View clinical trials related to Myelodysplastic Syndromes.
Filter by:The study's primary objective [in a population of patients with MDS after failure of treatment with azacitidine (AZA) or decitabine (DAC)], is to compare the overall survival (OS) of patients in the rigosertib group vs the Physician's Choice group, in all patients and in a subgroup of patients with IPSS-R very high risk.
To see if it is possible to use short-duration tacrolimus after a peripheral blood stem cell transplant in certain malignancies that are considered difficult to engraft.
This phase Ib trial studies the side effects and best dose of ibrutinib when given together with azacitidine in treating patients with myelodysplastic syndrome that is likely to occur or spread (higher risk) and who were previously treated or untreated and unfit for or refused intense therapy. Ibrutinib and azacitidine may stop the growth of cancer cells by blocking some of the enzymes needed for cell growth.
This is a Phase I/II trial to determine safety, clinical efficacy and feasibility of a gene-modified WT1 TCR therapy in patients with myelodysplastic syndrome (MDS) and acute myeloid leukaemia (AML). Patient's white blood cells (T cells) will be modified by transferring a gene which enables them to make a new T cell receptor (TCR) that can recognize fragments of a protein called WT1 (Wilms' tumour 1) which is present at abnormally high levels on the surface of myelodysplastic and leukaemic cells. In this trial, approximately 25 participants with an Human Leukocyte Antigen A2 (HLA-A*0201) tissue type who have failed to achieve or maintain an IWG defined response following hypomethylating agent therapy will be recruited.
This is an open-label, multicenter, dose-escalation Phase 1/1b study in patients with acute myelogenous leukemia (AML)/MDS or non-Hodgkin Lymphoma (NHL), intended to investigate safety, pharmacokinetics, and the pharmacodynamic effects of FT-1101 administered via one or more intermittent dosing schedules alone and in combination with azacitidine. Once the MTD has been established for a treatment cohort, up to 20 additional patients may be enrolled in up to 4 expansion cohorts each of select populations of patients with either AML/MDS or NHL at the recommended dose for future studies to confirm safety.
The purposes of this study are: 1. To identify and quantify the health utilities and quality of life experienced by patients who have been diagnosed with MDS and what are their predictors. 2. Measure the effects of patient related factors like frailty and comorbidity on quality of life and overall survival or toxicity to therapy. 3. Assess how quality of life changes over time and what are its predictors. This will be valuable information that may guide therapy, transfusion practices, etc., as MDS is a chronic, incurable disease that is often progressive.
This phase II trial studies how well nivolumab works in treating patients with acute myeloid leukemia that has decreased or disappeared but may still be in the body (remission), and is at high risk for returning (relapse). 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.
This phase II trial studies the side effects of nivolumab and/or ipilimumab with or without azacitidine and to see how well they work in treating patients with myelodysplastic syndrome. Monoclonal antibodies, such as nivolumab and ipilimumab, may block cancer growth in different ways by targeting certain cells. Drugs used in chemotherapy, such as azacitidine, work in different ways to stop the growth of cancer cells, either by killing the cells, by stopping them from dividing, or by stopping them from spreading. Giving nivolumab and/or ipilimumab with or without azacitidine may work better in treating myelodysplastic syndrome.
This phase I trial studies the side effects and best dose of anti-PR1/HLA-A2 monoclonal antibody Hu8F4 (Hu8F4) in treating patients with malignancies related to the blood (hematologic). Monoclonal antibodies, such as Hu8F4, may interfere with the ability of cancer cells to grow and spread.
This phase III trial studies response-based chemotherapy in treating newly diagnosed acute myeloid leukemia or myelodysplastic syndrome in younger patients with Down syndrome. Drugs used in chemotherapy work in different ways to stop the growth of cancer cells, either by killing the cells, by stopping them from dividing, or by stopping them from spreading. Response-based chemotherapy separates patients into different risk groups and treats them according to how they respond to the first course of treatment (Induction I). Response-based treatment may be effective in treating acute myeloid leukemia or myelodysplastic syndrome in younger patients with Down syndrome while reducing the side effects.