Recurrent B-Cell Non-Hodgkin Lymphoma

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Review clinical trials related to Recurrent B-Cell Non-Hodgkin Lymphoma. Use filters to narrow results by trial status, phase, treatment, biological sex and sponsor.

Condition / disease
Location
Status: Recruiting

Pomalidomide After CAR T-cell Therapy for the Treatment of Relapsed or Refractory CD19+ B-cell Leukemia or Lymphoma

This phase I trial tests the safety and effectiveness of pomalidomide after CD19 chimeric antigen receptor T-cell (CD19CART) therapy for the treatment of patients with CD19+ B-cell leukemias or lymphomas that have come back after a period of improvement (relapsed) or do not respond to treatment (refractory). Chimeric antigen receptor (CAR) T-cell therapy is a type of treatment in which a patient's T-cells (a type of immune system cell) are changed in the laboratory so they will attack cancer cells and are then re-infused into the patient. Following CAR T-cell infusion, CAR T-cells must expand and persist in the blood stream in order to most effectively treat leukemia/lymphoma. Pomalidomide stops the growth of blood vessels, stimulates the immune system, and may kill cancer cells. Research has shown that drugs like pomalidomide can modify the immune system and increase the number or improve the function of CAR T-cells in the blood. Pomalidomide may enhance the treatment effects of CAR T-cell therapy in patients who have received CD19CART therapy for relapsed or refractory CD19+ B-cell leukemia or lymphoma.

Participants needed: 12
Trial details
Phase: Phase 1Age: 18+Biological sex: AllType: InterventionalSponsor: University of Michigan Rogel Cancer CenterUpdated: Jun 9, 2026Locations: 1
Eligibility criteria

Subject must have had a histologically or cytologically confirmed R/R CD19+ B-ce... [+12]

Patients with known progressive or refractory disease. [+15]

Status: Recruiting

CD19-Directed CAR-T Cell Therapy for the Treatment of Relapsed/Refractory B Cell Malignancies

This phase I trial studies the effects of CD-19 directed chimeric antigen receptor (CAR)-T cell therapy for the treatment of patients with B cell malignancies that have come back (recurrent) or have not responded to treatment (refractory). CD-19 CAR-T cells use some of a patient's own immune cells, called T cells, to kill cancer. T cells fight infections and, in some cases, can also kill cancer cells. Some T cells are removed from the blood, and then laboratory, researchers will put a new gene into the T cells. This gene allows the T cells to recognize and possibly treat cancer. The new modified T cells are called the IC19/1563 treatment. IC19/1563 may help treat patients with relapsed/refractory B cell malignancies.

Participants needed: 25
Trial details
Phase: Phase 1Age: 18+Biological sex: AllType: InterventionalSponsor: Mayo ClinicUpdated: Jun 9, 2026Locations: 1
Eligibility criteria

Age >= 18 years [+21]

Pregnant persons [+22]

Status: Recruiting

A Cognitive Training Intervention for Improving Cognitive and Neurological Outcomes in Patients Undergoing Treatment for Relapsed or Refractory Multiple Myeloma or B-cell Non-Hodgkin Lymphoma

This clinical trial evaluates whether an online cognitive training intervention (Intervention to enhance Cognitive Augmentation and Neuroplasticity \[I-CAN\]), delivered before and after treatment with chimeric antigen receptor T-cell therapy, works to improve cognitive and neurological outcomes in patients with multiple myeloma or B-cell non-Hodgkin lymphoma that has come back after a period of improvement (relapsed) or does not respond to treatment (refractory). Cancer treatment can have significant short and long-term side effects, including cognitive and neurological side effects such as impairments in attention, memory, language, and executive function. The I-CAN program is a form of cognitive training. Cognitive training is a therapeutic approach designed to improve and restore cognitive functioning, based on the brain's ability to reorganize and form new neural connections to accomplish tasks. I-CAN provides five core elements necessary for training the brain to create new neural connections including speed of processing, accuracy of processing, adaptivity, generalizability, and engagement. The I-CAN intervention, when delivered before and after therapy, may help reduce the cognitive side effects of treatment in patients with relapsed or refractory multiple myeloma or B-cell non-Hodgkin lymphoma.

Participants needed: 90
Trial details
Age: 18+Biological sex: AllType: InterventionalSponsor: Ohio State University Comprehensive Cancer CenterUpdated: May 27, 2026Locations: 1
Eligibility criteria

Patients >= 18 years of age [+3]

Patients expected to live < 6 months [+4]

Status: Recruiting

Testing the Combination of Nivolumab and ASTX727 for Relapsed or Refractory B-Cell Lymphoma

This phase I trial tests the safety, side effects, and best dose of nivolumab in combination with ASTX727 in treating B-cell lymphoma that has come back (relapsed) or does not respond to treatment (refractory). Immunotherapy with monoclonal antibodies, such as nivolumab, may help the body's immune system attack the cancer, and may interfere with the ability of tumor cells to grow and spread. ASTX727 consists of the combination of decitabine and cedazuridine. Cedazuridine is in a class of medications called cytidine deaminase inhibitors. It prevents the breakdown of decitabine, making it more available in the body so that decitabine will have a greater effect. Decitabine is in a class of medications called hypomethylation agents. It works by helping the bone marrow produce normal blood cells and by killing abnormal cells in the bone marrow. Giving nivolumab in combination with ASTX727 may shrink and stabilize cancer.

Participants needed: 32
Trial details
Phase: Phase 1Age: 18+Biological sex: AllType: InterventionalSponsor: National Cancer Institute (NCI)Updated: May 13, 2026Locations: 9
Eligibility criteria

Dose Escalation: Histologically confirmed relapsed or refractory B cell lymphoma... [+23]

Repeat imaging demonstrates no new sites of bone metastases [+11]

Status: Recruiting

Trial of ONC-PluReceptor NK Cells With Epcoritamab and Tafasitamab for Patients With Recurrent or Refractory B-cell Non-Hodgkin Lymphoma

The goal of this clinical research study is to learn if ONC-PluReceptor NK cell therapy (combined with the monoclonal antibody therapies epcoritamab and tafasitamab) can help to control relapsed or refractory B-cell Non-Hodgkin Lymphoma. The safety of this treatment will also be studied.

Participants needed: 30
Trial details
Phase: Phase 1, Phase 2Age: 18+Biological sex: AllType: InterventionalSponsor: M.D. Anderson Cancer CenterUpdated: May 1, 2026Locations: 1
Eligibility criteria

Tumor biopsy positive for CD19 or CD20 at >/= 1% by immunohistochemistry or flow... [+8]

Lymphoma in CR with no measurable sites of disease. [+13]

Status: Recruiting

Genetically Modified T-cells (CMV-Specific CD19-CAR T-cells) Plus a Vaccine (CMV-MVA Triplex) for the Treatment of Intermediate or High Grade B-Cell Non-Hodgkin Lymphoma

This phase I trial studies the safety and feasibility of cytomegalovirus (CMV) specific CD19-chimeric antigen receptor (CAR) T cells in combination with the CMV-modified vaccinia Ankara (MVA) triplex vaccine following lymphodepletion in treating patients with intermediate or high grade B-cell non-Hodgkin lymphoma (NHL) that has come back after a period of improvement (relapsed) or that does not respond to treatment (refectory). CAR T cells are a type of treatment in which a patient's T cells (a type of immune system cell) are changed in the laboratory so they will attack cancer cells. T cells are taken from a patient's blood. Then the gene for a special receptor that binds to a certain protein on the patient's cancer cells is added in the laboratory. The special receptor is called CAR. Large numbers of the CAR T cells are grown in the laboratory and given to the patient by infusion. Vaccines such as CMV-MVA triplex are made from gene-modified viruses and may help the body build an effective immune response to kill cancer cells. Giving CMV-specific CD19-CAR T-cells plus the CMV-MVA triplex vaccine may help prevent the cancer from coming back.

Participants needed: 15
Trial details
Phase: Phase 1Age: 18+Biological sex: AllType: InterventionalSponsor: City of Hope Medical CenterUpdated: Mar 5, 2026Locations: 1
Eligibility criteria

Documented informed consent of the participant and/or legally authorized represe... [+25]

Prior allogeneic stem cell transplant unless the participant has recovered from... [+20]

Status: Recruiting

Genetically Modified T-cells (CMV-Specific CD19-CAR T-cells) Plus a Vaccine (CMV-MVA Triplex) Following Stem Cell Transplantation for the Treatment of Intermediate or High Grade B-cell Non-Hodgkin Lymphoma

This phase I trial studies the safety and side effects of cytomegalovirus (CMV) specific CD19-chimeric antigen receptor (CAR) T-cells along with the CMV-modified vaccinia Ankara (MVA) triplex vaccine following a stem cell transplant in treating patients with high grade B-cell non-Hodgkin lymphoma. CAR T-cells are a type of treatment in which a patient's T-cells (a type of immune system cell) are changed in the laboratory so they will attack cancer cells. T-cells are taken from a patient's blood. Then the gene for a special receptor that binds to a certain protein on the patient's cancer cells is added in the laboratory. The special receptor is called a chimeric antigen receptor (CAR). Large numbers of the CAR T-cells are grown in the laboratory and given to the patient by infusion. Vaccines such as CMV-MVA triplex are made from gene-modified viruses and may help the body build an effective immune response to kill cancer cells. Giving CMV-specific CD19-CAR T-cells plus the CMV-MVA triplex vaccine following a stem cell transplant may help prevent the cancer from coming back.

Participants needed: 15
Trial details
Phase: Phase 1Age: 18+Biological sex: AllType: InterventionalSponsor: City of Hope Medical CenterUpdated: Feb 23, 2026Locations: 1
Eligibility criteria

Documented informed consent of the participant and/or legally authorized represe... [+25]

Prior autologous/allogeneic stem cell transplant [+20]