View clinical trials related to Myelodysplastic Syndrome.
Filter by:This is a Phase I study designed to determine the MTD and assess the toxicity associated with clofarabine followed by fractionated cyclophosphamide in patients > 1 year of age or < 21 years of age with relapsed or refractory acute leukemias. There will be 25 to 35 patients enrolled. Cohorts of 3 to 6 patients each will receive escalated doses of clofarabine followed by fractionated cyclophosphamide until the MTD is reached. There will be no intra-patient dose escalation. Single-agent cyclophosphamide will be administered by 2-hour IVI on Day 0 of cycle 1. On Days 1, 2, and 3 and Days 8, 9, and 10 clofarabine will be administered by IVI 2 hours before each dose of cyclophosphamide (see the treatment schema below). A cycle is defined as 28 days.
The purpose of this study is to determine whether Clofarabine in combination with Busulfan is effective as a preparative transplant regimen for the treatment of leukemia and myelodysplastic syndromes
This randomized phase III trial studies lenalidomide to see how well it works with or without epoetin alfa in treating patients with myelodysplastic syndrome and anemia. Lenalidomide may stop the growth of myelodysplastic syndrome by blocking blood flow to the cells. Colony stimulating factors, such as epoetin alfa, may increase the number of immune cells found in bone marrow or peripheral blood. It is not yet known whether lenalidomide is more effective with or without epoetin alfa in treating patients with myelodysplastic syndrome and anemia.
Lenalidomide has shown significant efficacy in the treatment of anemia associated with both 5q- and non 5q- MDS patients. The mechanism(s) of action of lenalidomide in MDS is still to be determined, but given the differences in response rates seen, it is probable that the mechanism is different for patients with 5q- disease compared to non 5q- patients. T-cell mediated activation of intramedullary apoptosis in patients with early MDS leading to impaired hematopoiesis has been well described. Immunomodulation with agents such as ATG, cyclosporine and thalidomide have demonstrated clear activity in some patients with MDS. Lenalidomide, among its many effects, is a potent immunomodulator, which may contribute to its ability to improve red blood cell counts in patients with MDS. It is possible that this effect could be augmented with the addition of cyclosporine A (CSA), in a similar manner to CSA effects in patients with other bone marrow failure syndromes such as aplastic anemia. Subjects will be treated with lenalidomide 10 mg PO daily days 1-28 of a 28-day cycle. Cyclosporine A will be started on day 1 of cycle 2 (day 29) at a dose of 5 mg/kg per day given orally in 2 divided doses. Cyclosporine A levels will be assessed weekly and doses will be adjusted to maintain a serum trough level between 100-450 mg/ml. Patients will continue on therapy for minimum of 16 weeks unless toxicity occurs which precludes continuation on therapy, disease progression and/or patient withdrawal of consent. Patients not achieving response after completing 16 weeks of therapy will discontinue treatment. Patients achieving response will continue therapy until disease progression, unacceptable toxicity or loss of response.
The purpose of this study is to: - Test the safety of the research study drug, lenalidomide, when given with Idarubicin and Cytarabine - See how many respond to combination treatment with lenalidomide, Idarubicin and Cytarabine - See how long people respond to this combination therapy - See how long people live after being treated with this combination of drugs
This randomized allogeneic transplantation protocol compares i.v. Treosulfan-based conditioning therapy with reduced intensity i.v. Busulfan-based conditioning in adult AML and MDS patients at increased risk for standard conditioning therapies. The protocol is based on results of previous phase I/II trials evaluating Treosulfan/Fludarabine conditioning prior to allogeneic haematopoietic stem cell transplantation. The reference arm (reduced intensity i.v. Busulfan/Fludarabine) is considered to be accepted medical practice for the study patient population.
The purpose of this research study is to determine the safety of the combination of RAD001 and PKC412 as a cancer treatment, and to establish the highest dose of RAD001 that can be given in conjunction with PKC412. These drugs have been used in other research trials for individuals with solid and hematology malignancies. Past research on PKC412 shows that it blocks the abnormal functioning of an enzyme called FLT3. FLT3 is found in your cells in either a normal (wild type) or genetically changed form and plays a role in the survival and growth of AML cells. RAD001 is an inhibitor of a central growth pathway that involves the protein MTOR. The MTOR pathway is overactive in cancer cells, causing the cells to grow abnormally. By inhibiting the abnormal growth activity of the MTOR pathway, RAD001 slows down and possibly stops the growth of cancer cells.
RATIONALE: Bortezomib and vorinostat may stop the growth of cancer cells by blocking some of the enzymes needed for cell growth. Giving bortezomib together with vorinostat may kill more cancer cells. PURPOSE: This phase II trial is studying how well giving bortezomib together with vorinostat works in treating patients with high-risk myelodysplastic syndrome or acute myelogenous leukemia.
The goal of this research study is to determine if it is feasible to collect leukemia cells from patients ahead of time (before they undergo further treatments) so that these cells (after being radiated so they will no longer grow or divide) can be given back to them as a cancer vaccine if/after the participant receives a bone marrow or blood stem cell transplant in the future. The purpose of the research study will be to collect, freeze and store leukemia calls from participants blood or bone marrow. This study is a companion study to a vaccine study.
The purpose of this research is to find the most effective and least toxic way to prevent GVHD after BMT.