This phase I trial tests the safety, side effects, and best dose of total body irradiation (TBI) in combination with standard of care lymphodepletion with cyclophosphamide and fludarabine before tisagenlecleucel (Tisa-cel) and how well the combination works in patients with large B-cell lymphoma (LBCL) that has come back after a period of improvement (relapsed) or that has not responded to previous treatment (refractory). TBI is a common treatment that sends radiation (for example, through x-rays) to the entire body. Lymphodepleting chemotherapy, such as cyclophosphamide and fludarabine, along with TBI helps kill cancer cells in the body and helps prepare the body for the Tisa-cel infusion. Tisagenlecleucel is made using a patient's T cells (a type of immune system cell). A gene for a special receptor called chimeric antigen receptor (CAR) is added to the T cells in the laboratory. These changed T cells called CAR T cells are grown in large numbers in the laboratory and given to the patient by infusion. Tisa-cel binds to a protein called CD19, which is found on some leukemia and lymphoma cells. This helps the body's immune system kill cancer cells. Tisa-cel is a type of CAR T-cell therapy. Giving low dose TBI in combination with standard of care lymphodepletion therapy and Tisa-cel may be safe, tolerable, and/or effective in treating patients with relapsed or refractory (R/R) LBCL.
PRIMARY OBJECTIVE: I. To determine the safety and maximum tolerated dose (MTD) of total body irradiation (TBI) as lymphodepletion intensification for Tisa-cel in R/R large B-cell lymphoma. SECONDARY OBJECTIVE: I. To determine the efficacy, toxicity, and pharmacokinetics of Tisa-cel with intensified lymphodepletion by low dose TBI. II. To compare pharmacokinetics of Tisa-cel with intensified to historic control from JULIET trial, provided by Novartis and Navigate. EXPLORATORY OBJECTIVE: I. Compare the clinical outcomes of Tisa-cel with intensified lymphodepletion by TBI with institutional and Center for International Blood and Marrow Transplant Research (CIBMTR) historic control real world of evidence of standard-of-care Tisa-cel in LBCL. CORRELATIVE OBJECTIVES: I. To describe the T-cell phenotype, exhaustion, and activation induced cell death markers marker of Tisa-cel with intensified lymphodepletion by low dose total body irradiation. II. To describe the cytokine profile, immune profile and circulating tumor deoxyribonucleic acid (ctDNA) dynamics following of Tisa-cel with intensified lymphodepletion by low dose total body irradiation. III. To investigate tumor microenvironment and mechanism of resistance to CAR-T19 in the biopsy at progression post-CAR-T19. OUTLINE: This is a dose-escalation study of TBI in combination with standard of care lymphodepletion and Tisa-cel followed by a dose-expansion study. Patients undergo leukapheresis and receive lymphodepleting chemotherapy with cyclophosphamide intravenously (IV) and fludarabine IV on days -5 to -3 per standard of care. Patients also undergo low dose TBI on day -2 and receive standard of care Tisa-cel IV over 5-30 minutes on day 0. Additionally, patients undergo blood sample collection, positron emission tomography (PET)/computed tomography (CT) or CT throughout the study. After completion of study treatment, patients are followed up at days 1-7, 10, 14, 17, 21, 30, 45, 60, 75, 90, 120, 150, 180 and 270, at 1 year after Tisa-cel infusion then for up to year 15 per standard of care.
Study Type
INTERVENTIONAL
Allocation
NA
Purpose
TREATMENT
Masking
NONE
Enrollment
18
Undergo blood sample collection
Undergo PET/CT or CT
Given IV
Given IV
Undergo leukapheresis
Undergo PET/CT
Given IV
Undergo low dose TBI
Ohio State University Comprehensive Cancer Center
Columbus, Ohio, United States
Dose-limiting toxicities
Adverse events will be graded according to National Cancer Institute Common Terminology Criteria for Adverse Events (CTCAE) version (v) 5.0. Cytokine release syndrome and immune effector cell associated neurotoxicity syndrome are graded using American Society for Transplantation and Cellular Therapy (ASTCT) Consensus grading.
Time frame: Up to 30 days after infusion
Maximum tolerated dose or recommended phase 2 dose (RP2D)
Will define the dose as the RP2D for which the isotonic estimate of the toxicity rate is closest to the targeted toxicity rate (i.e., 25%). If there is a tie, the higher dose level when the isotonic estimate is lower than the targeted toxicity rate; and will choose the lower dose level when the isotonic estimate is greater than the targeted toxicity rate.
Time frame: Up to 30 days after infusion
Incidence of adverse events
Frequency and nature of adverse events of different grades, overall and by dose levels will be described.
Time frame: Up to 1 year
Complete remission rate
Will be evaluated with descriptive statistics with proportions used to describe response rates (complete and overall).
Time frame: At days 30 and 90 from tisagenlecleucel (Tisa-cel) infusion
Objective response rate
Will be estimated with 95% confidence intervals.
Time frame: At 30 and 90 days and 6 months
Median duration of response
Will be calculated using Kaplan Meier method, comparisons between groups will be done using the log rank test.
Time frame: Up to 1 year
Progression-free survival
Will be analyzed using Lugano criteria. Will be calculated using Kaplan Meier method, comparisons between groups will be done using the log rank test.
Time frame: From Tisa-cel infusion to clinical progression or death as a result of any cause, assessed at 6 months and 1 year
Overall survival
Will be analyzed using Lugano criteria.
Time frame: From Tisa-cel infusion to death from any cause, assessed at 6 months and 1 year
Rate and grade of cytokine release syndrome
Will be evaluated using ASTCT Consensus grading.
Time frame: Within the first 30 days post-infusion
Rate and grade of immune effector cell associated neurotoxicity syndrome
Will be evaluated using ASTCT Consensus grading.
Time frame: Within the first 30 days post-infusion
Rates of grade IV cytopenias
Time frame: At days 30 and 90 from Tisa-cel infusion
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