Zevalin
Ibritumomab tiuxetan · Kit
Uses
Zevalin is a CD20-directed radiotherapeutic antibody administered as part of the Zevalin therapeutic regimen indicated for the treatment of adult patients with: relapsed or refractory, low-grade or follicular B-cell non-Hodgkin's lymphoma (NHL) ( 1.1 ). previously untreated follicular NHL who achieve a partial or complete response to first-line chemotherapy ( 1.2 ). 1.1 Relapsed or Refractory, Low-grade or Follicular NHL Zevalin is indicated for the treatment of adult patients with relapsed or refractory, low-grade or follicular B-cell non-Hodgkin's lymphoma (NHL). 1.2 Previously Untreated Follicular NHL Zevalin is indicated for the treatment of previously untreated follicular NHL in adult patients who achieve a partial or complete response to first-line chemotherapy.
Dosage and administration
Day 1 : Administer rituximab 250 mg/m 2 intravenous infusion. ( 2.2 ) Day 7, 8, or 9 : Administer rituximab 250 mg/m 2 intravenous infusion. ( 2.2 ) If platelets at least 150,000/mm 3 : Within 4 hours after rituximab infusion, administer 0.4 mCi/kg (14.8 MBq per kg) Y-90 Zevalin intravenous infusion. If platelets 100,000 to 149,000/mm 3 in relapsed or refractory patients: Within 4 hours after rituximab infusion, administer 0.3 mCi/kg (11.1 MBq per kg) Y-90 Zevalin intravenous infusion. 2.1 Recommended Dosing Schedule Administer the Zevalin therapeutic regimen as outlined below. Initiate the Zevalin therapeutic regimen following recovery of platelet counts to 150,000/mm 3 or more at least 6 weeks, but no more than 12 weeks, following the last dose of first-line chemotherapy. Only administer rituximab/Zevalin in facilities where immediate access to resuscitative measures is available. Overview of Dosing Schedule Zevalin Dosing Schedule 2.2 Zevalin Therapeutic Regimen Dosage and Administration Day 1: Premedicate with acetaminophen 650 mg orally and diphenhydramine 50 mg orally prior to rituximab infusion. Administer rituximab 250 mg/m 2 intravenously at an initial rate of 50 mg/hr. In the absence of infusion reactions, escalate the infusion rate in 50 mg/hr increments every 30 minutes to a maximum of 400 mg/hr. Do not mix or dilute rituximab with other drugs. Immediately stop the rituximab infusion for serious infusion reactions and discontinue the Zevalin therapeutic regimen [ see Boxed Warning and Warnings and Precautions ( 5.1 ) ]. Temporarily slow or interrupt the rituximab infusion for less severe infusion reactions. If symptoms improve, continue the infusion at one-half the previous rate. Day 7, 8 or 9: Premedicate with acetaminophen 650 mg orally and diphenhydramine 50 mg orally prior to rituximab infusion. Administer rituximab 250 mg/m 2 intravenously at an initial rate of 100 mg/hr. Increase rate by 100 mg/hr increments at 30 minute intervals, to a maximum of 400 mg/hr, as tolerated. If infusion reactions occurred during rituximab infusion on Day 1 of treatment, administer rituximab at an initial rate of 50 mg/hr and escalate the infusion rate in 50 mg/hr increments every 30 minutes to a maximum of 400 mg/hr. Administer Y-90 Zevalin injection through a free flowing intravenous line within 4 hours following completion of rituximab infusion. Use a 0.22 micron low-protein-binding in-line filter between the syringe and the infusion port. After infusion, flush the line with at least 10 mL of normal saline. If platelet count at least 150,000/mm 3 , administer Y-90 Zevalin over 10 minutes as an intravenous infusion at a dose of Y-90 0.4 mCi per kg (14.8 MBq per kg) actual body weight. If platelet count 100,000 to 149,000/mm 3 , in relapsed or refractory patients, administer Y-90 Zevalin over 10 minutes as an intravenous infusion at a dose of Y-90 0.3 mCi per kg (11.1 MBq per kg) actual body weight. Do not administer more than 32 mCi (1184 MBq) Y-90 Zevalin dose regardless of the patient’s body weight. Monitor patients closely for evidence of extravasation during the infusion of Y-90 Zevalin. Immediately stop infusion and restart in another limb if any signs or symptoms of extravasation occur [ see Warnings and Precautions ( 5.5 ) ]. 2.3 Directions for Preparation of Radiolabeled Y-90 Zevalin Doses A clearly-labeled kit is required for preparation of Yttrium-90 (Y-90) Zevalin. Follow the detailed instructions for the preparation of radiolabeled Zevalin [ see Dosage and Administration ( 2.4 ) ]. Required materials not supplied in the kit: Yttrium-90 Chloride Sterile Solution Three sterile 1 mL plastic syringes One sterile 3 mL plastic syringe Two sterile 10 mL plastic syringes with 18-20 G needles ITLC silica gel strips 0.9% Sodium Chloride aqueous solution for the chromatography solvent Developing chamber for chromatography Suitable radioactivity counting apparatus Filter, 0.22 micrometer, low-protein-binding Appropriate acrylic shielding for reaction vial and syringe for Y-90 Method: Allow contents of the refrigerated Y-90 Zevalin kit (Zevalin vial, 50 mM sodium acetate vial, and formulation buffer vial) to reach room temperature. Place the empty reaction vial in an appropriate acrylic shield. Determine the amount of each component needed: Calculate volume of Y-90 Chloride equivalent to 40 mCi based on the activity concentration of the Y-90 Chloride stock. The volume of 50 mM Sodium Acetate solution needed is 1.2 times the volume of Y-90 Chloride solution determined in step 3.a, above. Calculate the volume of formulation buffer needed to bring the reaction vial contents to a final volume of 10 mL. Transfer the calculated volume of 50 mM Sodium Acetate to the empty reaction vial. Coat the entire inner surface of the reaction vial by gentle inversion or rolling. Transfer 40 mCi of Y-90 Chloride to the reaction vial using an acrylic shielded syringe. Mix the two solutions by gentle inversion or rolling. Transfer 1.3 mL of Zevalin (ibritumomab tiuxetan) to the reaction vial. Do not shake or agitate the vial contents. Allow the labeling reaction to proceed at room temperature for 5 minutes. A shorter or longer reaction time may adversely alter the final labeled product. Immediately after the 5-minute incubation period, transfer the calculated volume of formulation buffer from step 3.c. to the reaction vial. Gently add the formulation buffer down the side of the reaction vial. If necessary, withdraw an equal volume of air to normalize pressure. Measure the final product for total activity using a radioactivity calibration system suitable for the measurement of Y-90. Using the supplied labels, record the date and time of preparation, the total activity and volume, and the date and time of expiration, and affix these labels to the shielded reaction vial container. Patient Dose: Calculate the volume required for a Y-90 Zevalin dose [ see Dosage and Administration ( 2.2 ) ].
Dosage forms and strengths
Injection: 3.2 mg ibritumomab tiuxetan per 2 mL as a clear, colorless solution, that may contain translucent particles, in a single-dose vial. Injection: 3.2 mg per 2 mL in a single-dose vial. ( 3 )
Contraindications
None. None.
Warnings and precautions
Serious Infusion Reactions: Immediately discontinue rituximab and Y-90 Zevalin. ( 5.1 , 6.1 ) Prolonged and Severe Cytopenias: Do not administer Zevalin to patients with ≥ 25% lymphoma marrow involvement or impaired bone marrow reserve. ( 5.2 , 6.1 ) Severe Cutaneous and Mucocutaneous Reactions: Discontinue rituximab and Zevalin infusions if patients develop severe cutaneous or mucocutaneous reactions. ( 5.3 , 6.2 ) Development of Leukemia and Myelodysplastic Syndrome: Monitor patients for hematological toxicity including secondary malignancies. ( 5.4 , 6.1 ) Extravasation: Monitor for extravasation and terminate infusion if it occurs. Resume infusion in another limb. ( 5.5 , 6.2 ) Immunization: Do not administer live viral vaccines to patients who recently received Zevalin. ( 5.6 ) Embryo-fetal Toxicity: May cause fetal harm. Advise patients of potential risk to a fetus and to use effective contraception. ( 5.8 , 8.1 , 8.3 ) 5.1 Serious Infusion Reactions Rituximab, alone or as a component of the Zevalin therapeutic regimen, can cause severe, including fatal, infusion reactions. These reactions typically occur during the first rituximab infusion with time to onset of 30 to 120 minutes. Signs and symptoms of severe infusion reactions may include urticaria, hypotension, angioedema, hypoxia, bronchospasm, pulmonary infiltrates, acute respiratory distress syndrome, myocardial infarction, ventricular fibrillation, and cardiogenic shock. Temporarily slow or interrupt the rituximab infusion for less severe infusion reactions. Immediately discontinue rituximab and Y-90 Zevalin administration for severe infusion reactions. Only administer rituximab/Zevalin in facilities where immediate access to resuscitative measures is available [ see Boxed Warning and Dosage and Administration ( 2.2 ) ]. See also prescribing information for rituximab. 5.2 Prolonged and Severe Cytopenias Cytopenias with delayed onset and prolonged duration, some complicated by hemorrhage and severe infection, are the most common severe adverse reactions of the Zevalin therapeutic regimen. When used according to recommended doses, the incidences of severe thrombocytopenia and neutropenia are greater in patients with mild baseline thrombocytopenia (≥ 100,000 but ≤ 149,000/mm 3 ) compared to those with normal pretreatment platelet counts. Severe cytopenias persisting more than 12 weeks following administration can occur. Monitor complete blood counts (CBC) and platelet counts following the Zevalin therapeutic regimen weekly until levels recover or as clinically indicated [ see Boxed Warning and Adverse Reactions ( 6.1 ) ]. Do not administer the Zevalin therapeutic regimen to patients with ≥ 25% lymphoma marrow involvement and/or impaired bone marrow reserve. Monitor patients for cytopenias and their complications (e.g., febrile neutropenia, hemorrhage) for up to 3 months after use of the Zevalin therapeutic regimen. Avoid using drugs which interfere with platelet function or coagulation following the Zevalin therapeutic regimen. 5.3 Severe Cutaneous and Mucocutaneous Reactions Erythema multiforme, Stevens-Johnson syndrome, toxic epidermal necrolysis, bullous dermatitis, and exfoliative dermatitis, some fatal, were reported in post-marketing experience. The time to onset of these reactions was variable, ranging from a few days to 4 months after administration of the Zevalin therapeutic regimen. Discontinue the Zevalin therapeutic regimen in patients experiencing a severe cutaneous or mucocutaneous reaction [ see Boxed Warning and Adverse Reactions ( 6.2 ) ]. 5.4 Risk of Developing Myelodysplastic Syndrome, Leukemia, and Other Malignancies The radiation dose resulting from therapeutic exposure to Y-90 radiolabeled Zevalin may result in secondary malignancies. Myelodysplastic syndrome (MDS) and/or acute myelogenous leukemia (AML) were reported in 5.2% (11/211) of patients with relapsed or refractory NHL enrolled in clinical studies and 1.5% (8/535) of patients included in the expanded-access trial, with median follow-up of 6.5 and 4.4 years, respectively. Among the 19 reported cases, the median time to the diagnosis of MDS or AML was 1.9 years following treatment with the Zevalin therapeutic regimen; however, the cumulative incidence continues to increase [ see Adverse Reactions ( 6.1 ) ]. Among 204 patients receiving Y-90 Zevalin following first-line chemotherapy, 26 (12.7%) patients in the Zevalin arm developed a second primary malignancy compared to 14 (6.8%) of patients in the control arm. Seven patients (3.4%, 7/204) were diagnosed with MDS/AML after receiving Zevalin, compared to one patient (0.5%, 1/205) in the control arm, with a median follow-up of 7.3 years. Deaths due to second primary malignancy included 8 (3.9%) patients in the Zevalin arm compared to 3 (1.5%) patients in the control arm. Deaths due to MDS/AML included five (2.5%) patients in the Zevalin arm compared to no patients in the control arm. Monitor patients for hematological toxicity including development of MDS or AML. 5.5 Extravasation Monitor patients closely for evidence of extravasation during Zevalin infusion. Immediately terminate the infusion if signs or symptoms of extravasation occur and restart in another limb [ see Dosage and Administration ( 2.2 ) ] . 5.6 Risks of Immunization The safety of immunization with live viral vaccines following the Zevalin therapeutic regimen has not been studied. Do not administer live viral vaccines to patients who have recently received Zevalin. The ability to generate an immune response to any vaccine following the Zevalin therapeutic regimen has not been studied. 5.7 Radionuclide Precautions During and after radiolabeling Zevalin with Y-90, minimize radiation exposure to patients and to medical personnel, consistent with institutional good radiation safety practices and patient management procedures.
Side effects
The following serious adverse reactions are discussed in greater detail in other sections of the label: Serious Infusion Reactions [ see Boxed Warning and Warnings and Precautions ( 5.1 ) ] . Prolonged and Severe Cytopenias [ see Boxed Warning and Warnings and Precautions ( 5.2 ) ]. Severe Cutaneous and Mucocutaneous Reactions [ see Boxed Warning and Warnings and Precautions ( 5.3 ) ]. Leukemia and Myelodysplastic Syndrome [ see Warnings and Precautions ( 5.4 ) ]. Common adverse reactions ( > 10%) in clinical trials were: cytopenias, fatigue, nasopharyngitis, nausea, abdominal pain, asthenia, cough, diarrhea, and pyrexia. ( 6 ) To report SUSPECTED ADVERSE REACTIONS, contact Acrotech Biopharma Inc. at 1-866-298-8433 or FDA at 1-800-FDA-1088 or www.fda.gov/medwatch 6.1 Clinical Trials Experience Because clinical trials are conducted under widely varying conditions, adverse reaction rates observed in the clinical trials of a drug cannot be directly compared to rates in the clinical trials of another drug and may not reflect the rates observed in practice. The reported safety data reflects exposure to Zevalin in 349 patients with relapsed or refractory, low-grade, follicular or transformed NHL across 5 trials (4 single arm and 1 randomized) and in 206 patients with previously untreated follicular NHL in a randomized trial (FIT study) who received any portion of the Zevalin therapeutic regimen. The safety data reflect exposure to Zevalin in 270 patients with relapsed or refractory NHL with platelet counts ≥150,000/ mm 3 who received 0.4 mCi/kg (14.8 MBq/kg) of Y-90 Zevalin (Group 1 in Table 4 ), 65 patients with relapsed or refractory NHL with platelet counts of ≥ 100,000 but ≤ 149,000 /mm 3 who received 0.3 mCi/kg (11.1 MBq/kg) of Y-90 Zevalin (Group 2 in Table 4 ), and 204 patients with previously untreated NHL with platelet counts ≥150,000/ mm 3 who received 0.4 mCi/kg (14.8 MBq/kg) of Y-90 Zevalin; all patients received a single course of Zevalin. The most common adverse reactions of Zevalin are cytopenias, fatigue, nasopharyngitis, nausea, abdominal pain, asthenia, cough, diarrhea, and pyrexia. The most serious adverse reactions of Zevalin are prolonged and severe cytopenias (thrombocytopenia, anemia, lymphopenia, neutropenia) and secondary malignancies. Because the Zevalin therapeutic regimen includes the use of rituximab, see prescribing information for rituximab. Table 2 displays selected adverse reaction incidence rates in patients who received any portion of the Zevalin therapeutic regimen (n=206) or no further therapy (n=203) following first-line chemotherapy (FIT study). Table 2. Per-Patient Incidence (%) of Selected Between-group difference of ≥5% Adverse Reactions Occurring in ≥ 5% of Patients with Previously Untreated Follicular NHL Treated with the Zevalin Therapeutic Regimen Zevalin (n=206) Observation (n=203) All Grades NCI CTCAE version 2.0 Grade 3-4 All Grades Grade 3-4 % % % % Gastrointestinal Disorders Abdominal pain 17 2 13 <1 Diarrhea 11 0 3 0 Nausea 18 0 2 0 Body as a Whole Asthenia 15 1 8 <1 Fatigue 33 1 9 0 Influenza-like illness 8 0 3 0 Pyrexia 10 3 4 0 Musculoskeletal Myalgia 9 0 3 0 Metabolism Anorexia 8 0 2 0 Respiratory, Thoracic & Media Cough 11 <1 5 0 Pharyngolaryngeal pain 7 0 2 0 Epistaxis 5 2 <1 0 Nervous System Dizziness 7 0 2 0 Vascular Hypertension 7 3 2 <1 Skin & Subcutaneous Night sweats 8 0 2 0 Petechiae 8 2 0 0 Pruritus 7 0 1 0 Rash 7 0 <1 0 Infections & Infestations Bronchitis 8 0 3 0 Nasopharyngitis 19 0 10 0 Rhinitis 8 0 2 0 Sinusitis 7 <1 <1 0 Urinary tract infection 7 <1 3 0 Blood and Lymphatic System Thrombocytopenia 62 51 1 0 Neutropenia 45 41 3 2 Anemia 22 5 4 0 Leukopenia 43 36 4 1 Lymphopenia 26 18 9 5 Table 3 shows hematologic toxicities in 349 Zevalin-treated patients with relapsed or refractory, low-grade, follicular or transformed B-cell NHL. Grade 2-4 hematologic toxicity occurred in 86% of Zevalin-treated patients. Table 3. Per-Patient Incidence (%) of Hematologic Adverse Reactions in Patients with Relapsed or Refractory Low-grade, Follicular or Transformed B-cell NHL Occurring within the 12 weeks following the first rituximab infusion of the Zevalin therapeutic regimen (N = 349) All Grades % Grade 3-4 % Thrombocytopenia 95 63 Neutropenia 77 60 Anemia 61 17 Ecchymosis 7 <1 Prolonged and Severe Cytopenias Patients in clinical studies were not permitted to receive hematopoietic growth factors beginning 2 weeks prior to administration of the Zevalin therapeutic regimen. The incidence and duration of severe hematologic toxicity in previously treated NHL patients (N=335) and in previously untreated patients (FIT study) receiving Y-90 Zevalin are shown in Table 4 . Table 4.
Drug interactions
Patients receiving medications that interfere with platelet function or coagulation should have more frequent laboratory monitoring for thrombocytopenia. No formal drug interaction studies have been performed with Zevalin. Monitor patients receiving medications that interfere with platelet function or coagulation more frequently for thrombocytopenia. ( 7 )
Use in specific populations
Lactation: Advise women not to breastfeed. ( 8.2 ) 8.1 Pregnancy Risk Summary Based on its radioactivity, Y-90 Zevalin may cause fetal harm when administered to a pregnant woman [see Clinical Pharmacology ( 12.1 )] . Immunoglobulins are known to cross the placenta. There are no available data on Zevalin use in pregnant women to inform a drug-associated risk of major birth defects and miscarriage. Advise women of childbearing potential to use adequate contraception for a minimum of twelve months. Inform women who become pregnant while receiving Zevalin of the potential fetal risks. The estimated background risk of major birth defects and miscarriage for the indicated populations are unknown. All pregnancies have a background risk of birth defect, loss, or other adverse outcomes. However, the background risk in the U.S. general population of major birth defects is 2-4% and of miscarriage is 15-20% of clinically recognized pregnancies. 8.2 Lactation Risk Summary There are no data on the presence of Zevalin or its metabolites in human milk, the effects of Zevalin on the breastfed child, or its effects on milk production. Because human IgG is excreted in human milk, it is expected that Zevalin would be present in human milk. Due to the potential for serious adverse reactions in a breastfeeding child from Zevalin, advise lactating women to avoid breastfeeding during treatment with the Zevalin therapeutic regimen and for 6 months after the last dose. 8.3 Females and Males of Reproductive Potential Zevalin may cause fetal harm when administered to a pregnant woman [see Use in Specific Populations ( 8.1 )] . Pregnancy Testing Conduct pregnancy testing in females of reproductive potential prior to treatment with Zevalin. Contraception Females Based on its radioactivity, Y-90 Zevalin may cause fetal harm. Advise females of reproductive potential to use effective contraceptive methods during treatment and for 12 months after the last dose of the Zevalin therapeutic regimen [see Clinical Pharmacology ( 12.1 )] . Males Based on its radioactivity, Y-90 Zevalin may cause fetal harm. Advise males with female partners of reproductive potential to use effective contraceptive methods during treatment and for 12 months after the final dose of the Zevalin therapeutic regimen [see Clinical Pharmacology ( 12.1 )]. Infertility Based on its radioactivity, there is a potential risk that the Zevalin therapeutic regimen could cause toxic effects on the male and female gonads [see Clinical Pharmacology ( 12.1 ) and Nonclinical Toxicology ( 13.1 )] . 8.4 Pediatric Use The safety and effectiveness of Zevalin have not been established in pediatric patients. 8.5 Geriatric Use Of 349 patients with relapsed/refractory NHL treated with the Zevalin therapeutic regimen in clinical studies, 38% (132 patients) were age 65 years and over, while 12% (41 patients) were age 75 years and over. Of 414 patients enrolled in the FIT study (Zevalin following first-line chemotherapy) 206 patients received Zevalin. Of these patients 14% (29 patients) were 65 years and over, while 2% (4 patients) were 75 years and older. No overall differences in safety or effectiveness were observed between these subjects and younger subjects, but greater sensitivity of some older individuals cannot be ruled out.
Pregnancy
8.1 Pregnancy Risk Summary Based on its radioactivity, Y-90 Zevalin may cause fetal harm when administered to a pregnant woman [see Clinical Pharmacology ( 12.1 )] . Immunoglobulins are known to cross the placenta. There are no available data on Zevalin use in pregnant women to inform a drug-associated risk of major birth defects and miscarriage. Advise women of childbearing potential to use adequate contraception for a minimum of twelve months. Inform women who become pregnant while receiving Zevalin of the potential fetal risks. The estimated background risk of major birth defects and miscarriage for the indicated populations are unknown. All pregnancies have a background risk of birth defect, loss, or other adverse outcomes. However, the background risk in the U.S. general population of major birth defects is 2-4% and of miscarriage is 15-20% of clinically recognized pregnancies.
Pediatric use
8.4 Pediatric Use The safety and effectiveness of Zevalin have not been established in pediatric patients.
Geriatric use
8.5 Geriatric Use Of 349 patients with relapsed/refractory NHL treated with the Zevalin therapeutic regimen in clinical studies, 38% (132 patients) were age 65 years and over, while 12% (41 patients) were age 75 years and over. Of 414 patients enrolled in the FIT study (Zevalin following first-line chemotherapy) 206 patients received Zevalin. Of these patients 14% (29 patients) were 65 years and over, while 2% (4 patients) were 75 years and older. No overall differences in safety or effectiveness were observed between these subjects and younger subjects, but greater sensitivity of some older individuals cannot be ruled out.
Overdosage
Severe cytopenias which may require stem cell support have occurred at doses higher than the recommended maximum total dose of 32 mCi (1184 MBq).
Description
Zevalin (ibritumomab tiuxetan) is the immunoconjugate resulting from a stable thiourea covalent bond between the monoclonal antibody ibritumomab and the linker-chelator tiuxetan [N-[2-bis(carboxymethyl) amino]-3-(p-isothiocyanatophenyl)-propyl]-[N-[2-bis(carboxymethyl)amino]-2- (methyl)-ethyl]glycine. This linker-chelator provides a high affinity, conformationally restricted chelation site for Yttrium-90. The approximate molecular weight of ibritumomab tiuxetan is 148 kD. The antibody moiety of Zevalin is ibritumomab, a murine IgG 1 kappa monoclonal antibody directed against the CD20 antigen. Ibritumomab tiuxetan is a clear, colorless, sterile, pyrogen-free, preservative-free solution that may contain translucent particles. Each single-use vial includes 3.2 mg of ibritumomab tiuxetan in 2 mL of 0.9% Sodium Chloride. Physical/Radiochemical Characteristics of Y-90 Yttrium-90 decays by emission of beta particles, with a physical half-life of 64.1 hours (2.67 days). The product of radioactive decay is non-radioactive Zirconium-90. The range of beta particles in soft tissue ( χ 90) is 5 mm. Radiation emission data for Y-90 are summarized in Table 5 . Table 5. Principal Y-90 Radiation Emission Data Radiation Mean % per Disintegration Mean Energy (keV) Beta minus 100 750-935 External Radiation The exposure rate for 1 mCi (37 MBq) of Y-90 is 8.3 x 10 -3 C/kg/hr (32 R/hr) at the mouth of an open Y-90 vial. To allow correction for physical decay of Y-90, the fractions that remain at selected intervals before and after the time of calibration are shown in Table 6 . Table 6. Physical Decay Chart: Y-90 Half-life 2.67 Days (64.1 Hours) Calibration Time (Hrs.) Fraction Remaining Calibration Time (Hrs.) Fraction Remaining -36 1.48 0 1.00 -24 1.30 1 0.99 -12 1.14 2 0.98 -8 1.09 3 0.97 -7 1.08 4 0.96 -6 1.07 5 0.95 -5 1.06 6 0.94 -4 1.04 7 0.93 -3 1.03 8 0.92 -2 1.02 12 0.88 -1 1.01 24 0.77 0 1.00 36 0.68
Mechanism of action
12.1 Mechanism of Action Ibritumomab tiuxetan binds specifically to the CD20 antigen (human B-lymphocyte-restricted differentiation antigen, Bp35). The apparent affinity (K D ) of ibritumomab tiuxetan for the CD20 antigen ranges between approximately 14 to 18 nM. The CD20 antigen is expressed on pre-B and mature B lymphocytes and on > 90% of B-cell non-Hodgkin’s lymphomas (NHL). The CD20 antigen is not shed from the cell surface and does not internalize upon antibody binding. The chelate tiuxetan, which tightly binds Y-90, is covalently linked to ibritumomab. The beta emission from Y-90 induces cellular damage by the formation of free radicals in the target and neighboring cells. Ibritumomab tiuxetan binding was observed in vitro on lymphoid cells of the bone marrow, lymph node, thymus, red and white pulp of the spleen, and lymphoid follicles of the tonsil, as well as lymphoid nodules of other organs such as the large and small intestines.
How supplied
16 HOW SUPPLIED/STORAGE AND HANDLING A kit is used for preparing Y-90 radiolabeled Zevalin (NDC 72893-007-04). The contents of all vials are sterile, pyrogen-free, contain no preservatives, and are not radioactive. The kit contains four identification labels and the following four vials: One (1) Zevalin vial containing 3.2 mg ibritumomab tiuxetan in 2 mL 0.9% Sodium Chloride as a clear, colorless solution. One (1) 50 mM Sodium Acetate Vial containing 13.6 mg Sodium Acetate trihydrate in 2 mL Water for Injection, USP as a clear, colorless solution. One (1) Formulation Buffer Vial containing 750 mg Albumin (Human), 76 mg Sodium Chloride, 28 mg Sodium Phosphate Dibasic Dodecahydrate, 4 mg Pentetic Acid, 2 mg Potassium Phosphate Monobasic and 2 mg Potassium Chloride in 10 mL Water for Injection, pH 7.1 as a clear yellow to amber colored solution. One (1) empty Reaction Vial. Yttrium-90 Chloride Sterile Solution is shipped directly from the supplier upon placement of an order for the Y-90 Zevalin kit. Rituximab must be ordered separately. Storage Store the kit at 2-8°C (36-46°F). Do not freeze.
Patient information
Advise patients: To contact a healthcare professional for severe signs and symptoms of infusion reactions. To take premedications as prescribed [see Dosage and Administration ( 2.2 ) and Warnings and Precautions ( 5.1 )] . To report any signs or symptoms of cytopenias (bleeding, easy bruising, petechiae or purpura, pallor, weakness or fatigue) [see Warnings and Precautions ( 5.2 )] . To avoid medications that interfere with platelet function, except as directed by a healthcare professional [see Warnings and Precautions ( 5.2 )] . To seek prompt medical evaluation for diffuse rash, bullae, or desquamation of the skin or oral mucosa [see Warnings and Precautions ( 5.3 )] . To immediately report symptoms of infection (e.g. pyrexia) [see Adverse Reactions ( 6.2 )] . That immunization with live viral vaccines is not recommended for 12 months following the Zevalin therapeutic regimen [see Warnings and Precautions ( 5.6 )] . To use effective contraceptive methods during treatment and for a minimum of 12 months following Zevalin therapy [see Warnings and Precautions ( 5.8 )] , Use in Specific Populations ( 8.1 , 8.3 ) and Nonclinical Toxicology ( 13.1 )] . To discontinue breastfeeding during and for 6 months after the last dose of Zevalin treatment [see Use In Specific Populations ( 8.2 )] . Zevalin ® (ibritumomab tiuxetan) Manufactured by: Acrotech Biopharma Inc. East Windsor, NJ 08520 U.S. License No.2159 Zevalin ® is a registered trademark of Acrotech Biopharma Inc and its subsidiaries. Protected by U.S. Patent Nos. 5,736,137, 5,776,456, 5,843,439, 6,207,858, 6,399,061, 6,682,734, 6,994,840, 7,229,620, 7,381,560, 7,422,739 and other patents and patents pending.
Label text from the FDA structured product label by Acrotech Biopharma Inc (revised Apr 25, 2023). Long sections are shortened; the complete label is on DailyMed.
Zevalin NDC products (1)
| NDC | Strength & form | Labeler | Type |
|---|---|---|---|
| 72893-007 | Kit | Acrotech Biopharma Inc | BLA |
Frequently asked questions
What is Zevalin used for?
Zevalin is a CD20-directed radiotherapeutic antibody administered as part of the Zevalin therapeutic regimen indicated for the treatment of adult patients with: relapsed or refractory, low-grade or follicular B-cell non-Hodgkin's lymphoma (NHL) ( 1.1 ). previously untreated follicular NHL who achieve a partial or complete response to first-line chemotherapy ( 1.2 ). 1.1 Relapsed or Refractory,…
What are the side effects of Zevalin?
The following serious adverse reactions are discussed in greater detail in other sections of the label: Serious Infusion Reactions [ see Boxed Warning and Warnings and Precautions ( 5.1 ) ] . Prolonged and Severe Cytopenias [ see Boxed Warning and Warnings and Precautions ( 5.2 ) ]. Severe Cutaneous and Mucocutaneous Reactions [ see Boxed Warning and Warnings and Precautions ( 5.3 ) ]. Leukemia… See the full label for the complete list.
Who makes Zevalin?
Zevalin is listed by 1 labeler in the FDA NDC directory, including Acrotech Biopharma Inc.