View clinical trials related to Myelodysplastic Syndromes.
Filter by:The study is designed as a Phase III, multicenter trial comparing outcomes after allogeneic hematopoietic stem cell transplantation (HCT) for acute myeloid leukemia (AML) or myelodysplastic syndrome (MDS) between patients receiving myeloablative conditioning (MAC) versus reduced intensity conditioning (RIC) regimens.
Background: - One way to treat certain cancers of the blood and immune system is to give a patient stem cells from the bone marrow of a donor whose genes are very similar but not identical to the patients. One problem with these transplants is that the new immune cells may not work as well in the recipient as they did in the donor. The result may be that the immune system will not work as well. This can increase the risk of severe infections and other complications. - Researchers are studying the use of drugs that lower hormone levels and may allow the immune system to recover in a way that improves white blood cell function. In this study they will be looking at the drug leuprolide, a drug that lowers estrogen or testosterone levels, to see if it might improve the function of the newly transplanted cells. Objectives: - To determine whether leuprolide improves immune system function after bone marrow transplant from a donor with similarities in their immune cells (matched to each other). - To evaluate the effectiveness of a nuclear medicine test with a radiotracer drug 3-deoxy-3 18F-fluorothymidine (FLT) in imaging studies. FLT will be used to image the immune system function in patients who have received bone marrow from the donor. Eligibility: - People between 15 (or as young as 9 in those who have gone through puberty) and 55 years of age. These patients must have acute myelogenous leukemia, acute lymphocytic leukemia, high-risk myelodysplastic syndrome, chronic myelomonocytic leukemia, or chronic myeloid leukemia. They must also be eligible for a bone marrow transplant. - Genetically similar donors for the patients who are eligible for a transplant. Design: - People taking part in the study will be screened with a physical examination, medical history, blood and urine tests, and imaging studies. Patients who are not in remission or who require a bone marrow donor search may receive chemotherapy first. - Donors will provide bone marrow for transplant according to standard bone marrow transplant (BMT) procedures. - All women and half of the men will receive regular leuprolide doses 2 weeks before BMT to suppress hormone function. - All recipients will receive 4 days of radiation followed by 2-4 days of chemotherapy before the bone marrow transplant (depending on age). Recipients will also receive other drugs to prevent transplant rejection and other complications of transplantation. - Recipients will be monitored in the hospital for 4 weeks after transplant with blood tests and other studies. - Some recipients will have an imaging study with FLT during the protocol. These imaging studies will take place before the transplant, on days 5 and 28 after transplant, and at a later time to be determined by the study researchers. - Following discharge, participants will be monitored closely for up to 6 months, with regular but less frequent followup visits for at least 5 years. Study-related medications, including vaccinations for the new immune system, will be provided by the National Institutes of Health during the hospital stay and after discharge.
Primary Outcome Measures: • To evaluate the efficacy of treatment with Azacitidine in patients with transfusion-dependent, low risk International Prognostic Scoring System (IPSS) 0 int-1, Myelodysplastic Syndrome (MDS) without chromosome 5 (5q) deletion. The main objective will be based on the erythroid haematologic response according to International Working Group (IWG) 2006 criteria. Secondary Outcome Measures: - Haematologic response, bases on the following parameters: platelets, and neutrophils according to International Working Group (IWG) Criteria. - Medullary and cytogenetic response according to International Working Group (IWG) 2006 criteria. - The effect of treatment response on quality of life, through the Functional Assessment of Cancer Therapy-Anemia (FACT-an) questionnaire. - Overall survival, Event-Free Survival and the Acute Leukaemia Transformation Rate.
In this study, patients will receive a myeloablative preparative regimen consisting of fludarabine and total body irradiation (TBI), followed by a T cell replete, mobilized peripheral blood stem cell (PBSC) allograft from a partially matched related donor. All patients will receive post-transplant Cy in addition to standard post transplant immunosuppression with tacrolimus and MMF. The treatment protocol will be essentially identical to the prior study, with the exception of the substitution of TBI for Busulfan. The investigators hypothesize that this change will significantly reduce the risk of HC, while maintaining the efficacy of the transplant.
Allogeneic blood stem cell transplant remains the only potential curative treatment for myelodysplastic syndromes (MDS) to date. Pre-transplant induction chemotherapy with leukemia-type regimens is associated with significant toxicity and even death. The hypomethylating agents decitabine and 5-azacytidine have been shown in studies to cause improved hematologic parameters and partial or complete responses in patients with high risk MDS compared to standard therapy. In contrast to leukemia-type chemotherapy, decitabine is associated with a relatively low risk of toxicity. We therefore propose to treat transplant-eligible MDS patients with Decitabine as induction therapy and a bridge to transplant. Hypothesis: 1. Decitabine is able to reduce disease burden as measured by blood and marrow blast counts prior to allogeneic hematopoietic stem cell transplant to below 5%. 2. Decitabine is well-tolerated by patients with high-risk MDS and will be a safe induction agent and bridge prior to allogeneic transplant in transplant-eligible patients.
Recently, it has been demonstrated that iron overload is associated with the appearance of labile plasma iron (LPI). LPI is redox active and is rapidly taken up by cells, leading to a rise in the labile iron pool (LIP) and catalyzing generation of reactive oxygen species (ROS), which can lead to cellular damage. The LPI data are mostly derived from thalassemia iron overload research , however, there are a few data describing LPI and its correlations with the classical iron overload parameters (ferritin, TSAT) in acute anemias such as MDS Therefore we are going to assess LPI in iron overloaded myelodysplastic syndromes (MDS) (low and high risk) and primary myelofibrosis, in order to assess whether it can be used as alternative to the routinely used parameters; TSAT and ferritin levels.
The objective of the study is to evaluate and compare the frequency and severity of GI adverse events in different dose administration regimens. The patient population consists of low or intermediate (int-1) risk myelodysplastic syndrome (MDS) patients with transfusional iron overload. The study patients are randomized to either a morning dose of 20 mg/kg/day deferasirox or an evening dose of the same. Patients are then followed up for 6 months for any GI events and are assessed using patient reported outcomes tools e.g. a patient diary.
This is a phase 2 single arm study in which fourteen MDS patients with Trisomy 8 or classified as Intermediate-1, 2, or High risk who meet all other inclusion/exclusion criteria will receive ON 01910.Na 1800 mg/24h as an intravenous continuous infusion (IVCI) over 72 hours every other week for the first four 2-week cycles and every 4 weeks afterwards.
A phase I study of azacitidine with Ceplene/interleukin-2 will first evaluate the safety and tolerability of this regimen in patients with higher risk myelodysplastic syndromes (MDS) who achieved a hematological response after 6 cycles of azacitidine. After approval by an independent Data Safety Monitoring Board (DSMB), the phase I study will be followed by an open label randomized phase II study designed to characterize the efficacy, safety, and tolerability of the addition of Ceplene/interleukin-2 to azacytidine in patients with higher risk myelodysplastic syndrome (MDS) who achieved a hematological response after 6 cycles of azacitidine.
A common problem after stem cell transplant is graft-versus-host-disease (GVHD). GVHD is a complication of transplantation where the donor graft attacks and damages some of your tissues. After stem cell transplant, all patients receive prophylactic medications against GVHD. In this research study, we are studying the safety and effectiveness of a bortezomib based GVHD prophylaxic drug combination in participants after myeloablative allogeneic stem call transplantation from a matched unrelated donor, mismatched related or unrelated donor.