View clinical trials related to Myelodysplastic Syndrome.
Filter by:The goal of this Pilot-study is to evaluate the response of unselected MDS patients to temsirolimus a drug approved for the treatment of renal cell cancer. It is planned to give temsirolimus at a weekly dose of 25 mg as intravenous infusion for a maximum duration of 12 months. Regular bone marrow biopsies are planned for controlling MDS response.
Researchers from Memorial Sloan-Kettering Cancer Center, in collaboration with The New York Presbyterian Hospital-Weill Medical College of Cornell University, are conducting a study of a medicinal mushroom extract called Maitake (pronounced my-tock-e). Laboratory studies show that Maitake can reduce the growth of cancer in animals. The Maitake does not kill cancer cells directly. It is believed to work through the immune system (the body's defense system against infection). Our test tube, animal and human dose determining studies show that Maitake can enhance immune function. We are conducting this study to see whether Maitake improves the neutrophil count and function in patients with MDS. The neutrophils are white blood cells which help to fight infection.
Multi-center, survival data collection in subjects previously enrolled in study NCT00065156 (Celgene Protocol CC-5013-MDS-003).
The aim of this study is to evaluate the toxicity and therapeutic efficacy of erlotinib in high-risk myelodysplastic syndrome (MDS) patients (with at least 10% of bone marrow blasts) ineligible for or having failed intensive chemotherapy and ineligible or after failure of treatment with a hypomethylating agent.
RATIONALE: Belinostat and bortezomib may stop the growth of cancer cells by blocking some of the enzymes needed for cell growth. Giving belinostat together with bortezomib may kill more cancer cells. PURPOSE: This phase I trial is studying the side effects and best dose of giving belinostat together with bortezomib in treating patients with relapsed or refractory acute leukemia or myelodysplastic syndrome.
Patients with refractory hematologic malignancies, including those who develop recurrent disease after allogeneic hematopoietic stem cell transplantation (HSCT) have a dismal prognosis. Historically, both regimen-related mortality and disease recurrence have been significant causes of treatment failure in this heavily pre-treated patient population. Novel therapeutic agents that target molecular signaling mechanisms and increase the sensitivity of leukemic cells to apoptosis may clearly play a role in this setting. This study hypothesizes that interrupting the SDF-1/CXCR4 axis using the selective CXCR4 antagonist plerixafor may be useful as a leukemic stem cell mobilizing agent for patients who are refractory to standard dose chemotherapy and in relapse after an allogeneic transplant. This hypothesis is based on the dependence of leukemia cells on MSCs for survival signals as described above and on the preclinical data that suggest increased efficacy by antileukemia agents when leukemia cells are separated from MSCs. In the present trial, the study proposes to add plerixafor to enhance the conditioning regimen cytotoxicity. At this time the goal is to determine the maximum tolerated dose (MTD) of plerixafor through the process of dose limiting toxicity (DLT) evaluation. Pharmacokinetic studies will be conducted. Additional studies will quantify and the content of leukemia cells and key regulatory and effector T cell populations in the bone marrow and blood before and after exposure to this medication. If the observed outcomes of this trial are promising, it could serve as a platform on which to study further use of plerixafor as a complimentary agent with conditioning as well as other chemotherapeutic regimens for patients with relapsed or refractory hematologic malignancies.
This study aims to determine the maximal tolerated dose (MTD) and dose limiting toxicities (DLTs) of low dose IV clofarabine for MDS patients after treatment failure of azacitidine.
This is a multicenter, multinational, non-randomized, non-controlled open-label phase II trial to evaluate the safety and efficacy of treosulfan in a combination regimen with fludarabine as conditioning therapy prior to allogeneic stem cell transplantation (SCT) in patients with MDS. The aim is to demonstrate a clinical benefit compared to historical data with intravenous busulfan.
This is an open label, multicenter Phase 1 dose escalation study evaluating five doses of ezatiostat in combination with lenalidomide in patients with non-del(5q) low to intermediate 1 risk MDS. The HI-E, HI-N, HI-P rates [by International Working Group (IWG) 2006 criteria] and safety of each treatment group will be evaluated to select the optimal dose of ezatiostat in combination with lenalidomide for future studies.
To evaluate the overall response rate of the combination of 5-azacitidine + Lenalidomide in high risk MDS patients (INT-2 and High risk defined by IPSS), and patients with low and int-1 who are considered to be at high risk due to unfavorable additional factors. - To evaluate the safety of the combination of 5-azacitidine + Lenalidomide in high risk MDS patients. - To evaluate the hematological improvement rate. - To evaluate the cytogenetic response rate. - To evaluate the Progression free survival (PFS). - To assess Quality of life.