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Trisenox 2mg/ml Concentration for Solution for Infusion

⚠ This medicine appears to have been discontinued

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 Arsenic trioxide may still be available. Do not stop your treatment — ask your pharmacist or GP what to use instead.

Active substance: Arsenic trioxide
Source: electronic medicines compendium (emc)
Official leaflet: Read the PIL on emc

What it is and what it is used for

for TRISENOX is used in adult patients with newly diagnosed low-to-intermediate risk acute promyelocytic leukaemia (APL), and in adult patients, whose disease has not responded to other therapies. APL is a unique type of myeloid leukaemia, a disease in which abnormal white blood cells and abnormal bleeding and bruising occur.

What you need to know before you take it

TRISENOX TRISENOX must be given under the supervision of a physician experienced in the treatment of acute leukaemias. You must not receive TRISENOX If you are allergic to arsenic trioxide or any of the other ingredients of this medicine (listed in section 6). Warnings and precautions You must talk to your doctor or nurse before you are given TRISENOX, if

  • you have impaired kidney function
  • you have any liver problems. Your doctor will take the following precautions: Tests will be performed to check the amount of potassium, magnesium, calcium and creatinine in your blood before your first dose of TRISENOX You should have an electrical recording of the heart (electrocardiogram ECG) performed before your first dose Blood tests (potassium, calcium, magnesium and liver function) should be repeated during your treatment with TRISENOX In addition, you will receive electrocardiograms twice weekly If you are at risk for a certain type of abnormal heart rhythm (e.g. torsade de pointes or QTc prolongation), your heart will be monitored continuously Your doctor may monitor your health during and after treatment, since arsenic trioxide, the active substance in TRISENOX, may cause other cancers. You should report any new and exceptional symptoms and circumstances whenever you see your doctor Follow-up of your cognitive and mobility functions if you are at risk for vitamin B1 deficiency. Children and adolescents TRISENOX is not recommended in children and adolescents below 18 years of age.

The effect of these medicines on your heartbeat can be made worse by TRISENOX. You must be sure to tell your doctor about all medicines you are taking. if you are taking or have recently taken any medicine which may affect your liver. If you are not sure, show the bottle or pack to your doctor. TRISENOX with food and drink There are no restrictions on your food or drink while you are receiving TRISENOX. Pregnancy Ask your doctor or pharmacist for advice before taking any medicine. TRISENOX may cause harm to the foetus when used by pregnant women. If you are able to become pregnant, you must use effective birth control during treatment with TRISENOX and for 6 months following completion of treatment. If you are pregnant or you become pregnant during the treatment with TRISENOX, you must ask your doctor for advice. Men should also use effective contraception and be advised to not father a child while receiving TRISENOX and for 3 months following completion of treatment. Breast-feeding Ask your doctor or pharmacist for advice before taking any medicine. The arsenic in TRISENOX passes into breast milk. Because TRISENOX can harm nursing infants, do not breast-feed while on and until two weeks after the last dose of TRISENOX. Driving and using machines TRISENOX is expected to have no or negligible influence on your ability to drive and use machines. If you experience discomfort or if you feel unwell after a TRISENOX injection, you should wait until the symptoms go away before driving or using machines. TRISENOX contains sodium TRISENOX contains less than 1 mmol sodium (23 mg) per dose. This means that the medicine is essentially 'sodium-free'.

How to take it

Duration and frequency of treatment Your doctor will give you TRISENOX once every day as an infusion. In your first treatment cycle, you may be treated every day up to 60 days at most or until your doctor determines that your disease is better. If your disease responds to TRISENOX, you will be given 4 additional treatment cycles. Each cycle consists of 20 doses given 5 days per week (followed by 2 days interruption) for 4 weeks followed by 4 weeks interruption. Your doctor will decide exactly how long you must continue on therapy with TRISENOX.

Your doctor will give you TRISENOX once every day as an infusion. In your first treatment cycle, you may be treated every day up to 50 days at most or until your doctor determines that your disease is better. If your disease responds to TRISENOX, you will be given a second treatment cycle of 25 doses given 5 days per week (followed by 2 days interruption) for S weeks. Your doctor will decide exactly how long you must continue on therapy with TRISENOX. Method and route of administration

Other medicines and TRISENOX Tell your doctor or pharmacist if you are taking, have recently taken or might take any other medicines, including medicines obtained without a prescription.

TRISENOX is normally given by a doctor or a nurse. It is given as a drip (infusion) into a vein over 1-2 hours, but the infusion may last longer if side effects like flushing and dizziness occur. TRISENOX must not be mixed with, or infused through the same tube with other medicines. If your doctor or nurse gives you more TRISENOX than he/she should You may experience convulsions, muscle weakness and confusion. If this happens, treatment with TRISENOX must be stopped immediately and your doctor will treat the arsenic overdose.

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In particular tell your doctor if you are taking any of various types of medicines which could cause a change in the rhythm of your heartbeat. These include: © some types of antiarrhythmics (medicines used to correct irregular heart beats, e.g. quinidine, amiodarone, sotalol, dofetilide) medicines to treat psychosis (loss of contact with reality, e.g. thioridazine) medicines for depression (e.g, amitriptyline) some types of medicines to treat bacterial infections (e.g. erythromycin and sparfloxacin) some medicines to treat allergies such as hay fever, called antihistamines (e.g. terfenadine and astemizole) any medicines that cause a decrease in magnesium or potassium in your blood (e.g. amphotericin B) cisapride (a medicine used to relieve certain stomach problems).

TRISENOX must be diluted with a solution containing glucose or a solution containing sodium chloride.

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If you have any further question on the use of this medicine, ask your doctor, pharmacist or nurse.

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The following information is intended for medical or healthcare professionals only: ASEPTIC TECHNIQUE MUST BE STRICTLY OBSERVED THROUGHOUT HANDLING OF TRISENOX SINCE NO PRESERVATIVE IS PRESENT. Dilution of TRISENOX TRISENOX must be diluted before administration. Personnel should be trained to handle and dilute arsenic trioxide and should wear appropriate protective clothing.

CAUTION, NOTICE NEW CONCENTRATION (2 mg/ml)

Dilution; Carefully insert the needle of a syringe into the vial

and withdraw the required volume. TRISENOX must then be diluted immediately with 100 to 250 ml of glucose 50 mg/ml (5 %) solution for injection or sodium chloride 3 mg/ml (0.9 %) solution for injection. Unused portions of each vial must be discarded properly. Do not save any unused portions for later administration. Use of TRISENOX TRISENOX is for single use only. It must not be mixed with or concomitantly administered in the same intravenous line with other medicinal products. TRISENOX must be administered intravenously over 1-2 hours. The infusion duration may be extended up to 4 hours if vasomotor reactions are observed. A central venous catheter is not required.

4. Possible side effects

Possible side effects

5. How to store TRISENOX 6. Contents of the pack and other information

How to store it

TRISENOX 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 vial label and the carton. This medicine does not require any special storage conditions. After dilution, if not used immediately, storage times and conditions before use are the responsibility of your doctor, pharmacist or nurse and would normally not be longer than 24 hours at 2 to 8 °C, unless dilution has taken place ina sterile environment. This medicine must not be used if you notice foreign particulate matter or if the solution is discoloured. Do not throw away any medicines via wastewater or household waste. Ask your pharmacist how to throw away medicines you no longer use. These measures will help to protect the environment.

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The diluted solution must be clear and colourless. All parenteral solutions must be inspected visually for particulate matter and discoloration prior to administration. Do not use the preparation if foreign particulate matter is present. After dilution in intravenous solutions, TRISENOX is chemically and physically stable for 24 hours at 15-30 °C and 72 hours at refrigerated (2-8 °C) temperatures. From a microbiological point of view, the product must be used immediately. If not used immediately, in-use storage times and conditions prior to use are the responsibility of the user and would normally not be longer than 24 hours at 2-8 °C, unless dilution has taken place in controlled and validated aseptic conditions.

Procedure for proper disposal Any unused product, any items that come into contact with the product and waste material must be disposed of in accordance with local requirements.

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Contents of the pack and other information

Like all medicines, this medicine can cause side effects, although not everybody gets them.

What TRISENOX contains The active substance is arsenic trioxide. Each ml of concentrate contains 2 mg of arsenic trioxide. Each vial of 6 ml contains 12 mg of arsenic trioxide. The other ingredients are sodium hydroxide, hydrochloric acid and water for injections. See section 2 "TRISENOX contains sodium".

Tell your doctor or nurse straight away if you notice the following side effects, as these may be signs of a severe condition called "differentiation syndrome", which might be fatal:

  • difficulty in breathing
  • coughing
  • chest pain
  • fever. Tell your doctor or nurse straight away if you notice one or more of the following side effects, as these may be signs of allergic reaction: difficulty in breathing fever sudden weight gain water retention fainting palpitations (strong heartbeat you can feel in your chest). While on treatment with TRISENOX, you may experience some of the following reactions:

What TRISENOX looks like and contents of the pack

  • TRISENOX is a concentrate for solution for infusion (sterile concentrate). TRISENOX is supplied in glass vials as a concentrated, clear, colourless, aqueous solution. Each carton contains 10 single-use glass vials. Marketing Authorisation Holder Teva UK Limited, Ridings Point, Whistler Drive, Castleford, WF10 5HX

United Kingdom Manufacturer S.C. Sindan-Pharma S.R.L., B-dul lon Mihalache nr 11, sector 1, Cod 011171, Bucharest, Romania This leaflet was last revised in 02/2023. PLGB 00289/2500

fatigue (weariness), pain, fever, headache nausea, vomiting, diarrhoea dizziness, muscle pain, numbness or tingling rash or itching, increased blood sugar, oedema (swelling due to excess fluid) shortness of breath, fast heart beat, abnormal ECG heart tracing reduced potassium or magnesium in the blood, liver function tests abnormal including presence of excess bilirubin or gamma-glutamyltransferase in the blood. reduction in blood cell counts (platelets, red and/or white blood cells), increased white blood cells chills, increased weight a fever due to an infection and low levels of white blood cells, herpes zoster infection chest pain, bleeding in the lung, hypoxia (low oxygen level), collection of fluid around the heart or the lung, low blood pressure, abnormal heart rhythm fit, joint or bone pain, inflammation of the blood vessels increased sodium or magnesium, ketones in the blood and urine (ketoacidosis), renal function tests abnormal, kidney failure stomach (abdominal) ache redness of the skin, swollen face, blurred vision. Not known (frequency cannot be estimated from the lung infection, infection in the blood inflammation of the lungs which causes chest pain and breathlessness, cardiac failure dehydration, confusion Cerebral disease (Encephalopathy, Wernicke encephalopathy) with various manifestations including difficulties to use arms and legs, speech disorders and confusion. Reporting of side effects If you get any side effects, talk to your doctor, pharmacist or nurse. This includes any possible side effects not listed in this leaflet. You can also report side effects directly via the Yellow Card Scheme at: : 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.

Frequently asked questions about Trisenox 2mg/ml Concentration for Solution for Infusion

How do I take Trisenox 2mg/ml Concentration for Solution for Infusion?

Trisenox 2mg/ml Concentration for Solution for Infusion comes as infusion containing 2mg/ml. Always follow the dose your doctor or pharmacist has given you, and read the leaflet that comes with the medicine.

What is the active substance in Trisenox 2mg/ml Concentration for Solution for Infusion?

The active substance in Trisenox 2mg/ml Concentration for Solution for Infusion is arsenic trioxide.

Where does this information come from?

This leaflet reproduces the patient information leaflet approved for Trisenox 2mg/ml Concentration 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.

Can I get Trisenox 2mg/ml Concentration for Solution for Infusion without a prescription?

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.

About this leaflet

The text above reproduces the patient information leaflet approved for this medicine, restructured for easier reading.

Medical disclaimer: This page is for information only and does not replace advice from your doctor or pharmacist. Always read the leaflet supplied with your medicine. If you are unwell, call NHS 111; in an emergency, call 999.

Medicines with the same active substance: Arsenic trioxide (1 medicine)
See every medicine containing this substance, or browse the full A–Z of active substances.
⚕For healthcare professionals — Summary of Product Characteristics (SmPC)Full SmPC: dosage, interactions, contraindications, warnings+
Technical information intended for healthcare professionals (doctors and pharmacists). The Summary of Product Characteristics (SmPC) is the official document approved by the MHRA/EMA. It does not replace the patient leaflet or a doctor’s advice.

4.1. Therapeutic indications

TRISENOX is indicated for induction of remission, and consolidation in adult patients with:

• Newly diagnosed low-to-intermediate risk acute promyelocytic leukaemia (APL) (white blood cell count, ≤ 10 x 103/µl) in combination with all-trans-retinoic acid (ATRA)

• Relapsed/refractory acute promyelocytic leukaemia (APL) (previous treatment should have included a retinoid and chemotherapy) characterised by the presence of the t(15;17) translocation and/or the presence of the promyelocytic leukaemia/retinoic-acid-receptor-alpha (PML/RAR-alpha) gene.

The response rate of other acute myelogenous leukaemia subtypes to arsenic trioxide has not been examined.

4.2. Posology and method of administration

TRISENOX must be administered under the supervision of a physician who is experienced in the management of acute leukaemias, and the special monitoring procedures described in section 4.4 must be followed.

Posology

The same dose is recommended for adults and elderly.

Newly diagnosed low-to-intermediate risk acute promyelocytic leukaemia (APL)

Induction treatment schedule

TRISENOX must be administered intravenously at a dose of 0.15 mg/kg/day, given daily until complete remission is achieved. If complete remission has not occurred by day 60, dosing must be discontinued.

Consolidation schedule

TRISENOX must be administered intravenously at a dose of 0.15 mg/kg/day, 5 days per week. Treatment should be continued for 4 weeks on and 4 weeks off, for a total of 4 cycles.

Relapsed/refractory acute promyelocytic leukaemia (APL)

Induction treatment schedule

TRISENOX must be administered intravenously at a fixed dose of 0.15 mg/kg/day given daily until complete remission is achieved (less than 5 % blasts present in cellular bone marrow with no evidence of leukaemic cells). If complete remission has not occurred by day 50, dosing must be discontinued.

Consolidation schedule

Consolidation treatment must begin 3 to 4 weeks after completion of induction therapy. TRISENOX is to be administered intravenously at a dose of 0.15 mg/kg/day for 25 doses given 5 days per week, followed by 2 days interruption, repeated for 5 weeks.

Dose delay, modification and reinitiation

Treatment with TRISENOX must be temporarily interrupted before the scheduled end of therapy at any time that a toxicity grade 3 or greater on the National Cancer Institute Common Toxicity Criteria is observed and judged to be possibly related to TRISENOX treatment. Patients who experience such reactions that are considered TRISENOX related must resume treatment only after resolution of the toxic event or after recovery to baseline status of the abnormality that prompted the interruption. In such cases, treatment must resume at 50 % of the preceding daily dose. If the toxic event does not recur within 7 days of restarting treatment at the reduced dose, the daily dose can be escalated back to 100 % of the original dose. Patients who experience a recurrence of toxicity must be removed from treatment.

For ECG, electrolytes abnormalities and hepatotoxicity see section 4.4.

Special populations

Hepatic impairment

Since no data are available across all hepatic impairment groups and hepatotoxic effects may occur during the treatment with TRISENOX, caution is advised in the use of TRISENOX in patients with hepatic impairment (see section 4.4 and 4.8).

Renal impairment

Since no data are available across all renal impairment groups, caution is advised in the use of TRISENOX in patients with renal impairment.

Paediatric population

The safety and efficacy of TRISENOX in children aged up to 17 years has not been established. Currently available data for children aged 5 to 16 years are described in section 5.1 but no recommendation on a posology can be made. No data are available for children under 5 years.

Method of administration

TRISENOX must be administered intravenously over 1-2 hours. The infusion duration may be extended up to 4 hours if vasomotor reactions are observed. A central venous catheter is not required. Patients must be hospitalised at the beginning of treatment due to symptoms of disease and to ensure adequate monitoring.

For instructions on preparation of the medicinal product before administration, see section 6.6.

4.3. Contraindications

Hypersensitivity to the active substance or to any of the excipients listed in section 6.1.

4.4. Special warnings and precautions for use

Clinically unstable APL patients are especially at risk and will require more frequent monitoring of electrolyte and glycaemia levels as well as more frequent haematologic, hepatic, renal and coagulation parameter tests.

Leukocyte activation syndrome (APL differentiation syndrome)

27 % of patients with APL, in the relapsed/refractory setting, treated with arsenic trioxide have experienced symptoms similar to a syndrome called the retinoic-acid- acute promyelocytic leukaemia (RA-APL) or APL differentiation syndrome, characterised by fever, dyspnoea, weight gain, pulmonary infiltrates and pleural or pericardial effusions, with or without leucocytosis. This syndrome can be fatal. In newly diagnosed APL patients treated with arsenic trioxide and all-trans-retinoic acid (ATRA), APL differentiation syndrome was observed in 19 % including 5 severe cases. At the first signs that could suggest the syndrome (unexplained fever, dyspnoea and/or weight gain, abnormal chest auscultatory findings or radiographic abnormalities), treatment with TRISENOX must be temporarily discontinued and high-dose steroids (dexamethasone 10 mg intravenously twice a day) must be immediately initiated, irrespective of the leukocyte count and continued for at least 3 days or longer until signs and symptoms have abated. If clinically justified/required, concomitant diuretic therapy is also recommended. The majority of patients do not require permanent termination of TRISENOX therapy during treatment of the APL differentiation syndrome. As soon as signs and symptoms have subsided, treatment with TRISENOX can be resumed at 50 % of the previous dose during the first 7 days. Thereafter, in the absence of worsening of the previous toxicity, TRISENOX might be resumed at full dosage. In the case of the reappearance of symptoms TRISENOX should be reduced to the previous dosage. In order to prevent the development of the APL differentiation syndrome during induction treatment, prednisone (0.5 mg/kg body weight per day throughout induction treatment) may be administered from day 1 of TRISENOX application to the end of induction therapy in APL patients. It is recommended that chemotherapy not be added to treatment with steroids since there is no experience with administration of both steroids and chemotherapy during treatment of the leukocyte activation syndrome due to TRISENOX. Post-marketing experience suggests that a similar syndrome may occur in patients with other types of malignancy. Monitoring and management for these patients should be as described above.

Electrocardiogram (ECG) abnormalities

Arsenic trioxide can cause QT interval prolongation and complete atrioventricular block. QT prolongation can lead to a torsade de pointes-type ventricular arrhythmia, which can be fatal. Previous treatment with anthracyclines may increase the risk of QT prolongation. The risk of torsade de pointes is related to the extent of QT prolongation, concomitant administration of QT prolonging medicinal products (such as class Ia and III antiarrythmics (e.g. quinidine, amiodarone, sotalol, dofetilide), antipsychotics (e.g. thioridazine), antidepressants (e.g. amitriptyline), some macrolides (e.g. erythromycin), some antihistamines (e.g. terfenadine and astemizole), some quinolone antibiotics (e.g. sparfloxacin), and other individual medicinal products known to increase QT interval (e.g. cisapride)), a history of torsade de pointes, pre-existing QT interval prolongation, congestive heart failure, administration of potassium-wasting diuretics, amphotericin B or other conditions that result in hypokalaemia or hypomagnesaemia. In clinical trials, in the relapsed/refractory setting, 40 % of patients treated with TRISENOX experienced at least one QT corrected (QTc) interval prolongation greater than 500 msec.

Prolongation of the QTc was observed between 1 and 5 weeks after TRISENOX infusion, and then returned to baseline by the end of 8 weeks after TRISENOX infusion. One patient (receiving multiple, concomitant medicinal products, including amphotericin B) had asymptomatic torsade de pointes during induction therapy for relapsed APL with arsenic trioxide. In newly diagnosed APL patients 15.6 % showed QTc prolongation with arsenic trioxide in combination with ATRA (see section 4.8). In one newly diagnosed patient induction treatment was terminated because of severe prolongation of the QTc interval and electrolyte abnormalities on day 3 of induction treatment.

ECG and electrolyte monitoring recommendations

Prior to initiating therapy with TRISENOX, a 12-lead ECG must be performed and serum electrolytes (potassium, calcium, and magnesium) and creatinine must be assessed; pre-existing electrolyte abnormalities must be corrected and, if possible, medicinal products that are known to prolong the QT interval must be discontinued. Patients with risk factors of QTc prolongation or risk factors of torsade de pointes should be monitored with continuous cardiac monitoring (ECG). For QTc greater than 500 msec, corrective measures must be completed and the QTc reassessed with serial ECGs and, if available, a specialist advice could be sought prior to considering using TRISENOX. During therapy with TRISENOX, potassium concentrations must be kept above 4 mEq/l and magnesium concentrations must be kept above 1.8 mg/dl. Patients who reach an absolute QT interval value > 500 msec must be reassessed and immediate action must be taken to correct concomitant risk factors, if any, while the risk/benefit of continuing versus suspending TRISENOX therapy must be considered. If syncope, rapid or irregular heartbeat develops, the patient must be hospitalised and monitored continuously, serum electrolytes must be assessed, TRISENOX therapy must be temporarily discontinued until the QTc interval regresses to below 460 msec, electrolyte abnormalities are corrected, and the syncope and irregular heartbeat cease. After recovery, treatment should be resumed at 50 % of the preceding daily dose. If QTc prolongation does not recur within 7 days of restarting treatment at the reduced dose, treatment with TRISENOX can be resumed at 0.11 mg/kg body weight per day for a second week. The daily dose can be escalated back to 100 % of the original dose if no prolongation occurs. There are no data on the effect of arsenic trioxide on the QTc interval during the infusion. Electrocardiograms must be obtained twice weekly, and more frequently for clinically unstable patients, during induction and consolidation.

Hepatotoxicity (grade 3 or greater)

In newly diagnosed patients with low to intermediate risk APL 63.2 % developed grade 3 or 4 hepatic toxic effects during induction or consolidation treatment with arsenic trioxide in combination with ATRA (see section 4.8). However, toxic effects resolved with temporary discontinuation of either arsenic trioxide, ATRA or both.

Treatment with TRISENOX must be discontinued before the scheduled end of therapy at any time that a hepatotoxicity grade 3 or greater on the National Cancer Institute Common Toxicity Criteria is observed. As soon as bilirubin and/or SGOT and/or alkaline phosphatase are decreased to below 4 times the normal upper level, treatment with TRISENOX should be resumed at 50 % of the previous dose during the first 7 days. Thereafter, in absence of worsening of the previous toxicity, TRISENOX should be resumed at full dosage. In case of reappearance of hepatotoxicity, TRISENOX must be permanently discontinued.

Dose delay and modification

Treatment with TRISENOX must be temporarily interrupted before the scheduled end of therapy at any time that a toxicity grade 3 or greater on the National Cancer Institute Common Toxicity Criteria is observed and judged to be possibly related to TRISENOX treatment. (see section 4.2)

Laboratory tests

The patient's electrolyte and glycaemia levels, as well as haematologic, hepatic, renal and coagulation parameter tests must be monitored at least twice weekly, and more frequently for clinically unstable patients during the induction phase and at least weekly during the consolidation phase.

Renal impairment

Since no data are available across all renal impairment groups, caution is advised in the use of TRISENOX in patients with renal impairment. The experience in patients with severe renal impairment is insufficient to determine if dose adjustment is required.

The use of TRISENOX in patients on dialysis has not been studied.

Hepatic impairment

Since no data are available across all hepatic impairment groups and hepatotoxic effects may occur during the treatment with arsenic trioxide caution is advised in the use of TRISENOX in patients with hepatic impairment (see section 4.4 on hepatotoxicity and section 4.8). The experience in patients with severe hepatic impairment is insufficient to determine if dose adjustment is required.

Elderly

There is limited clinical data on the use of TRISENOX in the elderly population. Caution is needed in these patients.

Hyperleucocytosis

Treatment with arsenic trioxide has been associated with the development of hyperleucocytosis (≥ 10 x 103/μl) in some relapsed/refractory APL patients. There did not appear to be a relationship between baseline white blood cell (WBC) counts and development of hyperleucocytosis nor did there appear to be a correlation between baseline WBC count and peak WBC counts. Hyperleucocytosis was never treated with additional chemotherapy and resolved on continuation of TRISENOX. WBC counts during consolidation were not as high as during induction treatment and were < 10 x 103/μl, except in one patient who had a WBC count of 22 x 103/μl during consolidation. Twenty relapsed/refractory APL patients (50 %) experienced leucocytosis; however, in all these patients, the WBC count was declining or had normalized by the time of bone marrow remission and cytotoxic chemotherapy or leucopheresis was not required. In newly diagnosed patients with low to intermediate risk APL leucocytosis developed during induction therapy in 35 of 74 (47 %) patients (see section 4.8). However all cases were successfully managed with hydroxyurea therapy.

In newly diagnosed and relapsed/refractory APL patients who develop sustained leucocytosis after initiation of therapy, hydroxyurea should be administered.

Hydroxyurea should be continued at a given dose to keep the white blood cell count ≤ 10 x 103/μl and subsequently tapered.

Table 1 Recommendation for initiation of hydroxyurea

WBC

Hydroxyurea

10–50 x 103/µl

500 mg four times a day

> 50 x 103/µl

1000 mg four times a day

Development of second primary malignancies

The active ingredient of TRISENOX, arsenic trioxide, is a human carcinogen. Monitor patients for the development of second primary malignancies.

Encephalopathy

Cases of encephalopathy were reported with treatment with arsenic trioxide. Wernicke encephalopathy after arsenic trioxide treatment was reported in patients with vitamin B1 deficiency. Patients at risk of B1 deficiency should be closely monitored for signs and symptoms of encephalopathy after arsenic trioxide initiation. Some cases recovered with vitamin B1 supplementation.

Excipient with known effect

This medicinal product contains less than 1 mmol sodium (23 mg) per dose, that is to say essentially 'sodium-free'.

4.5. Interaction with other medicinal products and other forms of interaction

No formal assessments of pharmacokinetic interactions between TRISENOX and other therapeutic medicinal products have been conducted.

Medicinal products known to cause QT/QTc interval prolongation, hypokalaemia or hypomagnesaemia

QT/QTc prolongation is expected during treatment with arsenic trioxide, and torsade de pointes and complete heart block have been reported. Patients who are receiving, or who have received, medicinal products known to cause hypokalaemia or hypomagnesaemia, such as diuretics or amphotericin B, may be at higher risk for torsade de pointes. Caution is advised when TRISENOX is co-administered with other medicinal products known to cause QT/QTc interval prolongation such as macrolide antibiotics, the antipsychotic thioridazine, or medicinal products known to cause hypokalaemia or hypomagnesaemia. Additional information about QT prolonging medicinal agents, is provided in section 4.4.

Medicinal products known to cause hepatotoxic effects

Hepatotoxic effects may occur during the treatment with arsenic trioxide, caution is advised when TRISENOX is co-administered with other medicinal products known to cause hepatotoxic effects (see section 4.4 and 4.8).

Other antileukaemic medicinal products

The influence of TRISENOX on the efficacy of other antileukaemic medicinal products is unknown.

4.6. Fertility, pregnancy and lactation

Contraception in males and females

Due to the genotoxic risk of arsenic compounds (see section 5.3), women of childbearing potential must use effective contraceptive measures during treatment with TRISENOX and for 6 months following completion of treatment.

Men should use effective contraceptive measures and be advised to not father a child while receiving TRISENOX, and for 3 months following completion of treatment.

Pregnancy

Arsenic trioxide has been shown to be embryotoxic and teratogenic in animal studies (see section 5.3). There are no studies in pregnant women using TRISENOX. If this medicinal product is used during pregnancy or if the patient becomes pregnant while taking this product, the patient must be informed of the potential harm to the foetus.

Breast-feeding

Arsenic is excreted in human milk. Because of the potential for serious adverse reactions in breast-feeding infants and children from TRISENOX, breast-feeding must be discontinued prior to and throughout administration and for two weeks after the last dose.

Fertility

No clinical or non-clinical fertility studies have been conducted with TRISENOX.

4.7. Effects on ability to drive and use machines

TRISENOX has no or negligible influence on the ability to drive and use machines.

4.8. Undesirable effects

Summary of the safety profile

Related adverse reactions of CTC grade 3 and 4 occurred in 37 % of relapsed/refractory APL patients in clinical trials. The most commonly reported reactions were hyperglycaemia, hypokalaemia, neutropenia, and increased alanine amino transferase (ALT). Leucocytosis occurred in 50 % of patients with relapsed/refractory APL, as determined by haematology assessments.

Serious adverse reactions were common (1-10 %) and not unexpected in the relapsed/refractory population. Those serious adverse reactions attributed to arsenic trioxide included APL differentiation syndrome (3), leucocytosis (3), prolonged QT interval (4, 1 with torsade de pointes), atrial fibrillation/atrial flutter (1), hyperglycaemia (2) and a variety of serious adverse reactions related to haemorrhage, infections, pain, diarrhoea, nausea.

In general, treatment-emergent adverse events tended to decrease over time, in relapsed/refractory APL patients perhaps accounted for by amelioration of the underlying disease process. Patients tended to tolerate consolidation and maintenance treatment with less toxicity than in induction. This is probably due to the confounding of adverse events by the uncontrolled disease process early on in the treatment course and the myriad concomitant medicinal products required to control symptoms and morbidity.

In a phase 3, multicentre, non-inferiority trial comparing all-trans-retinoic acid (ATRA) plus chemotherapy with ATRA plus arsenic trioxide in newly diagnosed low-to-intermediate risk APL patients (Study APL0406; see also section 5.1), serious adverse reactions including hepatic toxicity, thrombocytopenia, neutropenia and QTc prolongation were observed in patients treated with arsenic trioxide.

Tabulated list of adverse reactions

The following undesirable effects have been reported in clinical trials and/or post- marketing experience in newly diagnosed and relapsed/refractory APL patients.

Undesirable effects are listed in table 2 below as MedDRA preferred term by system organ class and frequencies observed during TRISENOX clinical trials in 52 patients with refractory/relapsed APL. Frequencies are defined as: (very common ≥ 1/10), (common ≥ 1/100 to < 1/10), (uncommon ≥ 1/1,000 to < 1/100), not known (cannot be estimated from available data).

Within each frequency grouping, undesirable effects are presented in order of decreasing seriousness.

Table 2

All grades

Grades ≥ 3

Infections and infestations

Herpes zoster

Common

Not known

Sepsis

Not known

Not known

Pneumonia

Not known

Not known

Blood and lymphatic system disorders

Febrile neutropenia

Common

Common

Leucocytosis

Common

Common

Neutropenia

Common

Common

Pancytopenia

Common

Common

Thrombocytopenia

Common

Common

Anaemia

Common

Not known

Leukopenia

Not known

Not known

Lymphopenia

Not known

Not known

Metabolism and nutrition disorders

Hyperglycaemia

Very Common

Very Common

Hypokalaemia

Very Common

Very Common

Hypomagnesaemia

Very Common

Common

Hypernatraemia

Common

Common

Ketoacidosis

Common

Common

Hypermagnesaemia

Common

Not known

Dehydration

Not known

Not known

Fluid retention

Not known

Not known

Psychiatric disorders

Confusional state

Not known

Not known

Nervous system disorders

Paraesthesia

Very Common

Common

Dizziness

Very Common

Not known

Headache

Very Common

Not known

Convulsion

Common

Not known

Encephalopathy, Wernicke encephalopathy

Not known

Not known

Eye disorders

Vision blurred

Common

Not known

Cardiac disorders

Tachycardia

Very Common

Common

Pericardial effusion

Common

Common

Ventricular extrasystoles

Common

Not known

Cardiac failure

Not known

Not known

Ventricular tachycardia

Not known

Not known

Vascular disorders

Vasculitis

Common

Common

Hypotension

Common

Not known

Respiratory, thoracic and mediastinal disorders

Differentiation syndrome

Very Common

Very Common

Dyspnoea

Very Common

Common

Hypoxia

Common

Common

Pleural effusion

Common

Common

Pleuritic pain

Common

Common

Pulmonary alveolar haemorrhage

Common

Common

Pneumonitis

Not known

Not known

Gastrointestinal disorders

Diarrhoea

Very Common

Common

Vomiting

Very Common

Not known

Nausea

Very Common

Not known

Abdominal pain

Common

Common

Skin and subcutaneous tissue disorders

Pruritus

Very Common

Not known

Rash

Very Common

Not known

Erythema

Common

Common

Face oedema

Common

Not known

Musculoskeletal and connective tissue disorders

Myalgia

Very Common

Common

Arthralgia

Common

Common

Bone pain

Common

Common

Renal and urinary disorders

Renal failure

Common

Not known

General disorders and administration site conditions

Pyrexia

Very Common

Common

Pain

Very Common

Common

Fatigue

Very Common

Not known

Oedema

Very Common

Not known

Chest pain

Common

Common

Chills

Common

Not known

Investigations

Alanine amino transferase increased

Very Common

Common

Aspartate amino transferase increased

Very Common

Common

Electrocardiogram QT prolonged

Very Common

Common

Hyperbilirubinaemia

Common

Common

Blood creatinine increased

Common

Not known

Weight increased

Common

Not known

Gamma-glutamyltransferase increased*

Not known*

Not known*

*In the CALGB study C9710, 2 cases of grade ≥3 increased GGT were reported out of the 200 patients who received TRISENOX consolidation cycles (cycle 1 and cycle 2) versus none in the control arm.

Description of selected adverse reactions

Differentiation syndrome

During TRISENOX treatment, 14 of the 52 patients in the APL studies in the relapsed setting had one or more symptoms of APL differentiation syndrome, characterised by fever, dyspnoea, weight gain, pulmonary infiltrates and pleural or pericardial effusions, with or without leucocytosis (see section 4.4). Twenty-seven patients had leucocytosis (WBC ≥ 10 x 103/μl) during induction, 4 of whom had values above 100,000/μl. Baseline white blood cell (WBC) counts did not correlate with development of leucocytosis on study, and WBC counts during consolidation therapy were not as high as during induction. In these studies, leucocytosis was not treated with chemotherapeutic medicinal products. Medicinal products that are used to lower the white blood cell count often exacerbate the toxicities associated with leucocytosis, and no standard approach has proven effective. One patient treated under a compassionate use program died from cerebral infarct due to leucocytosis, following treatment with chemotherapeutic medicinal products to lower WBC count.

Observation is the recommended approach with intervention only in selected cases.

Mortality in the pivotal studies in the relapsed setting from disseminated intravascular coagulation (DIC) associated haemorrhage was very common (> 10 %), which is consistent with the early mortality reported in the literature.

In newly diagnosed patients with low to intermediate risk APL, differentiation syndrome was observed in 19 % including 5 severe cases.

In post marketing experience, a differentiation syndrome, like retinoic acid syndrome, has also been reported for the treatment of malignancies other than APL with TRISENOX.

QT interval prolongation

Arsenic trioxide can cause QT interval prolongation (see section 4.4). QT prolongation can lead to a torsade de pointes-type ventricular arrhythmia, which can be fatal. The risk of torsade de pointes is related to the extent of QT prolongation, concomitant administration of QT prolonging medicinal products, a history of torsade de pointes, pre-existing QT interval prolongation, congestive heart failure, administration of potassium-wasting diuretics, or other conditions that result in hypokalaemia or hypomagnesaemia. One patient (receiving multiple, concomitant medicinal products, including amphotericin B) had asymptomatic torsade de pointes during induction therapy for relapsed APL with arsenic trioxide. She went onto consolidation without further evidence of QT prolongation.

In newly diagnosed patients, with low to intermediate risk APL, QTc prolongation was observed in 15.6 %. In one patient induction treatment was terminated because of severe prolongation of the QTc interval and electrolyte abnormalities on day 3.

Peripheral neuropathy

Peripheral neuropathy, characterised by paraesthesia/dysaesthisia, is a common and well known effect of environmental arsenic. Only 2 relapsed/refractory APL patients discontinued treatment early due to this adverse event and one went on to receive additional TRISENOX on a subsequent protocol. Forty-four per cent of relapsed/refractory APL patients experienced symptoms that could be associated with neuropathy; most were mild to moderate and were reversible upon cessation of treatment with TRISENOX.

Hepatotoxicity (grade 3-4)

In newly diagnosed patients with low to intermediate risk APL 63.2 % developed grade 3 or 4 hepatic toxic effects during induction or consolidation treatment with TRISENOX in combination with ATRA. However, toxic effects resolved with temporary discontinuation of either TRISENOX, ATRA or both (see section 4.4).

Haematological and gastrointestinal toxicity

In newly diagnosed patients with low to intermediate risk APL, gastrointestinal toxicity, grade 3-4 neutropenia and grade 3 or 4 thrombocytopenia occurred, however these were 2.2 times less frequent in patients treated with TRISENOX in combination with ATRA compared to patients treated with ATRA + chemotherapy.

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: http://www.mhra.gov.uk/yellowcard or search for MHRA Yellow Card in the Google Play or Apple App Store.

4.9. Overdose

If symptoms suggestive of serious acute arsenic toxicity (e.g. convulsions, muscle weakness and confusion) appear, TRISENOX must be immediately discontinued and chelating therapy with penicillamine at a daily dose ≤ 1 g per day may be considered. The duration of treatment with penicillamine must be evaluated taking into account the urinary arsenic laboratory values. For patients who cannot take oral medicinal product, dimercaprol administered at a dose of 3 mg/kg intramuscularly every 4 hours until any immediately life-threatening toxicity has subsided may be considered.

Thereafter, penicillamine at a daily dose ≤ 1 g per day may be given. In the presence of coagulopathy, the oral administration of the chelating agent Dimercaptosuccinic Acid Succimer (DCI) 10 mg/kg or 350 mg/m2 every 8 hours during 5 days and then every 12 hours during 2 weeks is recommended. For patients with severe, acute arsenic overdose, dialysis should be considered.

🇷🇴 Known in Romania as

Medicines sold in Romania with the same active substance: Cunoscut în România ca

  • TRIOXID DE ARSEN TILLOMED 2 mg/ml prescriptionARSENICUM TRIOXIDUM · injection / infusion
  • TRISENOX 2 mg/ml prescriptionARSENICUM TRIOXIDUM · injection / infusion

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