View clinical trials related to Myelodysplastic Syndromes.
Filter by:This is a non-interventional post-authorization safety study (PASS) employing a cross sectional design to evaluate the effectiveness of the additional risk minimization measures (aRMMs) for REBLOZYL. A survey will be used to measure the knowledge and comprehension of the REBLOZYL aRMMs among European Economic Area (EEA) based healthcare professionals (HCPs). The PASS will be conducted among HCPs in a representative sample of EEA countries where REBLOZYL is commercially available, potentially including Austria, Germany, Italy, Norway, Sweden, the Netherlands, Poland, and Spain. Additional EEA countries may be included, as needed, based on commercial availability and reimbursement status.
This study assesses feasibility and patient acceptability of using a Fitbit to monitor step count and heart rate in transfusion dependent patients with myelodysplastic syndrome. Information from this study may help researchers understand if there is any correlation between activity level and anemia.
This research study is a genomic profiling and repository study for children and young adults who have leukemia, myelodysplastic syndrome (MDS) or myeloproliferative syndrome (MPS). Genes are the part of cells that contain the instructions which tell cells how to make the right proteins to grow and work. Genes are composed of DNA letters that spell out these instructions. Genomic profiling helps investigators understand why the disease develops and the instructions that led to its development. Understanding the genetic factors of the disease can also help investigator understand why the disease of some people can respond to certain therapies differently than others. The genomic profiling will be performed using bone marrow and blood samples that either have already been obtained during a previous clinical procedure or will be obtained at the time of a scheduled clinical procedure. Studying the genetic information in the cells of these samples will provide information about the origin, progression, and treatment of leukemia and myeloproliferative syndromes and myelodysplastic syndrome. Storing the bone marrow and blood samples will allow for additional research and genomic assessments to be performed in the future.
This is a Phase 1b, multicenter, open-label, PK, and safety study of multiple oral doses of oral decitabine and cedazuridine (formerly known as ASTX727) as a fixed-dose combination of decitabine 35 mg and cedazuridine 100 mg in cancer participants with moderate and severe hepatic impairment and cancer participants with normal hepatic function as control subjects. Participants with severe hepatic impairment will be enrolled only after the safety evaluation of at least 6 participants with moderate hepatic impairment has been determined and supports the enrollment of participants with severe hepatic impairment. Adult participants with acute myeloid lymphoma (AML), myelodysplastic syndrome (MDS), or solid tumors who are candidates to receive oral decitabine and cedazuridine will be enrolled in this study. Study duration is approximately up to 8 weeks.
This is a Phase 1b, multicenter, open-label, pharmacokinetic (PK), and safety study of multiple oral doses of oral decitabine and cedazuridine (formerly known as ASTX727) as a fixed-dose combination of decitabine 35 mg and cedazuridine 100 mg in cancer participants with severe renal impairment and cancer participants with normal renal function as matched control subjects. Adult participants with acute myeloid lymphoma (AML), myelodysplastic syndrome (MDS), or solid tumors who are candidates to receive oral decitabine and cedazuridine will be enrolled in this study. Study duration is approximately up to 8 weeks.
The purpose of this study is to provide new insights into the pathophysiology of emergency hematopoiesis detected in severe COVID-19 patients. The investigators aim to explore the ability of calprotectin to induce an immunosuppressive myeloid program at the hematopoietic stem and progenitor cell (HSPC) level, and to identify the receptor(s) involved in this effect. Since patients with a hematological malignancy demonstrate a very high propensity to develop a severe COVID-19, the investigators will explore how HSPCs collected from patients with a myeloid malignancy respond to calprotectin.
Study CC-91633-AML-001 is a Phase 1, open-label, dose escalation and expansion, first-in-human (FIH) clinical study of CC-91633 (BMS-986397) in participants with relapsed or refractory acute myeloid leukemia (R/R AML) or in participants with relapsed or refractory higher-risk myelodysplastic syndromes (R/R HR-MDS). The Dose Escalation part (Part A) of the study will enroll participants with R/R AML and R/R HR-MDS and will evaluate the safety and tolerability of escalating doses of CC-91633 (BMS-986397), administered orally, and determine the maximum tolerated dose (MTD) or preliminary recommended Phase 2 dose (RP2D) and schedule. Throughout the study, final decisions on dose escalation/de-escalation will be made by the safety review committee (SRC). Approximately 40 participants may be enrolled in Part A of the study. The expansion part (Part B) will confirm tolerability of the selected doses and schedules and evaluate whether efficacy is in a range that warrants further clinical development. Separate expansion cohorts for participants with R/R AML and R/R HR-MDS may enroll approximately 20 to 40 response evaluable participants per cohort. Parts A and B will consist of 3 periods: Screening, Treatment, and Follow-up.
Prognosis of patients undergoing salvage allogeneic stem cell transplantation for refractory leukemia or other refractory myeloid malignanies is poor. One of the approaches to augment graft-versus-leukemia effect the use of post-transplantation bendamustine in graft-versus-host disease prophylaxis. Despite high frequency of responses and durable remissions after this approach majority of patients develop a serious complication - cytokine release syndrome, which can be life-threatening in some patients. On the other hand post-transplantation cyclophocphamide was reported to abort cytokine release syndrome that sometimes occurs after graft transfusion in patients after haploidentical graft transfusion. The aim of this study is to evaluate if the combination of post-transplantation bendamustine (PTB) and post-transplantation cyclophosphamide (PTCY) facilitates comparable graft-versus leukemia effect to PTB, but with better safety profile and reduced incidence of severe cytokine release syndrome.
Haploidentical hematopoietic stem cell transplantation irrespective of the conditioning and graft-versus-host disease prophylaxis is associated with high frequency of primary and secondary graft failure. Different technologies of with replete or depleted graft are associated with 10-20% of graft failures. Fludarabine and busulfan conditioning is the most commonly used approach for a variety of disease. Furthermore combination of fludarabine and bendamustine was sufficient to facilitate engraftment in patients with chronic lymphocytic leukemia and lymphomas. The aim of the study is to evaluate whether addition of bendamustine to fladarabine and busulfan conditioning reduces the risk of primary graft failure after haploidentical allograft.
This study will be divided into two parts, Parts A and B and will enroll patients with relapsed/refractory AML or MDS/chronic myelomonocytic leukemia (CMML) patients who have failed up to 2 prior therapeutic regimens. Part A is a dose escalation study to explore the safety, efficacy, pharmacokinetic (PK) and pharmacodynamic (PD) profile of DSP107 when administered in combination with azacitidine (AZA). Part B is a dose escalation study to explore the safety, efficacy, PK and PD profile of DSP107 when administered in combination with AZA and venetoclax (VEN).