View clinical trials related to Lymphoma, B-cell.
Filter by:Efficacy and Safety of ibrutinib in patients with chronic lymphocytic leukemia and other indolent B-cell lymphomas who are chronic hepatitis B virus carriers or occult hepatitis B virus carriers
This is a phase I study of BTK inhibitor CT-1530 in patients with relapsed or refractory B cell non-Hodgkin lymphoma (B-NHL), chronic lymphocytic leukemia (CLL) or Waldenstrom's macroglobulinemia (WM). The purpose of the study is to determine the MTD/RP2D of CT-1530, and evaluate its safety and tolerability as monotherapy in subjects with relapsed or refractory B cell non-Hodgkin lymphoma (B-NHL), chronic lymphocytic leukemia (CLL) or Waldenstrom's macroglobulinemia (WM).
Chimeric antigen receptor (CAR) T cells targeting CD20 will be evaluated for safety and efficacy in patients with CD20+ B cell lymphoma. The CAR consists of a CD20 targeting antibody scFv with two intracellular signaling domains derived from CD3 zeta and CD28. Autologous T cells will be gene-engineered with the CAR gene using a retrovirus vector. Prior to T cell infusion, the patients will be subjected to preconditioning treatment. After T cell infusion, the patients will be evaluated for 24 months for adverse reactions, persistence of CAR T cells and efficacy.
This is a single arm, open-label, phase 1/2 study to evaluate the safety and efficacy of anti-CD19 CAR-T cells in patients with relapsed or refractory B cell Malignancies.
The purpose of this study is to compare standard dose radiation of 45 Gray(Gy) in 25 fractions in Non Hodgkin's Lymphoma- Diffuse Large B cell Lymphoma (NHL-DLBCL) to that of 36 Gy in 20 fractions. The role of radiation in NHL-DLBCL has been addressed in large cooperative trials showing improvement in overall survival and progression free survival with combined modality treatment. The doses of radiation used in these trials are heterogeneous ranging from 30-55 Gray(Gy). There is uncertainty about the optimal dose of radiation needed in aggressive lymphomas. A dose response phenomenon is known in Non- Hodgkin's Lymphoma. Late effects of higher dose radiation in the form of higher risk of stroke, myocardial infarction, thyroid abnormalities and secondary breast cancer are being increasingly identified. Hence it is essential to optimize the dose of radiotherapy for lower toxicity without compromising on efficacy.
Chimeric antigen receptor (CAR) T cells targeting CD19 will be evaluated for safety and efficacy in patients with B cell malignancy including lymphoma or leukemia.
This is a multicentre, open-label, phase II study of ibrutinib 560 mg in combination with R-ICE for treatment of transplant-eligible relapsed/refractory diffuse large B-cell lymphoma.
This is a multi-centre, non-randomised, open label Phase I clinical trial of an Advanced Therapy Investigational Medicinal Product (ATIMP) in adults (age ≥16) with (1) high risk, relapsed/refractory (r/r) CD19+ B-ALL; (2) r/r DLBCL; (3) r/r CLL/SLL and (4) r/r FL and (5) r/r MCL. The ATIMP for this study is cryopreserved autologous patient-derived T-cells transduced with the lentiviral pCCL.PGK.alpha.CD19CAT-41BBzeta vector, CD19CAT-41BBζ CAR T-cells (referred to subsequently as CD19CAR T-cells) which is classified as a gene therapy medicinal product. Patients will undergo an unstimulated leucapheresis for the generation of the ATIMP. The ATIMP will take approximately 15 days to generate. During this period, patients may receive "holding" chemotherapy as per institutional practice to maintain disease control. The study will evaluate ATIMP safety and efficacy and the duration of disease response in adults with high risk / relapsed CD19+ B-ALL, DLBCL, B-CLL/SLL, FL and MCL. Recruitment into the ALL cohort has been completed and no further patients with ALL are being treated on the study. Patients receive pre-conditioning lymphodepleting chemotherapy with cyclophosphamide 60mg/kg on Day -6 and fludarabine 30mg/m2 administered over 3 days (Day -5 to Day -3). Patients with DLBCL only will also receive a single dose of pembrolizumab 200 mg at day -1. Patients recruited to ALLCAR19 are treated with different dosing schedules, depending on their underlying disease. Patients with B-ALL and B-CLL/SLL are considered at high risk of CLL/CRES so receive split dosing, with the second dose only given in the absence of severe toxicity 9 days later. CAR T-cell dosing in ALLCAR19 is flat i.e. not dependent on patient body weight or surface area. - Regimen A1: Patients with B-ALL with a baseline marrow blast% of ≤20% receive a split dose with a first dose of 100 x 10^6 CD19 CAR T-cells and a possible second dose of 310 x 106 CAR T-cells - Regimen A2: Patients with B-ALL with a baseline marrow blast% of >20% receive a split dose with a first dose of 10 x 10^6 CD19CAR T-cells and a possible second dose of 400 x 10^6 CAR T-cells - Regimen B: Patients with DLBCL receive a single dose of 200 x 10^6 CAR T-cells - Regimen C: Patients with CLL/SLL will receive a split dose with a first dose of 30 x 106 CD19 CAR T-cells and a possible second dose of 200 x 10^6 CD19 CAR T-cells. - Regimen D: Patients with FL and MCL receive a single dose of 200 x 10^6 CAR T-cells The study evaluates ATIMP feasibility and safety of generating CD19CAR T-cells and for B-ALL patients only, efficacy and the duration of disease response to CD19CAR T-cells. After completing the interventional phase of the study all patients, irrespective of whether they progressed or responded to treatment, enter long term follow up until 10 years post-CD19CAR T-cell infusion.
The purpose of this study is to evaluate whether a semi-quantitative interpretation using the liver SUVmax as reference can better interpret 18F-FDG PET/CT and predict disease progression during chemotherapy or survival in DLBCL.
The purpose of this study is to evaluate whether 18F-FDG PET/CT-based prognostic model of diffuse large B-cell lymphoma can predict disease progression