View clinical trials related to Myelodysplastic Syndrome.
Filter by:RATIONALE: Bortezomib and midostaurin may stop the growth of cancer cells by blocking some of the enzymes needed for cell growth. Drugs used in chemotherapy, such as mitoxantrone hydrochloride, etoposide, and cytarabine, work in different ways to stop the growth of cancer cells, either by killing the cells or by stopping them from dividing. Giving bortezomib and midostaurin together with combination chemotherapy may kill more cancer cells. PURPOSE: This phase I trial is studying the side effects and best dose of bortezomib when given together with midostaurin with or without combination chemotherapy in treating patients with relapsed or refractory acute myeloid leukemia.
This is a non-blinded, non-randomized pharmacokinetic study to determine the oral bioavailability of clofarabine, and the effect of cimetidine on clofarabine pharmacokinetics in patients with poor-risk acute leukemias and myelodysplastic syndrome (MDS).
This phase II clinical trial is studying how well giving busulfan, fludarabine phosphate, and anti-thymocyte globulin followed by donor stem cell transplant and azacitidine works in treating patients with high-risk myelodysplastic syndrome and older patients with acute myeloid leukemia. Giving low doses of chemotherapy, such as busulfan and fludarabine phosphate, before a donor stem cell transplant helps stop the growth of cancer cells. It also stops the patient's immune system from rejecting the donor's stem cells. The donated stem cells may replace the patient's immune cells and help destroy any remaining cancer cells (graft-vs-tumor effect). Sometimes the transplanted cells from a donor can also make an immune response against the body's normal cells. Giving anti-thymocyte globulin before transplant and giving azacitidine, tacrolimus, and methotrexate after the transplant may stop this from happening.
The first goal of this clinical research study is to find the highest safe dose of BP1001, a liposomal Growth Factor Receptor Bound Protein-2 antisense oligodeoxynucleotide (L-Grb2 AS), for patients with Philadelphia Chromosome positive CML, AML, ALL and MDS. The response of the leukemia to this treatment will also be studied. The second goal of this clinical research study is to evaluate the safety and toxicity of the combination of BP1001 and concurrent low-dose ara-C (LDAC) in patients with AML.
The purpose of the study is to determine the bioavailability of Azacitidine for Injection relative to Vidaza® in MDS patients under fasting conditions. The data will be evaluated statistically to determine if the products meet bioequivalence criteria.
The investigators are interested in identifying patient-specific factors related to donor chimerism in patients who receive nonmyeloablative hematopoietic stem cell transplants from haploidentical donors. We will look how patients' bodies break down and immediately respond to cyclophosphamide, fludarabine and mycophenolate mofetil.
This research is being done to learn more about reduced-intensity bone marrow transplantation (BMT), also known as a "mini" transplant for patients with blood cancers, using bone marrow from a relative. The main goal of the study is to determine how quickly the donor's bone marrow "takes" in your body. Other goals include describing how many people accept the bone marrow and how quickly the blood counts come up; describing Graft-versus-host disease (GVHD) and other complications; and describing how many people survive without progressive cancer and survive overall
The purpose of this study is to assess the response rate at 6 months in Myelodysplastic Syndrome (MDS) patients, Chronic Myelomonocytic Leukaemia (CMML-2) patients, and Acute Myeloid Leukaemia (AML) patients with up to 30% bone marrow blasts, treated with low-dose decitabine who have previously failed therapy with 5-azacitidine.
The purpose of this research is to evaluate the use of lenalidomide and prednisone in people with Myelodysplastic Syndrome (MDS). Lenalidomide is a drug that alters the immune system and it may also interfere with the development of tiny blood vessels that help support tumor growth. Therefore, in theory, it may reduce or prevent the growth of cancer cells. Lenalidomide is approved by the U.S. Food and Drug Administration (FDA) for the treatment of specific types of myelodysplastic syndrome (MDS) and in combination with dexamethasone for people with multiple myeloma (MM) who have received at least 1 prior therapy. MDS and MM are cancers of the blood. It is currently being tested in a variety of cancer conditions. As it is being used in this study it is considered an investigational use. An "investigational use" is a use that is being tested and is not approved by the FDA. Prednisone is approved by the FDA to treat numerous conditions. In addition, prednisone is approved by the FDA to treat Low or Intermediate-1 IPSS Risk, non-del (5q) MDS. "Study drug" refers to the combination of lenalidomide and prednisone.
The purpose of this study is to find out the effects of using a system called CliniMACS to remove Tcells from blood stem cells. Removing T-cells may help stop a side effect called Graft-Versus-Host Disease (GVHD). Some studies have been done with CliniMACS, but the Food and Drug Administration (FDA) has not yet approved it.