Patient leaflets and SmPCs, drug interaction checker, official dosages and NHS pharmacy opening hours — all in one place.
Patient leaflets and SmPCs, drug interaction checker, official dosages and NHS pharmacy opening hours — all in one place.
The electronic medicines compendium (emc) no longer publishes a Summary of Product Characteristics for this product, which usually means it is no longer marketed in the UK. The patient leaflet below is kept for reference, but the product may not be available.
If you were prescribed this medicine, other products containing Dimethyl fumarate may still be available. Do not stop your treatment — ask your pharmacist or GP what to use instead.
for What Dimethyl Fumarate Wockhardt is The name of your medicine is Dimethyl Fumarate Wockhardt 120mg and 240mg Gastro-Resistant Hard Capsules (called Dimethyl Fumarate Wockhardt in this leaflet). Dimethyl Fumarate Wockhardt is a medicine that contains the active substance dimethyl fumarate.
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What Dimethyl Fumarate Wockhardt is used for Dimethyl Fumarate Wockhardt is used to treat relapsing-remitting multiple sclerosis (MS) in patients aged 13 years and older. MS is a long-term condition that affects the central nervous system (CNS), including the brain and the spinal cord. Relapsing-remitting MS is characterised by repeated attacks (relapses) of nervous system symptoms. Symptoms vary from patient to patient, but typically include walking difficulties, feeling off balance and visual difficulties (e.g. blurred or double vision). These symptoms may disappear completely when the relapse is over, but some problems may remain. How Dimethyl Fumarate Wockhardt works Dimethyl Fumarate Wockhardt seems to work by stopping the body's defence system from damaging your brain and spinal cord. This may also help to delay future worsening of your MS.
e Dimethyl Fumarate Wockhardt Do not take Dimethyl Fumarate Wockhardt
acid esters, used to treat psoriasis (a skin disease). If you notice you are passing more urine, are thirstier and drinking more than normal, your muscles seem weaker, you break a bone, or just have aches and pains, talk to your doctor as soon as possible so that this can be investigated further. Children and adolescents Do not give this medicine to children below 10 years of age because no data are available in this age group. Other medicines and Dimethyl Fumarate Wockhardt Tell your doctor or pharmacist if you are taking, have recently taken or might take any other medicines, in particular:
Dimethyl Fumarate Wockhardt Always take this medicine exactly as your doctor has told you. Check with your doctor if you are not sure. Starting dose 120mg twice a day. Take this starting dose for the first 7 days, then take the regular dose. Regular dose 240mg twice a day. Dimethyl Fumarate Wockhardt is for oral use.
Talk to your doctor before taking Dimethyl Fumarate Wockhardt if you have:
Swallow each capsule whole, with some water. Do not divide, crush, dissolve, suck or chew the capsule as this may increase some side effects.
Herpes zoster (shingles) may occur with dimethyl fumarate treatment. In some cases, serious complications have occurred. You should inform your doctor immediately if you suspect you have any symptoms of shingles.
If you take more Dimethyl Fumarate Wockhardt than you should If you have taken too many capsules, talk to your doctor straight away. You may experience side effects similar to those described below in section 4.
If you believe your MS is getting worse (e.g. weakness or visual changes) or if you notice any new symptoms, talk to your doctor straight away because these may be the symptoms of a rare brain infection called progressive multifocal leukoencephalopathy (PML). PML is a serious condition that may lead to severe disability or death.
If you forget to take Dimethyl Fumarate Wockhardt If you forget or miss a dose, do not take a double dose. You may take the missed dose if you leave at least 4 hours between the doses. Otherwise wait until your next planned dose.
Take Dimethyl Fumarate Wockhardt with food – it may help to reduce some of the very common side effects (listed in section 4).
A rare but serious kidney disorder called Fanconi Syndrome has been reported with a medicine containing dimethyl fumarate, in combination with other fumaric
If you have any further questions on the use of this medicine, ask your doctor or pharmacist.
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4. Possible side effects Like all medicines, this medicine can cause side effects, although not everybody gets them. Serious side effects Dimethyl fumarate may lower lymphocyte counts (a type of white blood cell). Having a low white blood cell count can increase your risk of infection, including the risk of a rare brain infection called progressive multifocal leukoencephalopathy (PML). PML may lead to severe disability or death. PML has occurred after 1 to 5 years of treatment and so your physician should continue to monitor your white blood cells throughout your treatment, and you should remain observant of any potential symptoms of PML as described below. The risk of PML may be higher if you have previously taken a medicine impairing the functionality of your body's immune system. The symptoms of PML may be similar to an MS relapse. Symptoms may include new or worsening weakness on one side of the body; clumsiness; changes in vision, thinking, or memory; or confusion or personality changes, or speech and communication difficulties lasting for more than several days. Therefore, if you believe your MS is getting worse or if you notice any new symptoms while you are on Dimethyl Fumarate Wockhardt treatment, it is very important that you speak to your doctor as soon as possible. Also speak with your partner or caregivers and inform them about your treatment. Symptoms might arise that you might not become aware of by yourself.
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Call your doctor straight away if you experience any of these symptoms ➞ Severe allergic reactions The frequency of severe allergic reactions cannot be estimated from the available data (not known). Reddening of the face or body (flushing) is a very common side effect. However, should flushing be accompanied by a red rash or hives and you get any of these symptoms:
Rare (may affect up to 1 in 1000 people)
Children (13 years of age and above) and adolescents The side effects listed above also apply to children and adolescents. Some side effects were reported more frequently in children and adolescents than in adults, e.g, headache, stomach pain or stomach cramps, being sick (vomiting), throat pain, cough, and painful menstrual periods. Reporting of side effects If you get any side effects, talk to your doctor or pharmacist. This includes any possible side effects not listed in this leaflet. You can also report side effects directly via the Yellow Card Scheme Website: www.mhra.gov.uk/yellowcard or search for MHRA Yellow Card in the Google Play or Apple App Store. By reporting side effects, you can help provide more information on the safety of this medicine.
which may show up in your blood or urine tests:
Other formats: To listen to or request a copy of this leaflet in Braille, large print or audio please call, free of charge: 0800 198 5000. Please be ready to give the following information: Product Name
Reference Number
Dimethyl Fumarate Wockhardt 120mg Gastro-Resistant Hard Capsules
29831/0775
Dimethyl Fumarate Wockhardt 240mg Gastro-Resistant Hard Capsules
29831/0776
This is a service provided by the Royal National Institute of Blind People. This leaflet was last revised in 03/2025 108742/4
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Dimethyl Fumarate Wockhardt Keep this medicine out of the sight and reach of children. Do not use this medicine after the expiry date which is stated on the blister and the carton after "EXP". The expiry date refers to the last day of that month. This medicine does not require any special temperature storage conditions. Store in the original package in order to protect from light. Do not throw away any medicines via wastewater or household waste. Ask your pharmacist how to dispose of medicines you no longer use. These measures will help protect the environment.
What Dimethyl Fumarate Wockhardt contains The active substance is dimethyl fumarate. Dimethyl Fumarate Wockhardt 120mg: Each capsule contains 120mg of dimethyl fumarate. Dimethyl Fumarate Wockhardt 240mg: Each capsule contains 240mg of dimethyl fumarate. The other ingredients are: Capsule content: microcrystalline cellulose, povidone K30, crospovidone, silica colloidal anhydrous, magnesium stearate, talc, triethyl citrate, methacrylic acid/ethylacrylate copolymer (1:1), hypromellose, titanium dioxide (E171) and triacetin. Capsule shell: gelatin, titanium dioxide (E171), brilliant blue FCF (E133), yellow iron oxide (E172) and black ink (shellac, potassium hydroxide, propylene glycol (E1520), black iron oxide (E172) and strong ammonia solution). What Dimethyl Fumarate Wockhardt looks like and contents of the pack Dimethyl Fumarate Wockhardt 120mg: Green opaque cap and white opaque body, capsule shell size no. 0, length 21.4 mm, imprinted in black ink with "DMF 120" on the body containing white to off-white minitablets. Dimethyl Fumarate Wockhardt 240mg: Green opaque cap and body, capsule shell size no. 00, length 23.2 mm, imprinted in black ink with "DMF 240" on the body containing white to off-white minitablets. Carton containing OPA/Alu/PVC//Alu blisters. Dimethyl Fumarate Wockhardt 120mg: Packs containing 14 capsules. Dimethyl Fumarate Wockhardt 240mg: Packs containing 56 or 168 capsules. Not all pack sizes may be marketed. Marketing Authorisation Holder Wockhardt UK Ltd., Ash Road North, Wrexham, LL13 9UF, UK Manufacturer Pharmadox Healthcare Ltd., KW20A Kordin Industrial Park, Paola PLA 3000, Malta
Dimethyl Fumarate Wockhardt 240mg Gastro-Resistant Hard Capsules comes as capsule containing 240mg. Always follow the dose your doctor or pharmacist has given you, and read the leaflet that comes with the medicine.
The active substance in Dimethyl Fumarate Wockhardt 240mg Gastro-Resistant Hard Capsules is dimethyl fumarate.
Medicines with the same active substance, strength and form include: Tecfidera 240mg gastro-resistant hard capsules, Dimethyl Fumarate 240 mg gastro-resistant hard capsules, Dimethyl fumarate 240 mg Gastro-resistant capsule. In total there are 7 equivalent products. They are interchangeable only if your prescriber or pharmacist says so.
This leaflet reproduces the patient information leaflet approved for Dimethyl Fumarate Wockhardt 240mg Gastro-Resistant Hard Capsules, as published on the electronic medicines compendium (emc). The version printed inside your medicine’s packaging is the one that applies to you.
Whether a medicine is available over the counter or on prescription only depends on its licence. Check the leaflet, or ask your pharmacist — they can tell you straight away.
The text above reproduces the patient information leaflet approved for this medicine, restructured for easier reading.
Dimethyl Fumarate Wockhardt is indicated for the treatment of adult and paediatric patients aged 13 years and older with relapsing remitting multiple sclerosis (RRMS).
Treatment should be initiated under supervision of a physician experienced in the treatment of multiple sclerosis.
Posology
The starting dose is 120 mg twice a day. After 7 days, the dose should be increased to the recommended maintenance dose of 240 mg twice a day (see section 4.4).
If a patient misses a dose, a double dose should not be taken. The patient may take the missed dose only if they leave 4 hours between doses. Otherwise the patient should wait until the next scheduled dose.
Temporary dose reduction to 120 mg twice a day may reduce the occurrence of flushing and gastrointestinal adverse reactions. Within 1 month, the recommended maintenance dose of 240 mg twice a day should be resumed.
Dimethyl Fumarate Wockhardt should be taken with food (see section 5.2). For those patients who may experience flushing or gastrointestinal adverse reactions, taking Dimethyl Fumarate Wockhardt with food may improve tolerability (see sections 4.4, 4.5 and 4.8).
Special populations
Elderly
Clinical studies of dimethyl fumarate had limited exposure to patients aged 55 years and above, and did not include sufficient numbers of patients aged 65 and over to determine whether they respond differently than younger patients (see section 5.2). Based on the mode of action of the active substance there are no theoretical reasons for any requirement for dose adjustments in the elderly.
Renal and hepatic impairment
Dimethyl fumarate has not been studied in patients with renal or hepatic impairment. Based on clinical pharmacology studies, no dose adjustments are needed (see section 5.2). Caution should be used when treating patients with severe renal or severe hepatic impairment (see section 4.4).
Paediatric population
The posology is the same in adults and in paediatric patients aged 13 years and older.
There are limited data available in children between 10 and 12 years old.
Currently available data are described in sections 4.8and 5.1, but no recommendation on a posology can be made.
The safety and efficacy of dimethyl fumarate in children aged less than 10 years have not yet been established. No data are available.
Method of administration
Dimethyl Fumarate Wockhardt is for oral use.
The capsule should be swallowed whole. The capsule or its contents should not be crushed, divided, dissolved, sucked or chewed as the enteric-coating of the minitablets prevents irritant effects on the gastrointestinal tract.
Hypersensitivity to the active substance or to any of the excipients listed in section 6.1.
Suspected or confirmed Progressive multifocal leukoencephalopathy (PML).
Blood/laboratory tests
Renal function
Changes in renal laboratory tests have been seen in clinical trials in patients treated with dimethyl fumarate (see section 4.8). The clinical implications of these changes are unknown. Assessment of renal function (e.g. creatinine, blood urea nitrogen and urinalysis) is recommended prior to treatment initiation, after 3 and 6 months of treatment, every 6 to 12 months thereafter and as clinically indicated.
Hepatic function
Drug-induced liver injury, including liver enzyme increase (≥ 3 upper limit of normal (ULN)) and elevation of total bilirubin levels (≥ 2 ULN) can result from treatment with dimethyl fumarate. The time to onset can be days, several weeks or longer. Resolution of the adverse reactions has been observed after treatment was discontinued. Assessment of serum aminotransferases (e.g. alanine aminotransferase (ALT), aspartate aminotransferase (AST)) and total bilirubin levels are recommended prior to treatment initiation and during treatment as clinically indicated.
Lymphocytes
Patients treated with dimethyl fumarate may develop lymphopenia (see section 4.8). Prior to initiating treatment with dimethyl fumarate, a current complete blood count, including lymphocytes, must be performed.
If lymphocyte count is found to be below the normal range, thorough assessment of possible causes should be completed prior to initiation of treatment with dimethyl fumarate. Dimethyl fumarate has not been studied in patients with pre-existing low lymphocyte counts and caution should be exercised when treating these patients. Treatment should not be initiated in patients with severe lymphopenia (lymphocyte counts < 0.5×109/L).
After starting therapy, complete blood counts, including lymphocytes, must be performed every 3 months.
Enhanced vigilance due to an increased risk of progressive multifocal leukoencephalopathy (PML) is recommended in patients with lymphopenia as follows:
‒ Treatment should be discontinued in patients with prolonged severe lymphopenia (lymphocyte counts < 0.5×109/L) persisting for more than 6 months.
‒ In patients with sustained moderate reductions of absolute lymphocyte counts ≥ 0.5×109/L to < 0.8×109/L for more than 6 months, the benefit/risk balance of treatment with Dimethyl Fumarate Wockhardt treatment should be re-assessed.
‒ In patients with lymphocyte counts below lower limit of normal (LLN) as defined by local laboratory reference range, regular monitoring of absolute lymphocyte counts is recommended. Additional factors that might further augment the individual PML risk should be considered (see subsection on PML below).
Lymphocyte counts should be followed until recovery (see section 5.1). Upon recovery and in the absence of alternative treatment options, decisions about whether or not to restart Dimethyl Fumarate Wockhardt after treatment discontinuation should be based on clinical judgement.
Magnetic resonance imaging (MRI)
Before initiating treatment with Dimethyl Fumarate Wockhardt, a baseline MRI should be available (usually within 3 months) as a reference. The need for further MRI scanning should be considered in accordance with national and local recommendations. MRI imaging may be considered as part of increased vigilance in patients considered at increased risk of PML. In case of clinical suspicion of PML, MRI should be performed immediately for diagnostic purposes.
Progressive multifocal leukoencephalopathy (PML)
PML has been reported in patients treated with dimethyl fumarate (see section 4.8). PML is an opportunistic infection caused by John-Cunningham virus (JCV), which may be fatal or result in severe disability.
PML cases have occurred with dimethyl fumarate and other medicinal products containing fumarates in the setting of lymphopenia (lymphocyte counts below LLN). Prolonged moderate to severe lymphopenia appears to increase the risk of PML with dimethyl fumarate, however, risk cannot be excluded in patients with mild lymphopenia.
Additional factors that might contribute to an increased risk of PML in the setting of lymphopenia are:
‒ duration of dimethyl fumarate therapy. Cases of PML have occurred after approximately 1 to 5 years of treatment, although the exact relationship with duration of treatment is unknown.
‒ profound decreases in CD4+ and especially in CD8+ T cell counts, which are important for immunological defence (see section 4.8), and
‒ prior immunosuppressive or immunomodulatory therapy (see below).
Physicians should evaluate their patients to determine if the symptoms are indicative of neurological dysfunction and, if so, whether these symptoms are typical of MS or possibly suggestive of PML.
At the first sign or symptom suggestive of PML, Dimethyl Fumarate Wockhardt should be withheld and appropriate diagnostic evaluations, including determination of JCV DNA in cerebrospinal fluid (CSF) by quantitative polymerase chain reaction (PCR) methodology, need to be performed. The symptoms of PML may be similar to an MS relapse. Typical symptoms associated with PML are diverse, progress over days to weeks, and include progressive weakness on one side of the body or clumsiness of limbs, disturbance of vision, and changes in thinking, memory, and orientation leading to confusion and personality changes. Physicians should be particularly alert to symptoms suggestive of PML that the patient may not notice. Patients should also be advised to inform their partner or caregivers about their treatment, since they may notice symptoms that the patient is not aware of.
PML can only occur in the presence of a JCV infection. It should be considered that the influence of lymphopenia on the accuracy of serum anti-JCV antibody testing has not been studied in dimethyl fumarate treated patients. It should also be noted that a negative anti-JCV antibody test (in the presence of normal lymphocyte counts) does not preclude the possibility of subsequent JCV infection.
If a patient develops PML, Dimethyl Fumarate Wockhardt must be permanently discontinued.
Prior treatment with immunosuppressive or immunomodulating therapies
No studies have been performed evaluating the efficacy and safety of dimethyl fumarate when switching patients from other disease modifying therapies to dimethyl fumarate. The contribution of prior immunosuppressive therapy to the development of PML in dimethyl fumarate treated patients is possible.
PML cases have been reported in patients who had previously been treated with natalizumab, for which PML is an established risk. Physicians should be aware that cases of PML occurring following recent discontinuation of natalizumab may not have lymphopenia.
In addition, a majority of confirmed PML cases with dimethyl fumarate occurred in patients with prior immunomodulatory treatment.
When switching patients from another disease modifying therapy to dimethyl fumarate, the half-life and mode of action of the other therapy should be considered in order to avoid an additive immune effect while at the same time, reducing the risk of reactivation of MS. A complete blood count is recommended prior to initiating Dimethyl Fumarate Wockhardt and regularly during treatment (see Blood/laboratory tests above).
Severe renal or hepatic impairment
Dimethyl fumarate has not been studied in patients with severe renal or severe hepatic impairment and caution should, therefore, be used in these patients (see section 4.2).
Severe active gastrointestinal disease
Dimethyl fumarate has not been studied in patients with severe active gastrointestinal disease and caution should, therefore, be used in these patients.
Flushing
In clinical trials, 34% of dimethyl fumarate treated patients experienced flushing. In the majority of patients who experienced flushing, it was mild or moderate in severity. Data from healthy volunteer studies suggest that dimethyl fumarate-associated flushing is likely to be prostaglandin mediated. A short course of treatment with 75 mg non-enteric coated acetylsalicylic acid may be beneficial in patients affected by intolerable flushing (see section 4.5). In 2 healthy volunteer studies, the occurrence and severity of flushing over the dosing period was reduced.
In clinical trials, 3 patients out of a total of 2 560 patients treated with dimethyl fumarate experienced serious flushing symptoms that were probably hypersensitivity or anaphylactoid reactions. These adverse reactions were not life-threatening, but led to hospitalisation. Prescribers and patients should be alert to this possibility in the event of severe flushing reactions (see sections 4.2, 4.5 and 4.8).
Anaphylactic reactions
Cases of anaphylaxis/anaphylactoid reaction have been reported following dimethyl fumarate administration in the post-marketing setting(see section 4.8). Symptoms may include dyspnoea, hypoxia, hypotension, angioedema, rash or urticaria. The mechanism of dimethyl fumarate induced anaphylaxis is unknown. Reactions generally occur after the first dose, but may also occur at any time during treatment, and may be serious and life threatening.
Patients should be instructed to discontinue Dimethyl Fumarate Wockhardt and seek immediate medical care if they experience signs or symptoms of anaphylaxis. Treatment should not be restarted (see section 4.8).
Infections
In Phase III placebo-controlled studies, the incidence of infections (60% versus 58%) and serious infections (2% versus 2%) was similar in patients treated with dimethyl fumarate or placebo, respectively. However, due to dimethyl fumarate immunomodulatory properties (see section 5.1), if a patient develops a serious infection, suspending treatment with Dimethyl Fumarate Wockhardt should be considered and the benefits and risks should be reassessed prior to re-initiation of therapy. Patients receiving Dimethyl Fumarate Wockhardt should be instructed to report symptoms of infections to a physician. Patients with serious infections should not start treatment with this medicinal product until the infection(s) are resolved.
There was no increased incidence of serious infections observed in patients with lymphocyte counts < 0.8×109/L or < 0.5×109/L (see section 4.8). If therapy is continued in the presence of moderate to severe prolonged lymphopenia, the risk of an opportunistic infection, including PML, cannot be ruled out (see section 4.4 subsection PML).
Herpes zoster infections
Cases of herpes zoster have been reported with dimethyl fumarate. The majority of cases were non-serious, however, serious cases, including disseminated herpes zoster, herpes zoster ophthalmicus, herpes zoster oticus, herpes zoster infection neurological, herpes zoster meningoencephalitis and herpes zoster meningomyelitis have been reported. These adverse reactions may occur at any time during the treatment.
Monitor Patients taking Dimethyl Fumarate Wockhardt for signs and symptoms of herpes zoster especially when concurrent lymphocytopenia is reported. If herpes zoster occurs, appropriate treatment for herpes zoster should be administered. Consider Withholding Dimethyl Fumarate Wockhardt treatment in patients with serious infections until the infection has resolved (see section 4.8).
Treatment initiation
Dimethyl Fumarate Wockhardt treatment should be started gradually to reduce the occurrence of flushing and gastrointestinal adverse reactions (see section 4.2).
Fanconi syndrome
Cases of Fanconi syndrome have been reported with a medicinal product containing dimethyl fumarate in combination with other fumaric acid esters. Early diagnosis of Fanconi syndrome and discontinuation of dimethyl fumarate treatment are important to prevent the onset of renal impairment and osteomalacia, as the syndrome is usually reversible. The most important signs are: proteinuria, glucosuria (with normal blood sugar levels), hyperaminoaciduria and phosphaturia (possibly concurrent with hypophosphatemia). Progression might involve symptoms such as polyuria, polydipsia and proximal muscle weakness. In rare cases hypophosphataemic osteomalacia with nonlocalized bone pain, elevated alkaline phosphatase in serum and stress fractures may occur. Importantly, Fanconi syndrome can occur without elevated creatinine levels or low glomerular filtration rate. In case of unclear symptoms Fanconi syndrome should be considered and appropriate examinations should be performed.
Anti-neoplastic, immunosuppressive or corticosteroid therapies
Dimethyl fumarate has not been studied in combination with anti-neoplastic or immunosuppressive therapies and caution should, therefore, be used during concomitant administration. In multiple sclerosis clinical studies, the concomitant treatment of relapses with a short course of intravenous corticosteroids was not associated with a clinically relevant increase of infection.
Vaccines
Concomitant administration of non-live vaccines according to national vaccination schedules may be considered during Dimethyl Fumarate Wockhardt therapy.
In a clinical study involving a total of 71 patients with relapsing remitting multiple sclerosis, patients on dimethyl fumarate 240 mg twice daily for at least 6 months (n = 38) or non-pegylated interferon for at least 3 months (n = 33), mounted a comparable immune response (defined as ≥ 2-fold increase from pre- to post-vaccination titre) to tetanus toxoid (recall antigen) and a conjugated meningococcal C polysaccharide vaccine (neoantigen), while the immune response to different serotypes of an unconjugated 23-valent pneumococcal polysaccharide vaccine (T-cell independent antigen) varied in both treatment groups. A positive immune response defined as a ≥ 4-fold increase in antibody titre to the 3 vaccines, was achieved by fewer subjects in both treatment groups. Small numerical differences in the response to tetanus toxoid and pneumococcal serotype 3 polysaccharide were noted in favour of non-pegylated interferon.
No clinical data are available on the efficacy and safety of live attenuated vaccines in patients taking dimethyl fumarate. Live vaccines might carry an increased risk of clinical infection and should not be given to patients treated with Dimethyl Fumarate Wockhardt unless, in exceptional cases, this potential risk is considered to be outweighed by the risk to the individual of not vaccinating.
Other fumaric acid derivatives
During treatment with Dimethyl Fumarate Wockhardt, simultaneous use of other fumaric acid derivatives (topical or systemic) should be avoided.
In humans, dimethyl fumarate is extensively metabolised by esterases before it reaches the systemic circulation and further metabolism occurs through the tricarboxylic acid cycle, with no involvement of the cytochrome P450 (CYP) system. Potential drug interaction risks were not identified from in vitro CYP-inhibition and induction studies, a p-glycoprotein study, or studies of the protein binding of dimethyl fumarate and monomethyl fumarate (the primary metabolite of dimethyl fumarate).
Effects of other substances on dimethyl fumarate
Commonly used medicinal products in patients with multiple sclerosis, intramuscular interferon beta-1a and glatiramer acetate, were clinically tested for potential interactions with dimethyl fumarate and did not alter the pharmacokinetic profile of dimethyl fumarate.
Evidence from healthy volunteer studies suggests that dimethyl fumarate-associated flushing is likely to be prostaglandin mediated. In two healthy volunteer studies, the administration of 325 mg (or equivalent) non-enteric coated acetylsalicylic acid, 30 minutes prior to dimethyl fumarate, dosing over 4 days and over 4 weeks, respectively, did not alter the pharmacokinetic profile of dimethyl fumarate. Potential risks associated with acetylsalicylic acid therapy should be considered prior to co-administration with Dimethyl Fumarate Wockhardt in patients with relapsing remitting MS. Long-term (> 4 weeks) continuous use of acetylsalicylic acid has not been studied (see sections 4.4 and 4.8).
Concurrent therapy with nephrotoxic medicinal products (such as aminoglycosides, diuretics, nonsteroidal anti-inflammatory drugs or lithium) may increase the potential of renal adverse reactions (e.g. proteinuria see section 4.8) in patients taking dimethyl fumarate (see section 4.4 Blood/laboratory tests).
Consumption of moderate amounts of alcohol did not alter exposure to dimethyl fumarate and was not associated with an increase in adverse reactions. Consumption of large amounts of strong alcoholic drinks (more than 30% alcohol by volume) should be avoided within an hour of taking Dimethyl Fumarate Wockhardt, as alcohol may lead to increased frequency of gastrointestinal adverse reactions.
Effects of dimethyl fumarate on other substances
In vitro CYP induction studies did not demonstrate an interaction between dimethyl fumarate and oral contraceptives. In an in vivo study, co-administration of dimethyl fumarate with a combined oral contraceptive (norgestimate and ethinyl estradiol) did not elicit any relevant change in oral contraceptive exposure.
No interaction studies have been performed with oral contraceptives containing other progestogens, however an effect of dimethyl fumarate on their exposure is not expected.
Paediatric population
Interaction studies have only been performed in adults.
Pregnancy
A moderate amount of data on pregnant women are available (between 300-1,000 pregnancy outcomes), based on a pregnancy registry and post-marketing spontaneous reports. In the Dimethyl Fumarate pregnancy registry, 289 prospectively collected pregnancy outcomes were documented in patients with MS who were exposed to dimethyl fumarate. The median duration of exposure to dimethyl fumarate was 4.6 gestational weeks with limited exposure after the sixth gestational week (44 pregnancy outcomes). Exposure to dimethyl fumarate during such early pregnancy indicates no malformative or foeto/neonatal toxicity compared to the general population. The risk of longer dimethyl fumarate exposure or exposure in later stages of pregnancy is not known.
Animal studies have shown reproductive toxicity (see section 5.3). As a precautionary measure, it is preferable to avoid the use of Dimethyl Fumarate during pregnancy. Dimethyl Fumarate Wockhardt should be used during pregnancy only if clearly needed and if the potential benefit justifies the potential risk to the foetus.
Breast-feeding
It is unknown whether dimethyl fumarate or its metabolites are excreted in human milk. A risk to the new-borns/infants cannot be excluded. A decision must be made whether to discontinue breast-feeding or to discontinue Dimethyl Fumarate Wockhardt therapy, taking into account the benefit of breast-feeding for the child and the benefit of therapy for the woman.
Fertility
There are no data on the effects of dimethyl fumarate on human fertility. Data from preclinical studies do not suggest that dimethyl fumarate would be associated with an increased risk of reduced fertility (see section 5.3).
Dimethyl fumarate has no or negligible influence on the ability to drive and use machines.
Summary of the safety profile
The most common adverse reactions are flushing (35%) and gastrointestinal events (i.e. diarrhoea (14%), nausea (12%), abdominal pain (10%), abdominal pain upper (10%)). Flushing and gastrointestinal events tend to begin early in the course of treatment (primarily during the first month) and in patients who experience flushing and gastrointestinal events, these events may continue to occur intermittently throughout treatment with dimethyl fumarate. The most commonly reported adverse reactions leading to treatment discontinuation are flushing (3%) and gastrointestinal events (4%).
In phase 2 and 3 placebo-controlled and uncontrolled clinical studies, a total of 2 513 patients have received dimethyl fumarate for periods of up to 12 years with an overall exposure equivalent to 11 318 person-years. A total of 1 169 patients have received at least 5 years of treatment with dimethyl fumarate and 426 patients have received at least 10 years of treatment with dimethyl fumarate. The experience in uncontrolled clinical trials is consistent with the experience in the placebo-controlled clinical trials.
Tabulated list of adverse reactions
Adverse reactions arising from clinical studies, post-authorisation safety studies and spontaneous reports, are presented in the table below.
The adverse reactions are presented as MedDRA preferred terms under the MedDRA System Organ Class. The incidence of the adverse reactions below is expressed according to the following categories:
- Very common (≥ 1/10)
- Common (≥ 1/100 to < 1/10)
- Uncommon (≥ 1/1 000 to < 1/100)
- Rare (≥ 1/10 000 to < 1/1 000)
- Very rare (< 1/10 000)
- Not known (frequency cannot be estimated from the available data).
MedDRA System Organ Class
Adverse reaction
Frequency category
Infections and infestations
Gastroenteritis
Common
Progressive multifocal leukoencephalopathy (PML)
Not known
Herpes zoster
Not known
Blood and lymphatic system disorders
Lymphopenia
Common
Leucopenia
Common
Thrombocytopenia
Uncommon
Immune system disorders
Hypersensitivity
Uncommon
Anaphylaxis
Not known
Dyspnoea
Not known
Hypoxia
Not known
Hypotension
Not known
Angioedema
Not known
Nervous system disorders
Burning sensation
Common
Vascular disorders
Flushing
Very common
Hot flush
Common
Respiratory, thoracic and mediastinal disorders
Rhinorrhoea
Not known
Gastrointestinal disorders
Diarrhoea
Very common
Nausea
Very common
Abdominal pain upper
Very common
Abdominal pain
Very common
Vomiting
Common
Dyspepsia
Common
Gastritis
Common
Gastrointestinal disorder
Common
Hepatobiliary disorders
Aspartate aminotransferase increased
Common
Alanine aminotransferase increased
Common
Drug-induced liver injury
Rare
Skin and subcutaneous tissue disorders
Pruritus
Common
Rash
Common
Erythema
Common
Alopecia
Common
Renal and urinary disorders
Proteinuria
Common
General disorders and administration site conditions
Feeling hot
Common
Investigations
Ketones measured in urine
Very common
Albumin urine present
Common
White blood cell count decreased
Common
Description of selected adverse reactions
Flushing
In the placebo-controlled studies, the incidence of flushing (34% versus 4%) and hot flush (7% versus 2%) was increased in patients treated with dimethyl fumarate compared to placebo, respectively.
Flushing is usually described as flushing or hot flush, but can include other events (e.g. warmth, redness, itching, and burning sensation). Flushing events tend to begin early in the course of treatment (primarily during the first month) and in patients who experience flushing, these events may continue to occur intermittently throughout treatment with dimethyl fumarate.
In patients with flushing, the majority had flushing events that were mild or moderate in severity. Overall, 3% of patients treated with dimethyl fumarate discontinued due to flushing.
The incidence of serious flushing, which may be characterised by generalised erythema, rash and/or pruritus, was seen in less than 1% of patients treated with dimethyl fumarate (see sections 4.2, 4.4 and 4.5).
Gastrointestinal adverse reactions
The incidence of gastrointestinal events (e.g. diarrhoea [14% versus 10%], nausea [12% versus 9%], upper abdominal pain [10% versus 6%], abdominal pain [9% versus 4%], vomiting [8% versus 5%] and dyspepsia [5% versus 3%]) was increased in patients treated with dimethyl fumarate compared to placebo, respectively.
Gastrointestinal adverse reactions tend to begin early in the course of treatment (primarily during the first month) and in patients who experience gastrointestinal events, these events may continue to occur intermittently throughout treatment with dimethyl fumarate.
In the majority of patients who experienced gastrointestinal adverse reactions, it was mild or moderate in severity. 4% of patients treated with dimethyl fumarate discontinued due to gastrointestinal events.
The incidence of serious gastrointestinal events, including gastroenteritis and gastritis, was seen in 1% of patients treated with dimethyl fumarate (see section 4.2).
Hepatic function
Based on data from placebo-controlled studies, the majority of patients with elevations had hepatic transaminases that were < 3 times the upper limit of normal (ULN).
The increased incidence of elevations of hepatic transaminases in patients treated with dimethyl fumarate relative to placebo was primarily seen during the first 6 months of treatment.
Elevations of alanine aminotransferase and aspartate aminotransferase ≥ 3 times ULN, respectively, were seen in 5% and 2% of patients treated with placebo and 6% and 2% of patients treated with dimethyl fumarate. Discontinuations due to elevated hepatic transaminases were < 1% and similar in patients treated with dimethyl fumarate or placebo. Elevations in transaminases ≥ 3 times ULN with concomitant elevations in total bilirubin > 2 times ULN, were not observed in placebo-controlled studies.
Increase of liver enzymes and cases of drug-induced liver injury (elevations in transaminases ≥ 3 times ULN with concomitant elevations in total bilirubin > 2 times ULN), have been reported in post-marketing experience following dimethyl fumarate administration, which resolved upon treatment discontinuation.
Lymphopenia
In the placebo-controlled studies most patients (> 98%) had normal lymphocyte counts prior to initiating treatment. Upon treatment with dimethyl fumarate, mean lymphocyte counts decreased over the first year with a subsequent plateau. On average, lymphocyte counts decreased by approximately 30% of baseline value. Mean and median lymphocyte counts remained within normal limits. Lymphocyte counts < 0.5×109/L were observed in < 1% of patients treated with placebo and 6% of patients treated with dimethyl fumarate. A lymphocyte count < 0.2×109/L was observed in 1 patient treated with dimethyl fumarate and in no patients treated with placebo.
In clinical studies (both controlled and uncontrolled), 41% of patients treated with dimethyl fumarate had lymphopenia (defined in these studies as < 0.91×109/L). Mild lymphopenia (counts ≥ 0.8×109/L to < 0.91×109/L) was observed in 28% of patients; moderate lymphopenia (counts ≥ 0.5×109/L and < 0.8×109/L) persisting for at least 6 months was observed in 11% of patients; severe lymphopenia (counts < 0.5×109/L) persisting for at least 6 months was observed in 2% of patients. In the group with severe lymphopenia, the majority of lymphocyte counts remained < 0.5×109/L with continued therapy.
In addition, in an uncontrolled, prospective, post-marketing study, at week 48 of treatment with dimethyl fumarate (n = 185) CD4+ T cells were moderately (counts ≥ 0.2×109/L to < 0.4×109/L) or severely (< 0.2×109/L) decreased in up to 37% or 6% of patients, respectively, while CD8+ T cells were more frequently reduced with up to 59% of patients at counts < 0.2×109/L and 25% of patients at counts < 0.1×109/L. In controlled and uncontrolled clinical studies, patients who discontinued dimethyl fumarate therapy with lymphocyte counts below the lower limit of normal (LLN) were monitored for recovery of lymphocyte count to the LLN (see section 5.1).
Progressive multifocal leukoencephalopathy (PML) Cases of infections with John Cunningham virus (JCV) causing progressive multifocal leukoencephalopathy (PML) have been reported with dimethyl fumarate (see section 4.4).
PML may be fatal or result in severe disability. In 1 of the clinical trials, 1 patient taking dimethyl fumarate developed PML in the setting of prolonged severe lymphopenia (lymphocyte counts predominantly < 0.5×109/L for 3.5 years), with a fatal outcome. In the post-marketing setting, PML has also occurred in the presence of moderate and mild lymphopenia (> 0.5×109/L to < LLN, as defined by local laboratory reference range).
In several PML cases with determination of T cell subsets at the time of diagnosis of PML, CD8+ T cell counts were found to be decreased to < 0.1×109/L, whereas reductions in CD4+ T cells counts were variable (ranging from < 0.05 – 0.5×109/L) and correlated more with the overall severity of lymphopenia (< 0.5×109/L to < LLN). Consequently, the CD4+/CD8+ ratio was increased in these patients.
Prolonged moderate to severe lymphopenia appears to increase the risk of PML with dimethyl fumarate however, PML also occurred in patients with mild lymphopenia. Additionally, the majority of PML cases in the post-marketing setting have occurred in patients > 50 years.
Herpes zoster infections
Herpes zoster infections have been reported with dimethyl fumarate use. In long-term extension study, in which 1 736 MS patients were treated with dimethyl fumarate, approximately 5% experienced 1 or more events of herpes zoster, the majority of which 42% were mild, 55% were moderate and 3% were severe. The time to onset from first dimethyl fumarate dose ranged from approximately 3 months to 10 years. Four patients experienced serious events, all of which resolved. Most subjects, including those who experienced a serious herpes zoster infection, had lymphocyte counts above the lower limit of normal. In a majority of patients with concurrent lymphocyte counts below the LLN, lymphopenia was rated moderate or severe.
In the post-marketing setting most cases of herpes zoster infection were non-serious and resolved with treatment. Limited data are available on absolute lymphocyte count (ALC) in patients with herpes zoster infection in the post-marketing setting. However, when reported, most patients experienced moderate (≥ 0.5 x 109/L to < 0.8 x 109/L) or severe (< 0.5 x 109/L to 0.2×109/L) lymphopenia (see section 4.4).
Laboratory abnormalities
In the placebo-controlled studies, measurement of urinary ketones (1+ or greater) was higher in patients treated with dimethyl fumarate (45%) compared to placebo (10%). No untoward clinical consequences were observed in clinical trials.
Levels of 1,25-dihydroxyvitamin D decreased in dimethyl fumarate treated patients relative to placebo (median percentage decrease from baseline at 2 years of 25% versus 15%, respectively) and levels of parathyroid hormone (PTH) increased in dimethyl fumarate treated patients relative to placebo (median percentage increase from baseline at 2 years of 29% versus 15%, respectively). Mean values for both parameters remained within normal range.
A transient increase in mean eosinophil counts was seen during the first 2 months of therapy.
Paediatric population
In a 96 week open label, randomised active controlled trial in paediatric patients with RRMS (n=7 aged 10 to less than 13 years and n=71 aged 13 to less than 18 years) were treated with 120 mg twice a day for 7 days followed by 240 mg twice a day for the remainder of treatment), the safety profile in paediatric patients appeared similar to that previously observed in adult patients.
The paediatric clinical trial design differed from the adult placebo-controlled clinical trials. Therefore, a contribution of clinical trial design to numerical differences in adverse events between the paediatric and adult populations, cannot be excluded.
Gastrointestinal disorders as well as respiratory, thoracic and mediastinal disorders and the adverse events of headache and dysmenorrhea were more frequently reported (≥10%) in the paediatric population than in the adult population.
These adverse events were reported in the following percentages in paediatric patients:
• Headache was reported in 28% of patients treated with dimethyl fumarate versus 36% in patients treated with interferon beta-1a.
• Gastrointestinal disorders were reported in 74% of patients treated with dimethyl fumarate versus 31% in patients treated with interferon beta-1a. Among them, abdominal pain and vomiting were the most frequently reported with dimethyl fumarate.
• Respiratory, thoracic and mediastinal disorders were reported in 32% of patients treated with dimethyl fumarate versus 11% in patients treated with interferon beta-1a. Among them, oropharyngeal pain and cough were the most frequently reported with dimethyl fumarate.
• Dysmenorrhea was reported in 17% of patients treated with dimethyl fumarate versus 7% of patients treated with interferon beta-1a.
In a small 24-week open-label uncontrolled study in paediatric patients with RRMS aged 13 to 17 years (120 mg twice a day for 7 days followed by 240 mg twice a day for the remainder of treatment; safety population, n = 22), followed by a 96-week extension study (240 mg twice per day, safety population, n = 20), the safety profile appeared similar to that observed in adult patients.
There are limited data available in children between 10 and 12 years old. The safety and efficacy of dimethyl fumarate in children aged less than 10 years have not yet been established.
Reporting of suspected adverse reactions
Reporting suspected adverse reactions after authorisation of the medicinal product is important. It allows continued monitoring of the benefit/risk balance of the medicinal product. Healthcare professionals are asked to report any suspected adverse reactions via Yellow Card Scheme at: www.mhra.gov.uk/yellowcard or search for MHRA Yellow Card in the Google Play or Apple App Store.
Cases of overdose with dimethyl fumarate have been reported. The symptoms described in these cases were consistent with the known safety profile of dimethyl fumarate.
There are no known therapeutic interventions to enhance elimination of dimethyl fumarate nor is there a known antidote. In the event of overdose, it is recommended that symptomatic supportive treatment be initiated as clinically indicated.
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