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 Mitoxantrone hydrochloride may still be available. Do not stop your treatment — ask your pharmacist or GP what to use instead.
for Onkotrone contains the active substance mitoxantrone. Onkotrone belongs to the group of medicines known as antineoplastic or anti-cancer medicines. It also belongs to the subgroup of anti-cancer medicines called anthracyclines. Mitoxantrone prevents cancer cells from growing, as a result of which they eventually die. Onkotrone is used in the treatment of:
e Onkotrone Do not use Onkotrone:
HA-30-02-552 Heart function tests prior and during treatment with Onkotrone Onkotrone may damage your heart and cause a deterioration of your heart function or in more severe cases heart failure. You are more prone to these side effects if you take higher doses of Onkotrone or:
Turn over leaflet for further information.
The following information is intended for healthcare professionals only: Onkotrone Injection Technical Information This technical leaflet does not include all the information about the product. Refer to the Summary of Product Characteristics before use. Posology Metastatic breast cancer, non-Hodgkin's lymphoma Single agent therapy The recommended initial dosage of mitoxantrone used as a single agent is 14 mg/m2 of body surface area, given as a single intravenous dose, which may be repeated at 21-day intervals. A lower initial dosage (12 mg/m2 or less) is recommended in patients with inadequate bone marrow reserves e.g. due to prior chemotherapy or poor general condition. Dosage modification and the timing of subsequent dosing should be determined by clinical judgment depending on the degree and duration of myelosuppression. For subsequent courses, the prior dose can usually be repeated if white blood cell and platelet counts have returned to normal levels after 21 days. The following table is suggested as a guide to dosage adjustment, in the treatment of metastatic breast cancer and non-Hodgkin's lymphoma according to haematological nadir (which usually occurs about 10 days after dosing). WBC and platelet nadir Time to recovery Subsequent dosing If WBC nadir > 1,500 μl and platelet nadir > 50,000 μl
Recovery ≤ 21 days
Repeat prior dose
If WBC nadir > 1,500 μl and platelet nadir > 50,000 μl
Recovery > 21 days
Withhold until recovery, then repeat prior dose.
If WBC nadir < 1,500 μl or platelet nadir < 50,000 μl
Any duration
Decrease by 2 mg/m2 from prior dose, after recovery.
If WBC nadir < 1,000 μl or platelet nadir < 25,000 μl
Any duration
Decrease by 4 mg/m2 from prior dose, after recovery.
Combination therapy Mitoxantrone has been given as part of combination therapy. In metastatic breast cancer, combinations of mitoxantrone with other cytotoxic agents including cyclophosphamide and 5-fluorouracil or methotrexate and mitomycin C have been shown to be effective. Mitoxantrone has also been used in various combinations for non-Hodgkin's lymphoma; however, data are presently limited and specific regimens cannot be recommended. In combination regimens mitoxantrone, in starting doses ranging from 7 to 8 to 10 to 12 mg/m2, dependent on the combination and frequency used, has shown effectiveness. As a guide, when mitoxantrone is used in combination chemotherapy with another myelosuppressive agent, the initial dose of mitoxantrone should be reduced by 2 to 4 mg/m2 below the doses recommended for single agent usage; subsequent dosing, as outlined in the table above, depends on the degree and duration of myelosuppression. Acute myeloid leukaemia Single Agent Therapy in Relapse The recommended dosage for remission induction is 12 mg/m2 of body surface area, given as a single intravenous dose daily for five consecutive days (total of 60 mg/m2). In clinical studies with a dosage of 12 mg/m2 daily for 5 days, patients who achieved a complete remission did so as a result of the first induction course.
Onkotrone Posology and method of administration Onkotrone will be given to you under supervision of a doctor experienced in the use of cytotoxic chemotherapy agents. It must always be administered as an intravenous infusion (in a vein) and must always be diluted before. The infusion liquid can leak out of the vein into the tissue (extravasation). If this happens, the infusion must be stopped and restarted in another vein. You should avoid contact with Onkotrone, especially with the skin, mucous membranes (moist body surfaces, such as the lining of the mouth) and eyes. The individual dose of Onkotrone is calculated by your doctor. The recommended dose is based on your body surface area, which is calculated in square metres (m2) using your height and weight. In addition your blood will be tested regularly during the treatment. The dosage of the medicine will be adjusted in accordance with the results of these tests. The usual dose is: Metastatic breast cancer, non-Hodgkin's lymphoma If Onkotrone is used alone: The recommended initial dosage of Onkotrone is 14 mg/m2 of body surface area, given as a single intravenous dose, which may be repeated at 21-day intervals, if your blood values have returned to acceptable levels. A lower initial dosage (12 mg/m2 or less) is recommended in patients with low bone marrow reserves e.g. due to prior chemotherapy or poor general condition. Your doctor will decide precisely which subsequent dosage you need. For subsequent courses, the prior dose can usually be repeated if white blood cell and platelet counts have returned to normal levels after 21 days. Combination therapy (if used with other agents) Onkotrone has been given as part of combination therapy. In metastatic breast cancer, combinations of Onkotrone with other cytotoxic agents including cyclophosphamide and 5-fluorouracil or methotrexate and mitomycin C have been shown to be effective. Onkotrone has also been used in various combinations for non-Hodgkin's lymphoma; however, data are presently limited and specific regimens cannot be recommended. As a guide, when Onkotrone is used in combination chemotherapy, the initial dose of Onkotrone should be reduced by 2-4 mg/m2 below the doses recommended when Onkotrone is used alone. Acute myeloid leukaemia: If used alone for recurrence (return of the cancer) The recommended dosage for remission induction is 12 mg/m2 of body surface area, given as a single intravenous dose daily for five consecutive days (total of 60 mg/m2 per 5 days). If used with other agents against cancer: Your doctor will decide exactly what dosage you need. This dose might be adjusted if:
Like all medicines, this medicine can cause side effects, although not everybody gets them. The most serious side effects are damage to the heart (myocardial toxicity) and myelosuppression (reduced activity of the bone marrow). Some side effects could be serious If any of the following happen, tell the doctor immediately:
Onkotrone
What Onkotrone contains The active substance is mitoxantrone hydrochloride. The strength of Onkotrone is 2 mg mitoxantrone/ml. Each vial contains 20 mg, 25 mg or 30 mg mitoxantrone depending on the size of the vial. The other ingredients are sodium chloride, sodium acetate, acetic acid, sterile water (called 'water for injections'). What Onkotrone looks like and contents of the pack Onkotrone is a dark blue solution in clear glass vials. Marketing Authorisation Holder and Manufacturer The Marketing Authorisation holder is: Baxter Healthcare Ltd Caxton Way, Thetford, Norfolk, IP24 3SE, UK Send all enquiries to this address. Onkotrone is manufactured by: Baxter Oncology GmbH Kantstrasse 2, 33790 Halle/Westfalen, Germany This leaflet was last approved in 04/2025 Is this leaflet hard to see or read? Telephone 01635 206345 for an audio-tape, large print leaflet or other formats.
Onkotrone and Baxter are trademarks of Baxter International Inc
Combination Therapy For induction, the recommended dosage is 12 mg/m2 of mitoxantrone daily on Days 1 to 3 given as an intravenous infusion, and 100 mg/m2 of cytarabine for 7 days given as a continuous 24-hour infusion on Days 1 to 7. Most complete remissions will occur following the initial course of induction therapy. In the event of an incomplete antileukaemic response, a second induction course may be given with mitoxantrone given for 2 days and cytarabine for 5 days, using the same daily dosage levels. If severe or life-threatening non-haematological toxicity is observed during the first induction course, the second induction course should be withheld until toxicity resolves. Consolidation therapy, which was used in two large randomised multicentre trials, consists of mitoxantrone 12 mg/m2 given by intravenous infusion daily on Days 1 and 2, and cytarabine, 100 mg/m2 for 5 days given as a continuous 24-hour infusion on Days 1 to 5. The first course was given approximately 6 weeks after the final induction course; the second was generally administered 4 weeks after the first. A single course of mitoxantrone 6 mg/m2 intravenous (IV) bolus, etoposide 80 mg/m2 intravenous for a period of 1 hour, and cytarabine (Ara-C) 1 g/m2 intravenous for a period of 6 hours daily for 6 days (MEC) showed antileukaemic activity as salvage therapy for refractory AML. Treatment of blast crisis in (chronic) myeloid leukaemia Single dose therapy in relapse The recommended dosage in relapse is 10 to 12 mg/m2 body surface area given as a single intravenous dose daily over 5 consecutive days (total of 50 to 60 mg/m2). Advanced castrate-resistant prostate cancer Based on data from two comparative trials of mitoxantrone plus corticosteroids versus corticosteroids alone, the recommended dosage of mitoxantrone is 12 to 14 mg/m2 given as a short intravenous infusion every 21 days, in combination with low oral doses of corticosteroids. Cancer patients who received cumulative doses of 140 mg/m2 either alone or in combination with other chemotherapeutic agents had a cumulative 2.6% probability of clinical congestive heart failure. For this reason, patients should be monitored for evidence of cardiac toxicity and questioned about symptoms of heart failure prior to the initiation of and during treatment. Mode of administration Onkotrone concentrate should be given by intravenous infusion only. Onkotrone concentrate should be slowly injected into a free flowing intravenous infusion of isotonic saline or 5% glucose solution over a period of not less than 3 to 5 minutes. The tubing should be inserted preferably into a large vein. If possible, avoid veins over joints or in extremities with compromised venous or lymphatic drainage. Onkotrone concentrate also can be administered as a short infusion (15 to 30 minutes) diluted in 50 to 100 ml isotonic saline or 5% glucose solution. Onkotrone concentrate must not be given subcutaneously, intramuscularly, or intra-arterially. Severe local tissue damage may occur if there is extravasation during administration. The medicinal product must also not be given by intrathecal injection. If any signs or symptoms of extravasation have occurred, including burning, pain, pruritus, erythema, swelling, blue discolouration, or ulceration, the administration should be stopped immediately (see section 4.4). Baxter and Onkotrone are trademarks of Baxter International Inc. UK C294
HA-30-02-552
Onkotrone Injection 2 mg/ml concentrate for solution for infusion comes as injection containing 2mg/ml. Always follow the dose your doctor or pharmacist has given you, and read the leaflet that comes with the medicine.
The active substance in Onkotrone Injection 2 mg/ml concentrate for solution for infusion is mitoxantrone hydrochloride.
This leaflet reproduces the patient information leaflet approved for Onkotrone Injection 2 mg/ml concentrate for solution for infusion, 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.
Onkotrone Injection is indicated for the treatment of:
- Metastatic breast cancer
- Non-Hodgkin's Lymphoma
- Acute myeloid leukaemia (AML) in adults
- In combination regimens is indicated in the remission-induction treatment of blast crisis in chronic myeloid leukaemia
- In combination with corticosteroids for palliation (e.g. pain relief) related to advanced castrate resistant prostate cancer.
Posology
Onkotrone should be administered under the supervision of a physician experienced in the use of cytotoxic chemotherapy agents.
Metastatic breast cancer, non-Hodgkin's lymphoma
Single agent therapy
The recommended initial dosage of mitoxantrone used as a single agent is 14 mg/m2 of body surface area, given as a single intravenous dose, which may be repeated at 21-day intervals. A lower initial dosage (12 mg/m2 or less) is recommended in patients with inadequate bone marrow reserves e.g. due to prior chemotherapy or poor general condition.
Dosage modification and the timing of subsequent dosing should be determined by clinical judgment depending on the degree and duration of myelosuppression. For subsequent courses, the prior dose can usually be repeated if white blood cell and platelet counts have returned to normal levels after 21 days.
The following table is suggested as a guide to dosage adjustment, in the treatment of metastatic breast cancer and non-Hodgkin's lymphoma according to haematological nadir (which usually occurs about 10 days after dosing).
WBC and platelet nadir
Time to recovery
Subsequent dosing
If WBC nadir > 1,500 μl and platelet nadir > 50,000 μl
Recovery ≤ 21 days
Repeat prior dose
If WBC nadir > 1,500 μl and platelet nadir > 50,000 μl
Recovery > 21 days
Withhold until recovery, then repeat prior dose.
If WBC nadir < 1,500 μl or platelet nadir < 50,000 μl
Any duration
Decrease by 2 mg/m2 from prior dose, after recovery.
If WBC nadir < 1,000 μl or platelet nadir < 25,000 μl
Any duration
Decrease by 4 mg/m2 from prior dose, after recovery.
Combination therapy
Mitoxantrone has been given as part of combination therapy. In metastatic breast cancer, combinations of mitoxantrone with other cytotoxic agents including cyclophosphamide and 5-fluorouracil or methotrexate and mitomycin C have been shown to be effective.
Mitoxantrone has also been used in various combinations for non-Hodgkin's lymphoma; however, data are presently limited and specific regimens cannot be recommended.
In combination regimens mitoxantrone, in starting doses ranging from 7 to 8 to 10 to 12 mg/m2, dependent on the combination and frequency used, has shown effectiveness.
As a guide, when mitoxantrone is used in combination chemotherapy with another myelosuppressive agent, the initial dose of mitoxantrone should be reduced by 2 to 4 mg/m2 below the doses recommended for single agent usage; subsequent dosing, as outlined in the table above, depends on the degree and duration of myelosuppression.
Acute myeloid leukaemia
Single Agent Therapy in Relapse
The recommended dosage for remission induction is 12 mg/m2 of body surface area, given as a single intravenous dose daily for five consecutive days (total of 60 mg/m2). In clinical studies with a dosage of 12 mg/m2 daily for 5 days, patients who achieved a complete remission did so as a result of the first induction course.
Combination Therapy
For induction, the recommended dosage is 12 mg/m2 of mitoxantrone daily on Days 1 to 3 given as an intravenous infusion, and 100 mg/m2 of cytarabine for 7 days given as a continuous 24-hour infusion on Days 1 to 7.
Most complete remissions will occur following the initial course of induction therapy. In the event of an incomplete antileukaemic response, a second induction course may be given with mitoxantrone given for 2 days and cytarabine for 5 days, using the same daily dosage levels. If severe or lifethreatening non-haematological toxicity is observed during the first induction course, the second induction course should be withheld until toxicity resolves. Consolidation therapy, which was used in two large randomised multicentre trials, consists of mitoxantrone 12 mg/m2 given by intravenous infusion daily on Days 1 and 2, and cytarabine, 100 mg/m2 for 5 days given as a continuous 24-hour infusion on Days 1 to 5. The first course was given approximately 6 weeks after the final induction course; the second was generally administered 4 weeks after the first.
A single course of mitoxantrone 6 mg/m2 intravenous (IV) bolus, etoposide 80 mg/m2 intravenous for a period of 1 hour, and cytarabine (Ara-C) 1 g/m2 intravenous for a period of 6 hours daily for 6 days (MEC) showed antileukaemic activity as salvage therapy for refractory AML.
Treatment of blast crisis in (chronic) myeloid leukaemia
Single dose therapy in relapse
The recommended dosage in relapse is 10 to 12 mg/m2 body surface area given as a single intravenous dose daily over 5 consecutive days (total of 50 to 60 mg/m2).
Advanced castrate-resistant prostate cancer
Based on data from two comparative trials of mitoxantrone plus corticosteroids versus corticosteroids alone, the recommended dosage of mitoxantrone is 12 to 14 mg/m2 given as a short intravenous infusion every 21 days, in combination with low oral doses of corticosteroids.
Cancer patients who received cumulative doses of 140 mg/m2 either alone or in combination with other chemotherapeutic agents had a cumulative 2.6% probability of clinical congestive heart failure. For this reason, patients should be monitored for evidence of cardiac toxicity and questioned about symptoms of heart failure prior to the initiation of and during treatment.
Special populations
Elderly
In general, dose selection for an elderly patient should be initiated at the low end of the dosing range, reflecting the greater frequency of decreasing hepatic, renal, or cardiac function, and of concomitant disease or treatment with other medicinal products.
Renal Impairment
The safety of mitoxantrone in patients with renal impairment is not established. Mitoxantrone should be used with caution.
Hepatic Impairment
The safety of mitoxantrone in patients with hepatic insufficiency is not established. For patients with hepatic impairment dose adjustment may be necessary as mitoxantrone clearance is reduced by hepatic impairment. There are insufficient data that allows for dose adjustment recommendations. Laboratory measurement cannot predict clearance of the active substance and dose adjustments (see section 5.2).
Paediatric Population
Safety and efficacy in paediatric patients have not been established. There is no relevant use of mitoxantrone in the paediatric population.
Method of administration
Onkotrone concentrate should be given by intravenous infusion only. Onkotrone concentrate should be slowly injected into a free flowing intravenous infusion of isotonic saline or 5% glucose solution over a period of not less than 3 to 5 minutes. The tubing should be inserted preferably into a large vein. If possible, avoid veins over joints or in extremities with compromised venous or lymphatic drainage.
Onkotrone concentrate also can be administered as a short infusion (15 to 30 minutes) diluted in 50 to 100 ml isotonic saline or 5% glucose solution. Onkotrone concentrate must not be given subcutaneously, intramuscularly, or intra-arterially. Severe local tissue damage may occur if there is extravasation during administration. The medicinal product must also not be given by intrathecal injection.
If any signs or symptoms of extravasation have occurred, including burning, pain, pruritus, erythema, swelling, blue discolouration, or ulceration, the administration should be stopped immediately (see section 4.4).
Hypersensitivity to the active substance or to any of the excipients listed in section 6.1, including sulphites that may be produced during the manufacturing of mitoxantrone.
Mitoxantrone is contraindicated in women who are breast-feeding (see sections 4.4 and 4.6).
Precautions to be taken before handling or administering the medicinal product
Mitoxantrone should be given slowly into a freely flowing intravenous infusion. Mitoxantrone must not be given subcutaneously, intramuscularly, or intra-arterially. There have been reports of local/regional neuropathy, some irreversible, following intra-arterial injection. Severe local tissue damage may occur if there is extravasation during administration. To date, only isolated cases of severe local reactions (necroses) have been described due to extravasation. Mitoxantrone must not be given by intrathecal injection. Severe injury with permanent sequelae can result from intrathecal administration. There have been reports of neuropathy and neurotoxicity, both central and peripheral, following intrathecal injection. These reports have included seizures leading to coma and severe neurologic sequelae, and paralysis with bowel and bladder dysfunction.
Cardiac function
Myocardial toxicity, manifested in its most severe form by potentially irreversible and fatal congestive heart failure (CHF), may occur either during therapy with mitoxantrone or months to years after termination of therapy. This risk increases with cumulative dose. Cancer patients who received cumulative doses of 140 mg/m2 either alone or in combination with other chemotherapeutic agents had a cumulative 2.6% probability of clinical congestive heart failure. In comparative oncology trials, the overall cumulative probability rate of moderate or severe decreases in LVEF at this dose was 13%.
Active or dormant cardiovascular disease, prior or concomitant radiotherapy to the mediastinal/pericardial area, previous therapy with other anthracyclines or anthracenediones, or concomitant use of other cardiotoxic medicinal products may increase the risk of cardiac toxicity. Evaluation of the left-ventricular ejection fraction (LVEF) by echocardiogram or multiple-gated acquisition (MUGA) is recommended prior to administration of the initial dose of mitoxantrone in cancer patients. Cardiac function for cancer patients should be carefully monitored during treatment. LVEF evaluation is recommended at regular intervals and/or if signs or symptoms of congestive heart failure develop. Cardiotoxicity can occur at any time during mitoxantrone therapy, and the risk increases with cumulative dose. Cardiac toxicity with mitoxantrone may occur at lower cumulative doses whether or not cardiac risk factors are present.
Because of the possible danger of cardiac effects in patients previously treated with daunorubicin or doxorubicin, the benefit-to-risk ratio of mitoxantrone therapy in such patients should be determined before starting therapy.
Acute congestive heart failure may occasionally occur in patients treated with mitoxantrone for acute myeloid leukaemia.
Bone marrow suppression
Therapy with mitoxantrone should be accompanied by close and frequent monitoring of haematological and chemical laboratory parameters, as well as frequent patient observation. A complete blood count, including platelets, should be obtained prior to administration of the initial dose of mitoxantrone, 10 days following the administration and prior to each subsequent infusion and in the event that signs and symptoms of infection develop. Patients should be informed about risks, symptoms and signs of acute leukaemia and prompted to seek medical attendance if any such symptoms should occur even after the five year period has passed.
Myelosuppression may be more severe and prolonged in patients with poor general condition, or prior chemotherapy and/or radiotherapy.
Except for the treatment of acute myeloid leukaemia, mitoxantrone therapy generally should not be given to patients with baseline neutrophil counts of less than 1,500 cells/mm3. It is recommended that frequent peripheral blood cell counts are performed on all patients receiving mitoxantrone in order to monitor the occurrence of bone marrow suppression, primarily neutropenia, which may be severe and result in infection.
When mitoxantrone is used in high doses (> 14 mg/m2/d x 3 days) such as indicated for the treatment of leukaemia, severe myelosuppression will occur.
Particular care should be given to assuring full haematological recovery before undertaking consolidation therapy (if this treatment is used) and patients should be monitored closely during this phase.
Mitoxantrone administered at any dose can cause myelosuppression.
Secondary acute myeloid leukaemia and myelodysplastic syndrome
Topoisomerase II inhibitors, including mitoxantrone, when used as monotherapy or especially concomitantly with other antineoplastic agents and/or radiotherapy, have been associated with the development of Acute Myeloid Leukaemia or Myelodysplastic Syndrome. Because of the risk of development of secondary malignancies, the benefit-to-risk ratio of mitoxantrone therapy should be determined before starting therapy.
Non-metastatic breast cancer
In the absence of sufficient efficacy data in the adjuvant treatment of breast cancer and accounting for the increased risk of leukaemia, mitoxantrone should only be used for metastatic breast cancer.
Infections
Patients who receive immunosuppressive agents like mitoxantrone have a reduced immunological response to infection. Systemic infections should be treated concomitantly with or just prior to commencing therapy with mitoxantrone.
Vaccination
Immunisation with live virus vaccines (e.g. yellow fever vaccination) increases the risk of infection and other adverse reactions such as vaccinia gangrenosa and generalised vaccinia, in patients with reduced immunocompetence, such as during treatment with mitoxantrone. Therefore, live virus vaccines should not be administered during therapy. It is advised to use live virus vaccines with caution after stopping chemotherapy, and vaccinate not sooner than 3 months after the last dose of chemotherapy (see section 4.5).
Contraception in males and females
Mitoxantrone is genotoxic and is considered a potential human teratogen. Therefore men under therapy must be advised not to father a child and to use contraceptive measures during and at least 6 months after therapy. Women of childbearing potential should have a negative pregnancy test prior to each dose, and use effective contraception during therapy and for at least 9 months after cessation of therapy.
Breast-feeding
Mitoxantrone has been detected in breast-milk for up to one month after the last administration. Because of the potential for serious adverse reactions in infants from mitoxantrone, breast-feeding is contraindicated (see section 4.3) and must be discontinued before starting treatment.
Fertility
Women of childbearing potential should be informed about increased risk of transitory or persistent amenorrhoea (see section 4.6).
Mutagenicity and carcinogenicity
Mitoxantrone was found to be mutagenic in bacterial and mammalian test systems, as well as in vivo in rats. The active substance was carcinogenic in experimental animals at doses below the proposed clinical dose. Therefore, mitoxantrone has the potential to be carcinogenic in humans.
Tumour lysis syndrome
Cases of tumour lysis syndrome were reported with the use of mitoxantrone. Levels of uric acid, electrolytes and urea should be monitored.
Discolouration of urine and other tissues
Mitoxantrone may cause a blue-green colouration to the urine for 24 hours after administration, and patients should be advised to expect this during therapy. Bluish discolouration of the sclera, skin and nails may also occur.
Combining mitoxantrone with potentially cardiotoxic active substances (e.g. anthracyclines) increases the risk of cardiac toxicity.
Topoisomerase II inhibitors, including mitoxantrone, when used concomitantly with other antineoplastic agents and/or radiotherapy, have been associated with the development of Acute Myeloid Leukaemia (AML) or Myelodysplastic Syndrome (MDS) (see section 4.8).
Mitoxantrone causes myelosuppression as an extension of its pharmacological action. Myelosuppresion can be increased when it is used in combination chemotherapy with another myelosuppressive agent such as for treatment of breast cancer.
The combination of mitoxantrone with other immunosuppressive agents may increase the risk of excessive immunodepression and lymphoproliferative syndrome.
Immunisation with live virus vaccines (e.g. yellow fever vaccination) increases the risk of infection and other adverse reactions such as vaccinia gangrenosa and generalised vaccinia, in patients with reduced immunocompetence, such as during treatment with mitoxantrone. Therefore, live virus vaccines should not be administered during therapy. It is advised to use live virus vaccines with caution after stopping chemotherapy, and vaccinate not sooner than 3 months after the last dose of chemotherapy (see section 4.4).
The combination of vitamin K antagonists and cytotoxic agents may result in an increased risk of bleeding. In patients receiving oral anticoagulant therapy, the prothrombin time ratio or INR should be closely monitored with the addition and withdrawal of treatment with mitoxantrone and should be reassessed more frequently during concurrent therapy. Adjustments of the anticoagulant dose may be necessary in order to maintain the desired level of anticoagulation.
Mitoxantrone has been demonstrated to be a substrate for the BCRP transporter protein in vitro. Inhibitors of the BCRP transporter (e.g. eltrombopag, gefitinib) could result in an increased bioavailability. In a pharmacokinetic study in children with de novo acute myeloid leukaemia, ciclosporin co-medication resulted in a 42% decreased clearance of mitoxantrone. Inducers of the BCRP transporter could potentially decrease mitoxantrone exposure.
Mitoxantrone and its metabolites are excreted in bile and urine, but it is not known whether the metabolic or excretory pathways are saturable, may be inhibited or induced, or if mitoxantrone and its metabolites undergo enterohepatic circulation (see section 5.2).
Contraception in males and females
Mitoxantrone is genotoxic and is considered a potential human teratogen. Therefore men under therapy must be advised not to father a child and to use contraceptive measures during and at least 6 months after therapy. Women of childbearing potential must be advised to avoid becoming pregnant; should have a negative pregnancy test prior to each dose and use effective contraception during therapy and for at least 9 months after cessation of therapy.
Pregnancy
There are very limited data on the use of mitoxantrone in pregnant women. Mitoxantrone was not teratogenic in animal studies at doses below human exposure, but caused reproductive toxicity (see section 5.3). Mitoxantrone is considered a potential human teratogen because of its mechanism of action and the developmental effects demonstrated by related agents. Mitoxantrone should not be administered during pregnancy in particular during the first trimester of pregnancy. In each individual case the benefit of treatment must be weighed up against the possible risk to the foetus. If this medicinal product is used during pregnancy or if the patient becomes pregnant while taking mitoxantrone, the patient should be informed of the potential risk to the foetus and genetic counselling should be provided.
Breast-feeding
Mitoxantrone is excreted in breast-milk and has been detected in breast-milk for up to one month after the last administration. Because of the potential for serious adverse reactions in infants from mitoxantrone, breast-feeding is contraindicated (see section 4.3) and must be discontinued before starting treatment.
Fertility
Women treated with Onkotrone Injection have an increased risk of transitory or persistent amenorrhoea and therefore preservation of gametes should be considered prior to therapy. In men, no data are available, but tubular atrophy of the testes and reduced sperm counts were observed in animals (see section 5.3).
Mitoxantrone has minor influence on the ability to drive and use machines.
Confusion and fatigue may occur following administration of mitoxantrone (see section 4.8)
Summary of the safety profile
The most serious side effects with mitoxantrone are myocardial toxicity and myelosuppression. The most common side effects with mitoxantrone (seen in more than 1 patient in 10) are anaemia, leucopenia, neutropenia, infections, amenorrhoea, alopecia, nausea and vomiting.
Tabulated list of adverse reactions
The table below is based on safety data derived from clinical trials and spontaneous reporting. Frequencies are defined according to the following convention: 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 (cannot be estimated from the available data).
Frequency
Adverse Reaction
Infections and Infestations
Very common
Infection (including fatal outcome)
Uncommon
Urinary tract infection
Upper respiratory tract infection
Sepsis
Opportunistic infections
Rare
Pneumonia
Neoplasms benign and malignant (including cysts and polyps)
Uncommon
Acute myeloid leukaemia, myelodysplastic syndrome, acute leukaemia
Blood and lymphatic system disorders
Very common
Anaemia
Neutropenia
Leukopenia
Common
Thrombocytopenia
Granulocytopenia
Uncommon
Myelosuppression
Bone marrow failure
White blood cell count abnormal
Immune system disorders
Uncommon
Anaphylaxis/anaphylactoid reactions (including shock)
Metabolism and nutrition disorders
Common
Anorexia
Uncommon
Weight fluctuations
Tumour lysis syndrome*
* Acute T and B lymphoblastic leukaemia and non-Hodgkin lymphomas (NHL) are most commonly associated with TLS
Nervous system disorders
Common
Lethargy
Uncommon
Anxiety
Confusion
Headache
Paraesthesia
Eye disorders
Uncommon
Scleral discolouration
Cardiac disorders
Common
Congestive heart failure
Myocardial infarction (including fatal events)
Uncommon
Arrhythmia
Sinus bradycardia
Electrocardiogram abnormal
Left ventricular ejection fraction
decreased
Rare
Cardiomyopathy
Vascular disorders
Uncommon
Contusion
Haemorrhage
Hypotension
Respiratory, thoracic and mediastinal disorders
Common
Dyspnoea
Gastrointestinal disorders
Very common
Nausea
Vomiting
Common
Constipation
Diarrhoea
Stomatitis
Uncommon
Abdominal pain
Gastrointestinal haemorrhage
Mucosal inflammation
Pancreatitis
Hepatobiliary disorders
Uncommon
Hepatotoxicity
Elevated aspartate aminotransferase levels
Skin and subcutaneous tissue disorders
Very common
Alopecia
Uncommon
Erythema
Nail disorders
Rash
Skin discolouration Tissue necrosis (after extravasation)
Renal and urinary disorders
Uncommon
Elevated serum creatinine
Elevated blood urea nitrogen levels
Nephropathy toxic
Urine discolouration
Reproductive system and breast disorders
Uncommon
Amenorrhoea
General disorders and administration site conditions
Common
Asthenia
Fatigue
Pyrexia
Uncommon
Oedema
Extravasation*
Dysgeusia
* Extravasation at the infusion site has been reported, which may result in erythema, swelling, pain, burning and/or blue discolouration of the skin. Extravasation can result in tissue necrosis with resultant need for debridement and skin grafting. Phlebitis has also been reported at the site of infusion.
Description of selected adverse reactions
Myocardial toxicity, manifested in its most severe form by potentially irreversible and fatal congestive heart failure (CHF), may occur either during therapy with mitoxantrone or months to years after termination of therapy. This risk increases with cumulative dose. In clinical trials cancer patients who received cumulative doses of 140 mg/m2 either alone or in combination with other chemotherapeutic agents had a cumulative 2.6% probability of clinical congestive heart failure.
Myelosuppression is a dose-limiting undesirable effect of mitoxantrone. Myelosuppression can be more pronounced and longer-lasting in patients who have previously received chemotherapy or radiotherapy. In a clinical trial with acute leukaemia patients, significant myelosuppression occurred in all patients who were given mitoxantrone therapy. Amongst the 80 enrolled patients the median values for the lowest white blood cell count and platelet count were 400/µl (WHO grade 4), and 9.500/µl (WHO grade 4), respectively. Haematological toxicity is difficult to evaluate in acute leukaemia because traditional parameters of bone marrow depression such as white blood cell and platelet counts are confounded by marrow replacement with leukemic cells.
Paediatric population
Treatment with mitoxantrone is not recommended in the paediatric population. Safety and efficacy have not 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.
There is no known specific antidote for mitoxantrone. Accidental overdoses have been reported. Four patients receiving 140 to 180 mg/m2 as a single bolus injection died as a result of severe leukopenia with infection. Haematological support and antimicrobial therapy may be required during prolonged periods of severe myelosuppression.
Although patients with severe renal failure have not been studied, mitoxantrone is extensively tissue bound and it is unlikely that the therapeutic effect or toxicity would be mitigated by peritoneal or haemodialysis.
Haematopoietic, gastrointestinal, hepatic or renal toxicity may be seen, depending on the dosage given and the physical condition of the patient. In cases of overdosage patients should be monitored closely. Treatment should be symptomatic and supportive.
Medicines sold in Romania with the same active substance: Cunoscut în România ca
Same active substance. The strength, the form and whether you need a prescription can differ. Always ask a pharmacist before you switch. Romanian medicines in the UK →
Medicines sold in Poland with the same active substance: W Polsce znany jako
Same active substance. The strength, the form and whether you need a prescription can differ. Always ask a pharmacist before you switch. Polish medicines in the UK →
Ask anything about Onkotrone Injection 2 mg/ml concentrate for solution for infusion. The assistant answers only from this leaflet — if the leaflet does not cover it, it will say so. It does not give medical advice.
Answers come from the patient leaflet published on the electronic medicines compendium (emc). They are not medical advice. Ask a pharmacist or your GP if you are unsure. For urgent help call NHS 111, or 999 in an emergency.
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