View clinical trials related to Myelodysplastic Syndrome.
Filter by:The objective of the phase I part of the trial is the determination of the maximum tolerated dose (MTD) of TCP (Tranylcypromine) in combination with fixed-dose ATRA (all-trans-retinoic acid) and with fixed-dose AraC (Cytarabine) and to derive the recommended phase II dose (RP2D) in patients with non-APL AML or MDS for whom no standard treatment is available or who failed azanucleoside treatment. The objective of the phase II part of the trial is a first evaluation of the efficacy of TCP at the RP2D in combination with fixed-dose ATRA and with fixed-dose AraC as basis for further investigations of TCP
This is a phase 1/2 study to evaluate the combination of vadastuximab talirine (SGN-CD33A; 33A) and azacitidine in subjects with previously untreated International Prognostic Scoring System (IPSS) Intermediate-2 or high risk myelodysplastic syndrome (MDS).
This phase IIa trial studies how well guadecitabine works in treating patients with acute myelogenous leukemia and myelodysplastic syndrome that has returned after a period of improvement after allogeneic stem cell transplant. Guadecitabine may stop the growth of cancer cells by blocking some of the enzymes needed for cell growth. Sometimes the transplanted cells from a donor can make an immune response against the body's normal cells (called graft-versus-host disease). Giving guadecitabine before the transplant may stop this from happening. Once the donated stem cells begin working, the patient's immune system may see the remaining cancer cells as not belonging in the patient's body and destroy them. Giving an infusion of the donor's white blood cells (donor lymphocyte infusion) may boost this effect.
The purpose of this research study is to evaluate safety, pharmacokinetics, pharmacodynamics, and preliminary efficacy of the investigational drug PLX51107 in subjects with advanced solid tumors (including lymphoma), and advanced hematological malignancies
This phase I trial studies the side effects and best dose of anti-cluster of differentiation (CD)47 monoclonal antibody Hu5F9-G4 in treating patients with haematological malignancies including acute myeloid leukemia that has returned after a period of improvement (relapsed) or has not responded to previous treatment (refractory), or high risk myelodysplastic syndrome. Monoclonal antibodies, such as anti-CD47 monoclonal antibody Hu5F9-G4, block cancer growth in different ways by targeting certain cells.
Cancer is the uncontrolled growth of human cells. The growth of normal human cells is controlled by multiple mechanisms. Panobinostat belongs to a class of chemotherapy drugs called "histone deacetylase (HDAC) inhibitors." HDAC inhibitors like panobinostat block enzymes known as histone deacetylases, which stops cancer cells from dividing and causes them to die. Fludarabine and cytarabine are chemotherapy drugs that are commonly used to treat pediatric patients with refractory or relapsed acute myeloid leukemia (AML) or myelodysplastic syndrome (MDS). The purpose of this study is to test the safety of panobinostat and to find the highest dose of panobinostat that can be given safely when it is combined with fludarabine and cytarabine. This pilot study will be done in two parts: The goal of Part 1 of the study is to find the highest tolerable dose of panobinostat that can be given to patients with AML or MDS, when it is combined with fludarabine and cytarabine. Once that dose is determined, participants will be enrolled on Part 2: Dose Expansion, to look at the effect of the panobinostat/fludarabine/cytarabine combination in patients with leukemia/MDS. PRIMARY OBJECTIVE: - Determine a tolerable dose of panobinostat when given in combination with fludarabine and cytarabine in pediatric patients with relapsed or refractory AML or MDS. SECONDARY OBJECTIVES: - Characterize the pharmacokinetics of panobinostat after the first dose and at steady-state. - Estimate the overall response rate to the combination of panobinostat, fludarabine, and cytarabine.
Several previous studies (clinical and non-clinical) hypothesize that treatment with deferasirox causes a hematological improvement in transfused patients with low and intermediate-1 risk myelodysplastic syndrome. The purpose of this study was to assess the presence of genetic biomarkers predictive for hematologic response by the use of gene expression profiling of bone marrow aspirates obtained from MDS patients with or without hematological response.
Current protocols use G-CSF to mobilize hematopoietic progenitor cells from matched sibling and volunteer unrelated donors. Unfortunately, this process requires four to six days of G-CSF injection and can be associated with side effects, most notably bone pain and rarely splenic rupture. BL-8040 is given as a single SC injection, and collection of cells occurs on the same day as BL-8040 administration. This study will evaluate the safety and efficacy of this novel agent for hematopoietic progenitor cell mobilization and allogeneic transplantation based on the following hypotheses: - Healthy HLA-matched donors receiving one injection of BL-8040 will mobilize sufficient CD34+ cells (at least 2.0 x 10^6 CD34+ cells/kg recipient weight) following no more than two leukapheresis collections to support a hematopoietic cell transplant. - The hematopoietic cells mobilized by SC BL-8040 will be functional and will result in prompt and durable hematopoietic engraftment following transplantation into HLA-identical siblings with advanced hematological malignancies using various non-myeloablative and myeloablative conditioning regimens and regimens for routine GVHD prophylaxis. - If these hypotheses 1 and 2 are confirmed after an interim safety analysis of the data, then the study will continue and include recruitment of haploidentical donors.
The purpose of this study is to see if exercise fitness testing is feasible and safe in persons over 21 years of age who have been diagnosed with a hematological malignancy and are scheduled to undergo a hematopoietic stem cell transplant (HCT). Assessments in this study will look at the capacity of the body before transplantation to see if these measures can help predict how patients do after transplant.
This trial will evaluate the safety and efficacy of a reduced intensity allogeneic HSCT from partially HLA-mismatched first-degree relatives utilizing PBSC as the stem cell source. The primary objective of the study is to estimate the incidence of graft rejection and acute GVHD. A secondary objective will be to estimate the incidence of the relapse, NRM, OS, chronic GVHD and EFS.