Brief Summary
The purpose of this study is to determine if vimseltinib is safe, tolerable and works effectively to treat adults with active moderate to severe cGVHD. Participants will be treated with vimseltinib in 28-day treatment cycles for approximately 2 years.
Protocol Interventions
Drug: Vimseltinib
Brief Summary
The goal of this clinical trial is to test BSB-1001 which is a new type of cellular therapy to treat blood cancers (AML, ALL and MDS). It will evaluate the safety of BSB-1001 and also determine whether it works to prevent relapse of your cancer.
Protocol Interventions
Drug: SOC+BSB-1001 Expansion Dose
Brief Summary
Treatment for relapsed/refractory multiple myeloma continues to evolve with the approval of highly effective anti-BCMA CAR T therapies in recent years. However, despite the high prevalence of renal insufficiency in this population, pivotal clinical trials have excluded patients with impaired renal function, leading to an urgent, unmet clinical need to develop safe and effective lymphodepleting regimens prior to CAR T administration for this population. In addition, renal insufficiency is linked to poor disease-related outcomes and is highly associated with several underserved populations.
This study is testing the hypotheses that:
1. low-dose total body irradiation (TBI) in combination with cyclophosphamide (Cy) as lymphodepletion prior to administration of cilta-cel will be safe and tolerable in patients with multiple myeloma who have impaired renal function
2. low-dose TBI-Cy as lymphodepletion prior to cilta-cel will result in comparable CAR T expansion/persistence and disease response rates as those seen with standard lymphodepleting chemotherapy (fludarabine / cyclophosphamide).
Protocol Interventions
Drug: Cyclophosphamide, Drug: Ciltacabtagene Autoleucel, Radiation: Total body irradiation
Brief Summary
BMT CTN 2207 will investigate the use of marrow transplantation for treatment of severe aplastic anemia that has not previously been treated.
Protocol Interventions
Drug: Unrelated donor bone marrow transplant
Brief Summary
This trial is an adaptive platform trial. The structure of the protocol allows the trial to evolve over time. Multiple investigational arms will be included within the trial under a Master Protocol (MP). These investigational arms may be added as appendices at different times depending on whether they are trial-ready and whether accrual in the trial will support another arm. Accrual to an arm will terminate in accord with the arm’s appendix to the Master Protocol.
The purpose of this proposed structure is to support the recurrent research challenge of efficiently evaluating what is the best therapy for a particular patient.
Protocol Interventions
Drug: Teclistamab
Brief Summary
This phase II trial compares iberdomide maintenance therapy to disease monitoring for improving survival in patients who have received idecabtagene vicleucel (a type of chimeric antigen receptor T-cell [CAR-T] therapy) for multiple myeloma. The usual approach after treatment with idecabtagene vicleucel is to monitor the multiple myeloma without giving myeloma medications. There is currently no medication approved specifically for use after idecabtagene vicleucel treatment. Upon administration, iberdomide modifies the immune system and activates immune cells called T-cells, which could enhance the effectiveness of idecabtagene vicleucel. Iberdomide may keep multiple myeloma under control for longer than the usual approach (disease monitoring) after idecabtagene vicleucel, and may help multiple myeloma patients live longer.
Protocol Interventions
Procedure: Biospecimen Collection, Procedure: Bone Marrow Aspiration, Procedure: Bone Marrow Biopsy, Procedure: Computed Tomography, Drug: Iberdomide, Procedure: Magnetic Resonance Imaging, Procedure: Positron Emission Tomography, Procedure: Skeletal Survey X-Ray
Brief Summary
This phase II MyeloMATCH treatment trial compares the usual treatment of azacitidine and venetoclax to the combination treatment of azacitidine, venetoclax and gilteritinib in treating older and unfit patients with acute myeloid leukemia and FLT3 mutations. Azacitidine is a drug that is absorbed into DNA and leads to the activation of cancer suppressor genes, which are genes that help control cell growth. Venetoclax is in a class of medications called B-cell lymphoma-2 (BCL-2) inhibitors. It may stop the growth of cancer cells by blocking Bcl-2, a protein needed for cancer cell survival. Gilteritinib is in a class of medications called kinase inhibitors. It works by blocking the action of a certain naturally occurring substance that may be needed to help cancer cells multiply. This study may help doctors find out if these different approaches are better than the usual approaches. To decide if they are better, the study doctors are looking to see if the study drugs lead to a higher percentage of patients achieving a deeper remission compared to the usual approach.
Protocol Interventions
Drug: Azacitidine, Procedure: Biospecimen Collection, Procedure: Bone Marrow Aspiration, Procedure: Bone Marrow Biopsy, Drug: Gilteritinib, Drug: Venetoclax
Brief Summary
This study evaluates an individualized approach combining highly active maintenance treatment with elranatamab with peripheral blood-based clonotypic measurable residual disease (MRD) testing in patients with newly diagnosed multiple myeloma. The overall goal is to generate efficacy data for a personalized maintenance approach using bone marrow-based MRD testing (clonoSEQ) to guide post-autologous hematopoietic cell transplant (AHCT) maintenance with elranatamab for this patient population.
Protocol Interventions
Drug: Elrantamab, Device: clonoSEQ
Brief Summary
This MyeloMATCH Master Screening and Reassessment Protocol (MSRP) evaluates the use of a screening tool and specific laboratory tests to help improve participants’ ability to register to clinical trials throughout the course of their myeloid cancer (acute myeloid leukemia or myelodysplastic syndrome) treatment. This study involves testing patients’ bone marrow and blood for certain biomarkers. A biomarker (sometimes called a marker) is any molecule in the body that can be measured. Doctors look at markers to learn what is happening in the body. Knowing about certain markers can give doctors more information about what is driving the cancer and how to treat it. Testing patients’ bone marrow and blood will show doctors if patients have markers that specific drugs can target. The marker testing in this study will let doctors know if they can match patients with a treatment study (myeloMATCH clinical trial) that tests treatment for the type of cancer they have or continue standard of care treatment with their doctor on the Tier Advancement Pathway (TAP).
Protocol Interventions
Other: Best Practice, Procedure: Mutation Carrier Screening
Brief Summary
This phase II MyeloMATCH treatment trial compares cytarabine with daunorubicin versus cytarabine with daunorubicin and venetoclax versus venetoclax with azacitidine for the treatment of younger patients with intermediate risk acute myeloid leukemia (AML). Cytarabine is a drug that inhibits some of the enzymes needed for deoxyribonucleic acid (DNA) replication and repair and can slow or stop the growth of cancer cells. Daunorubicin is a drug that blocks a certain enzyme needed for cell division and DNA repair, and it may kill cancer cells. Venetoclax is in a class of medications called B-cell lymphoma-2 (BCL-2) inhibitors. It may stop the growth of cancer cells by blocking Bcl-2, a protein needed for cancer cell survival. Azacitidine is a drug that interacts with DNA to activate tumor-suppressing genes, resulting in an anti-tumor effect. Adding venetoclax to cytarabine and daunorubicin, and adding venetoclax to azacitidine, may work better than the usual treatment of cytarabine with daunorubicin alone. To decide if they are better, the study doctors are looking to see if venetoclax increases the rate of elimination of AML in participants by 20% or more compared to the usual approach.
Protocol Interventions
Procedure: Biospecimen Collection, Procedure: Bone Marrow Aspiration, Drug: Cytarabine, Drug: Daunorubicin Hydrochloride