18 Clinical Trials for Various Conditions
The purpose of this study is to evaluate the safety and efficacy of glofitamab, as monotherapy and in combination with a standard chemoimmunotherapy regimen: rituximab, ifosfamide, carboplatin, and etoposide (R-ICE) in pediatric and young adult participants with relapsed and refractory (R/R) mature B-cell non-Hodgkin lymphoma (B-NHL).
The purpose of this study is to confirm that the pharmacokinetics of ibrutinib in pediatric participants is consistent with that in adults (part 1) and to assess efficacy (event-free survival \[EFS\]) of ibrutinib in combination with rituximab, ifosfamide, carboplatin, and etoposide (RICE) or rituximab, vincristine, ifosfamide, carboplatin, and idarubicin (RVICI) background therapy compared to RICE or RVICI background therapy alone (part 2).
The goal of this clinical trial is to learn if BMT-3566 can safety be given to adult patients with relapsed or refractory mature b cell lymphomas. It will also learn how well BTM-3566 works to treat relapsed or refractory mature b cell lymphomas. The main questions it aims to answer are: What are the side effects of BTM-3566 at different doses? What are the levels of BTM-3566 in the blood at different timepoints around dosing? What is the clinical benefit of BTM-3566 in treating cancer (i.e. how well does it slow or stop disease progression)? Participants will: Take BTM-3566 in 14-day periods with 7 days of dosing followed by 7 days of no dosing Visit the clinic regularly for checkups and tests Keep a diary of their dosing and weight
This phase I/II trial studies the side effects and best dose of anti-cluster of differentiation (CD)20 radioimmunotherapy (RIT), and to see how well it works when given before chemotherapy and stem cell transplant in treating patients with B-cell malignancies that have not responded to treatment or have come back after responding to treatment. CD20 is a protein found on the cells of a type of cancer cell called B-cells. Anti-CD20 RIT attaches radioactive material to a drug that is designed to target CD20, which brings radioactive material to the cancer cells to kill the cells. This may kill more tumor cells while causing fewer side effects to healthy tissue. Adding anti-CD20 to standard chemotherapy and stem cell transplant may be more effective in treating patients with B-cell malignancies.
This clinical trial is studying the safety and potential anti-tumor activity of an investigational drug called ARV-393 in patients diagnosed with advanced Relapsed/Refractory non-Hodgkin's lymphoma to determine if ARV-393 may be a possible treatment option. ARV-393 is thought to work by breaking down a protein present in many types of non-Hodgkins lymphomas, which may prevent, slow or stop tumor growth. This is the first time ARV-393 will be used by people. The investigational drug will be given as an oral tablet.
This is a Phase Ib study to evaluate the safety and efficacy of autologous T cells engineered with a chimeric antigen receptor (CAR) targeting cluster of differentiation (CD)19 in pediatric patients with relapsed or refractory (r/r) B cell acute lymphoblastic leukemia (B ALL) and r/r B cell Non-Hodgkin lymphoma (B NHL)
This phase II trial studies how well ruxolitinib phosphate works in treating patients with diffuse large B-cell or peripheral T-cell non-Hodgkin lymphoma that has returned (relapsed) or that does not respond to treatment (refractory) after donor stem cell transplant. Ruxolitinib phosphate may stop the growth of cancer cells by blocking some of the enzymes needed for cell growth.
This pilot clinical trial studies the side effects of irradiated donor cells following stem cell transplant in controlling cancer in patients with hematologic malignancies. Transfusion of irradiated donor cells (immune cells) from relatives may cause the patient's cancer to decrease in size and may help control cancer in patients receiving a stem cell transplant.
This phase I trial studies the side effects and best dose of alisertib and romidepsin in treating patients with B-cell or T-cell lymphomas that have returned after a period of improvement (relapsed) or have not responded to treatment (refractory). Alisertib and romidepsin may stop the growth of cancer cells by blocking some of the enzymes needed for cell growth.
The most common types of mature B-cell lymphomas (MBLs) in children are Burkitt lymphoma (BL) and diffuse large B-cell lymphoma (DLBCL). Initial treatment cures 90% - 95% of children with these malignancies, leaving a very small population of relapsed/refractory disease with a poor prognosis. The purpose of this study is to assess the safety and tolerability of epcoritamab in pediatric participants with relapsed/refractory aggressive mature B-cell neoplasms and young adult participants with Burkitt's or Burkitt-like lymphoma/leukemia. Adverse events and change in disease activity will be assessed. Epcoritamab is an investigational drug being developed for the treatment of relapsed/refractory aggressive mature B-cell neoplasms. Participants will receive subcutaneous (SC) of epcoritamab. Approximately 15 pediatric participants with a diagnosis of relapsed/refractory aggressive mature B-cell neoplasms and and young adult participants, ages of 18-25, with a diagnosis of Burkitt's or Burkitt-like lymphoma/leukemia will be enrolled at 50 sites globally. Participants will receive subcutaneous epcoritamab in 28-day cycles. Participants will be followed for a minimum of 3 years after enrollment. There may be higher treatment burden for participants in this trial compared to their standard of care. Participants will attend regular visits during the study at an approved institution (hospital or clinic). The effect of the treatment will be frequently checked by medical assessments, blood tests, questionnaires and side effects.
The purpose of this study is to determine the safety of administering obinutuzumab as a single agent alone and in combination with ifosfamide, carboplatin, and etoposide (ICE) chemotherapy and determine the response rate of this treatment for children, adolescents and young adults (CAYA) with relapsed CD20 positive B-cell Non-Hodgkin Lymphoma (B-NHL).
This study is testing the safety and tolerability of BGB-21447 monotherapy in participants with relapsed or refractory (R/R) non-Hodgkin lymphoma (NHL) and chronic lymphocytic leukemia/small lymphocytic lymphoma (CLL/SLL). The study aims to determine the maximum tolerated dose (MTD), maximum administered dose (MAD), recommended Phase 2 dose (RP2D), and pharmacokinetic profile of the drug. Additionally, preliminary antitumor activity will be characterized. The study is divided into 2 main parts: Part 1 "Monotherapy Dose Finding" and Part 2 "Monotherapy Dose Optimization."
This phase II trial studies how well pembrolizumab and external beam radiation therapy work in treating patients with non-Hodgkin lymphoma that has come back (relapsed) or does not respond to treatment (refractory). Immunotherapy with monoclonal antibodies, such as pembrolizumab, may help the body's immune system attack the cancer, and may interfere with the ability of tumor cells to grow and spread. Giving pembrolizumab and external beam radiation therapy may work better in treating patients with non-Hodgkin lymphoma than pembrolizumab alone.
This phase I trial studies the side effects and the best dose of alisertib when given together with vorinostat in treating patients with Hodgkin lymphoma, B-cell non-Hodgkin lymphoma, or peripheral T-cell lymphoma that has come back. Alisertib and vorinostat may stop the growth of cancer cells by blocking some of the enzymes needed for cell growth.
This phase I/II trial studies the side effects and the best dose of veliparib when given together with bendamustine hydrochloride and rituximab and to see how well they work in treating patients with lymphoma, multiple myeloma, or solid tumors that have come back or have not responded to treatment. Veliparib may stop the growth of cancer cells by blocking some of the enzymes needed for cell growth. Drugs used in chemotherapy, such as bendamustine hydrochloride, work in different ways to stop the growth of cancer cells, either by killing the cells or by stopping them from dividing. Monoclonal antibodies, such as rituximab, can block cancer growth in different ways. Some find cancer cells and help kill them or carry cancer-killing substances to them. Others interfere with the ability of cancer cells to grow and spread. Giving veliparib together with bendamustine hydrochloride and rituximab may kill more cancer cells.
This partially randomized clinical trial studies cholecalciferol in improving survival in patients with newly diagnosed cancer with vitamin D insufficiency. Vitamin D replacement may improve tumor response and survival and delay time to treatment in patients with cancer who are vitamin D insufficient.
This phase I clinical trial is studying the side effects and the best dose of lenalidomide after donor bone marrow transplant in treating patients with high-risk hematologic cancer. Biological therapies, such as lenalidomide, may stimulate the immune system in different ways and stop cancer cells from growing.
This phase I trial studies the side effects and best dose of dasatinib in treating patients with solid tumors or lymphomas that are metastatic or cannot be removed by surgery. Dasatinib may stop the growth of tumor cells by blocking some of the enzymes needed for cell growth.