Drug Interaction Report
3 potential interactions and/or warnings found for the following 2 drugs:
- asparaginase escherichia coli
- mipomersen
Interactions between your drugs
asparaginase Escherichia coli mipomersen
Applies to: asparaginase escherichia coli, mipomersen
MONITOR CLOSELY: Coadministration of mipomersen with other agents known to induce hepatotoxicity may potentiate the risk of liver injury. Mipomersen can cause elevations in serum transaminases and hepatic steatosis. In a premarketing clinical trial, 12% (4/34) of patients treated with mipomersen had at least one elevation in alanine aminotransferase (ALT) 3 times the upper limit of normal (ULN) or greater, and 9% (3/34) had at least one elevation in ALT 5 times ULN or greater, compared to 0% of the 17 patients treated with placebo. There were no concomitant clinically meaningful elevations of total bilirubin, international normalized ratio (INR), or partial thromboplastin time (PTT). Mipomersen also increases hepatic fat, with or without concomitant increases in transaminases. In clinical trials of patients with heterozygous familial hypercholesterolemia and hyperlipidemia, the median absolute increase in hepatic fat was 10% after 26 weeks of treatment, from 0% at baseline, measured by magnetic resonance imaging. The long-term consequences of hepatic steatosis associated with mipomersen therapy are unknown. Hepatic steatosis may be a risk factor for progressive liver disease, including steatohepatitis and cirrhosis.
MANAGEMENT: Caution is advised if mipomersen is used with other potentially hepatotoxic agents (e.g., acetaminophen; alcohol; amiodarone; androgens and anabolic steroids; antituberculous agents; azole antifungal agents; ACE inhibitors; cyclosporine (high dosages); disulfiram; endothelin receptor antagonists; interferons; kinase inhibitors; methotrexate; nonsteroidal anti-inflammatory agents; nucleoside reverse transcriptase inhibitors; proteasome inhibitors; retinoids; tamoxifen; tetracyclines; thiazolidinediones; tolvaptan; vincristine; zileuton; anticonvulsants such as carbamazepine, hydantoins, felbamate, and valproic acid; other lipid-lowering medications such as fenofibrate, lomitapide, niacin, and statins; herbals and nutritional supplements such as black cohosh, chaparral, comfrey, DHEA, kava, pennyroyal oil, and red yeast rice). Mipomersen has not been studied with other LDL-lowering agents that can also increase hepatic fat, thus concomitant use is not recommended. Patients treated with mipomersen should have serum ALT, AST, alkaline phosphatase, and total bilirubin measured prior to initiation of treatment and regularly during treatment in accordance with the product labeling, and the dosing adjusted or interrupted as necessary. Since alcohol may increase levels of hepatic fat and induce or exacerbate liver injury, the manufacturer recommends that patients taking mipomersen not consume more than one alcoholic drink per day. 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, malaise, right upper quadrant pain, dark urine, pale stools, and jaundice.
References (1)
- (2013) "Product Information. Kynamro (mipomersen)." Genzyme Corporation
Drug and food interactions
mipomersen food
Applies to: mipomersen
GENERALLY AVOID: Coadministration with alcohol may increase the risk of hepatotoxicity associated with the use of mipomersen. Mipomersen can cause elevations in serum transaminases and hepatic steatosis. In a premarketing clinical trial, 12% (4/34) of patients treated with mipomersen had at least one elevation in alanine aminotransferase (ALT) 3 times the upper limit of normal (ULN) or greater, and 9% (3/34) had at least one elevation in ALT 5 times ULN or greater, compared to 0% of the 17 patients treated with placebo. There were no concomitant clinically meaningful elevations of total bilirubin, international normalized ratio (INR), or partial thromboplastin time (PTT). Mipomersen also increases hepatic fat, with or without concomitant increases in transaminases. In clinical trials of patients with heterozygous familial hypercholesterolemia and hyperlipidemia, the median absolute increase in hepatic fat was 10% after 26 weeks of treatment, from 0% at baseline, measured by magnetic resonance imaging. The long-term consequences of hepatic steatosis associated with mipomersen therapy are unknown. Hepatic steatosis may be a risk factor for progressive liver disease, including steatohepatitis and cirrhosis.
MANAGEMENT: Since alcohol may increase levels of hepatic fat and induce or exacerbate liver injury, the manufacturer recommends that patients taking mipomersen not consume more than one alcoholic drink per day.
References (1)
- (2013) "Product Information. Kynamro (mipomersen)." Genzyme Corporation
asparaginase Escherichia coli food
Applies to: asparaginase escherichia coli
MONITOR: Concomitant use of asparaginase with other hepatotoxic agents may potentiate the risk of liver injury. Asparaginase-associated hepatotoxicity has been reported more commonly in adults than in children and has been strongly associated with obesity. Hepatomegaly, acute severe hepatotoxicity, and fatal liver failure have been reported with asparaginase treatment in adults. Also, asparaginase may increase the toxicity of drugs bound to plasma proteins or metabolized by the liver.
MANAGEMENT: The risk of additive hepatotoxicity should be considered when asparaginase is used with other hepatotoxic agents (e.g., alcohol, androgens, antituberculosis agents, azole antifungal agents, ACE inhibitors, macrolide antibiotics, nonsteroidal anti-inflammatory agents, nucleoside reverse transcriptase inhibitors, sulfonamides, thiazolidinediones, and statins). Liver function tests should be monitored at regular intervals during asparaginase treatment with or without other hepatotoxic drugs. Patients should be advised to seek medical attention if they experience potential symptoms of hepatotoxicity such as right upper quadrant pain, increasing abdominal size, fever, rash, itching, anorexia, nausea, vomiting, fatigue, malaise, dark urine, pale stools, and jaundice.
References (13)
- (2001) "Product Information. Oncaspar (pegaspargase)." Rhone Poulenc Rorer
- (2001) "Product Information. Elspar (asparaginase)." Merck & Co., Inc
- Cerner Multum, Inc. "UK Summary of Product Characteristics."
- Cerner Multum, Inc. "Australian Product Information."
- "Product Information. Erwinaze (asparaginase Erwinia chrysanthemi)." EUSA Pharma
- Cerner Multum, Inc (2015) "ANVISA Bulário Eletrônico."
- (2019) "Product Information. Asparlas (calaspargase pegol)." Servier
- Al-Nawakil C, Willems L, Mauprivez C, et al. (2014) "Successful treatment of l-asparaginase-induced severe acute hepatotoxicity using mitochondrial cofactors." Leuk Lymphoma, 55, p. 1670-4
- Christ TN, Stock W, Knoebel RW (2018) "Incidence of asparaginase-related hepatotoxicity, pancreatitis, and thrombotic events in adults with acute lymphoblastic leukemia treated with a pediatric-inspired regimen." J Oncol Pharm Pract, 24, p. 299-308
- Jenkins R, Perlin E (1987) "Severe hepatotoxicity from Escherichia coli L-asparaginase." J Natl Med Assoc, 79, p. 775-9
- Lu G, Karur V, Herrington JD, Walker MG (2016) "Successful treatment of pegaspargase-induced acute hepatotoxicity with vitamin B complex and L-carnitine" Proc (Bayl Univ Med Cent), 29, p. 46-7
- Bodmer M, Sulz M, Stadlmann S, Droll A, Terracciano L, Krahenbuhl S (2006) "Fatal liver failure in an adult patient with acute lymphoblastic leukemia following treatment with L-asparaginase." Digestion, 74, epub
- Burke PW, Aldoss I, Lunning MA, et al. (2013) "High-grade PEGylated asparaginase-related hepatotoxicity occurrence in a pediatric-inspired adult acute lymphoblastic leukemia regimen does not necessarily predict recurrent hepatotoxicity in subsequent cycles." Blood, 122, p. 2671
Therapeutic duplication warnings
No duplication 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.
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. |
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