:
- methotrexate
- thalidomide
Interactions between your drugs
methotrexate thalidomide
Applies to: methotrexate and thalidomide
MONITOR CLOSELY: Coadministration of thalidomide with glucocorticoids and/or antineoplastic agents in the treatment of malignancy may potentiate the risk of thromboembolism. The exact mechanism is unknown but likely multifactorial. Thalidomide alone has been associated with the development of deep-vein thrombosis (DVT), and malignancy itself is also a common cause. In a study of 100 patients receiving induction chemotherapy (combinations of dexamethasone, vincristine, doxorubicin, cyclophosphamide, etoposide, and cisplatin) for multiple myeloma, the addition of thalidomide was associated with an increased incidence of DVT compared to chemotherapy without thalidomide (28% vs. 4%). Administration of thalidomide was safely resumed in 75% of patients after initiation of appropriate anticoagulation therapy. In another study, 9 of 21 (43%) patients with metastatic renal cell carcinoma (RCC) receiving gemcitabine, 5-FU, and thalidomide developed venous thromboembolism, including one case of fatal cardiac arrest. This rate is substantially higher than the 3% rate observed in a group of 125 patients previously treated at the same institution with similar regimens of gemcitabine and 5-FU but without thalidomide. It is also higher than the 9% rate (12 of 140 patients) the investigators found in a review of published data from five RCC trials that used thalidomide therapy without concomitant cytotoxic therapy. Another study found a significant association of DVT with exposure to doxorubicin in patients receiving thalidomide. Specifically, 31 of 192 (16%) multiple myeloma patients treated with DT-PACE (a regimen of dexamethasone, thalidomide, cisplatin, doxorubicin, cyclophosphamide, and etoposide) developed DVT, while only 1 of 40 (2.5%) did so on DCEP-T (similar to DT-PACE but without doxorubicin). The time to DVT was also significantly decreased with doxorubicin exposure. In a pooled analysis of 39 prospectively monitored clinical trials involving 1784 thalidomide-treated patients, the incidence of thromboembolism was 5% when thalidomide was used as a single agent, 13% when combined with corticosteroids (8% to 26% has been reported in individual studies with dexamethasone), and 17% when combined with chemotherapy. Among thalidomide-treated patients with multiple myeloma, thromboembolism rates ranged from a low of 1/30 among those treated with concomitant cyclophosphamide, etoposide, and cisplatin to a high of about 1/3 in those treated with doxorubicin-containing regimens.
MANAGEMENT: Close monitoring for DVT or pulmonary embolism is recommended in patients who require thalidomide therapy in combination with glucocorticoids and/or cytotoxic agents. Patients should be advised to seek medical attention if they develop potential signs and symptoms of thromboembolism such as chest pain, shortness of breath, and pain or swelling in the arms or legs. Prophylaxis with anticoagulants such as low-molecular weight heparins or warfarin may be appropriate, but the decision to take thromboprophylactic measures should be made after careful assessment of underlying risk factors. If a thromboembolic event occurs during therapy with thalidomide, treatment must be discontinued and standard anticoagulation therapy started. Once anticoagulation is stabilized and complications of the thromboembolic event under control, thalidomide may be restarted at the original dose if benefit is deemed to outweigh the risks. Anticoagulation therapy should be continued during the remaining course of thalidomide treatment.
References (16)
- (2001) "Product Information. Thalomid (thalidomide)." Celgene Corporation
- Zangari M, Anaissie E, Barlogie B, et al. (2001) "Increased risk of deep-vein thrombosis in patients with multiple myeloma receiving thalidomide and chemotherapy." Blood, 98, p. 1614-5
- Figg WD, Arlen P, Gulley J, et al. (2001) "A randomized phase II trial of docetaxel (taxotere) plus thalidomide in androgen-independent prostate cancer." Semin Oncol, 28(4 Suppl 15), p. 62-6
- Escudier B, Lassau N, Leborgne S, Angevin E, Laplanche A (2002) "Thalidomide and venous thrombosis." Ann Intern Med, 136, p. 711
- Urbauer E, Kaufmann H, Nosslinger T, Raderer M, Drach J (2002) "Thromboembolic events during treatment with thalidomide." Blood, 99, p. 4247-8
- Zangari M, Siegel E, Barlogie B, et al. (2002) "Thrombogenic activity of doxorubicin in myeloma patients receiving thalidomide: implications for therapy." Blood, 100, p. 1168-71
- Cavo M, Zamagni E, Cellini C, et al. (2002) "Deep-vein thrombosis in patients with multiple myeloma receiving first-line thalidomide-dexamethasone therapy." Blood, 100, p. 2272-3
- Desai AA, Vogelzang NJ, Rini BI, Ansari R, Krauss S, Stadler WM (2002) "A high rate of venous thromboembolism in a multi-institutional Phase II trial of weekly intravenous gemcitabine with continuous infusion fluorouracil and daily thalidomide in patients with metastatic renal cell carcinoma." Cancer, 95, p. 1629-36
- Rajkumar SV, Hayman S, Gertz MA, et al. (2002) "Combination therapy with thalidomide plus dexamethasone for newly diagnosed myeloma." J Clin Oncol, 20, p. 4319-23
- Bennett CL, Schumock GT, Desai AA, et al. (2002) "Thalidomide-associated deep vein thrombosis and pulmonary embolism." Am J Med, 113, p. 603-6
- Weber D, Rankin K, Gavino M, Delasalle K, Alexanian R (2003) "Thalidomide alone or with dexamethasone for previously untreated multiple myeloma." J Clin Oncol, 21, p. 16-9
- Fine HA, Wen PY, Maher EA, et al. (2003) "Phase II Trial of Thalidomide and Carmustine for Patients With Recurrent High-Grade Gliomas." J Clin Oncol, 21, p. 2299-304
- Lee CK, Barlogie B, Munshi N, et al. (2003) "DTPACE: an effective, novel combination chemotherapy with thalidomide for previously treated patients with myeloma." J Clin Oncol, 21, p. 2732-9
- Zangari M, Barlogie B, Anaissie E, et al. (2004) "Deep vein thrombosis in patients with mutiple myeloma treated with thalidomide and chemotherapy: effects of prophylactic and therapeutic anticoagulation." Br J Haematol, 126, p. 715-21
- Osman K, Comenzo R, Rajkumar SV (2001) "Deep venous thrombosis and thalidomide therapy for multiple myeloma." N Engl J Med, 344, p. 1951-2
- Bennett CL, Nebeker JR, Samore MH, et al. (2005) "The Research on Adverse Drug Events and Reports (RADAR) project." JAMA, 293, p. 2131-40
Drug and food interactions
methotrexate food
Applies to: methotrexate
MONITOR: Limited data suggest that consumption of greater than 180 mg/day of caffeine may interfere with the efficacy of methotrexate (MTX) in patients with rheumatoid arthritis. The exact mechanism of interaction is unknown but may be related to the antagonistic effect of caffeine on adenosine receptors, as anti-inflammatory properties of MTX is thought to result from the accumulation of adenosine. In a study of 39 patients treated with MTX 7.5 mg/week (without folate supplementation) for 3 months, patients with high caffeine intake (more than 180 mg/day) experienced significantly less improvement in morning stiffness and joint pain from baseline than patients with low caffeine intake (less than 120 mg/day). There were no significant differences between the responses of patients with moderate caffeine intake (120 to 180 mg/day) and those of the other 2 groups. In an interview of 91 patients treated with MTX, 26% of patients who discontinued the drug were regular coffee drinkers compared to only 2% of those still receiving the drug. Because treatment failure was the reason for MTX discontinuation in 80% of patients who discontinued, the investigators suggested that caffeine may have interfered with MTX efficacy.
MANAGEMENT: Until further information is available, the potential for interaction should be considered in patients who consume substantial amounts of caffeine and caffeine-containing foods and are prescribed methotrexate for rheumatoid arthritis. It may be appropriate to limit caffeine intake if an interaction is suspected in cases of treatment failure.
References (1)
- Nesher G, Mates M, Zevin S (2003) "Effect of caffeine consumption on efficacy of methotrexate in rheumatoid arthritis." Arthritis Rheum, 48, p. 571-572
thalidomide food
Applies to: thalidomide
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 (4)
- Warrington SJ, Ankier SI, Turner P (1986) "Evaluation of possible interactions between ethanol and trazodone or amitriptyline." Neuropsychobiology, 15, p. 31-7
- Gilman AG, eds., Nies AS, Rall TW, Taylor P (1990) "Goodman and Gilman's the Pharmacological Basis of Therapeutics." New York, NY: Pergamon Press Inc.
- (2012) "Product Information. Fycompa (perampanel)." Eisai Inc
- (2015) "Product Information. Rexulti (brexpiprazole)." Otsuka American Pharmaceuticals Inc
methotrexate food
Applies to: methotrexate
GENERALLY AVOID: Coadministration of methotrexate with other agents known to induce hepatotoxicity may potentiate the risk of liver injury. Methotrexate, especially at higher dosages or during prolonged treatment, has been associated with severe hepatotoxicity including acute hepatitis, chronic fibrosis, cirrhosis, and fatal liver failure.
MANAGEMENT: The risk of hepatic injury should be considered when methotrexate is used with other potentially hepatotoxic agents (e.g., acetaminophen; alcohol; androgens and anabolic steroids; antituberculous agents; azole antifungal agents; ACE inhibitors; cyclosporine (high dosages); disulfiram; endothelin receptor antagonists; interferons; ketolide and macrolide antibiotics; kinase inhibitors; minocycline; nonsteroidal anti-inflammatory agents; nucleoside reverse transcriptase inhibitors; proteasome inhibitors; retinoids; sulfonamides; tamoxifen; thiazolidinediones; tolvaptan; vincristine; zileuton; anticonvulsants such as carbamazepine, hydantoins, felbamate, and valproic acid; lipid-lowering medications such as fenofibrate, lomitapide, mipomersen, niacin, and statins; herbals and nutritional supplements such as black cohosh, chaparral, comfrey, DHEA, kava, pennyroyal oil, and red yeast rice). Baseline and periodic monitoring of hepatic function is recommended, while liver biopsy may be warranted during long-term use of methotrexate. Patients should be advised to seek medical attention if they experience potential signs and symptoms of hepatotoxicity such as fever, rash, itching, anorexia, nausea, vomiting, fatigue, right upper quadrant pain, dark urine, pale stools, and jaundice.
References (3)
- (2002) "Product Information. Methotrexate (methotrexate)." Lederle Laboratories
- Cerner Multum, Inc. "UK Summary of Product Characteristics."
- (2023) "Product Information. Methotrexate (methotrexate)." Hospira Inc
methotrexate food
Applies to: methotrexate
MONITOR: Limited data suggest that consumption of greater than 180 mg/day of caffeine may interfere with the efficacy of methotrexate (MTX) in patients with rheumatoid arthritis. The exact mechanism of interaction is unknown but may be related to the antagonistic effect of caffeine on adenosine receptors, as anti-inflammatory properties of MTX is thought to result from the accumulation of adenosine. In a study of 39 patients treated with MTX 7.5 mg/week (without folate supplementation) for 3 months, patients with high caffeine intake (more than 180 mg/day) experienced significantly less improvement in morning stiffness and joint pain from baseline than patients with low caffeine intake (less than 120 mg/day). There were no significant differences between the responses of patients with moderate caffeine intake (120 to 180 mg/day) and those of the other 2 groups. In an interview of 91 patients treated with MTX, 26% of patients who discontinued the drug were regular coffee drinkers compared to only 2% of those still receiving the drug. Because treatment failure was the reason for MTX discontinuation in 80% of patients who discontinued, the investigators suggested that caffeine may have interfered with MTX efficacy.
MANAGEMENT: Until further information is available, the potential for interaction should be considered in patients who consume substantial amounts of caffeine and caffeine-containing foods and are prescribed methotrexate for rheumatoid arthritis. It may be appropriate to limit caffeine intake if an interaction is suspected in cases of treatment failure.
References (1)
- Nesher G, Mates M, Zevin S (2003) "Effect of caffeine consumption on efficacy of methotrexate in rheumatoid arthritis." Arthritis Rheum, 48, p. 571-572
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.
See also
Drug Interaction Classification
Highly clinically significant. Avoid combinations; the risk of the interaction outweighs the benefit. | |
Moderately clinically significant. Usually avoid combinations; use it only under special circumstances. | |
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. | |
No interaction information available. |
Further information
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