View clinical trials related to Myelodysplastic Syndromes.
Filter by:The primary objective of this study is to compare safety and efficacy of a haploidentical T-cell depleted HSCT and adjunctive treatment with ATIR101 versus a haploidentical T cell replete HSCT with post-transplant administration of high dose cyclophosphamide (PTCy) in patients with a hematologic malignancy. An additional objective of the study is to compare the effect of the two treatments on quality of life.
The outcome of HMA-refractory patients with MDS or AML is dismal with a median survival of 5 months after failure, representing a significant unmet medical need due to the very limited treatment options. In this context, a specific targeting of the leukemic stem cell (LSC) seems a promising option to selectively combat the leukemic progenitor cells. In fact, CD123 is overexpressed in AML and MDS progenitors making it an attractive target for immunotherapy-based approaches. JNJ-56022473 is a promising compound that has been engineered with regard to this strategy and the current phase II trial has the aim to evaluate the overall hematological response rate at 3 months in HMA refractory/relapsed AML and MDS patients.
This is a single center pilot study of a non-myeloablative umbilical cord blood transplant for the treatment of a hematological malignancy with a single infusion of T regulatory (Treg) given shortly after UCB transplantation.
This phase Ib/II trial studies the best dose and side effects of avelumab when given together with azacitidine and to see how well they work in treating patients with acute myeloid leukemia that is not responding to treatment or has come back. Monoclonal antibodies, such as avelumab, may interfere with the ability of cancer cells to grow and spread. Azacitidine may stop the growth of cancer cells by blocking some of the enzymes needed for cell growth. Giving avelumab and azacitidine may work better in treating patients with acute myeloid leukemia.
This phase II trial studies how well deferasirox works in treating patients with very low, low, or intermediate-risk anemia or myelodysplastic syndrome that depends on red blood cell transfusions. Deferasirox may treat too much iron in the blood caused by blood transfusions.
This is a Phase I/II, open-label, 2 arm study to evaluate the safety and clinical activity of GSK2879552 alone, or in combination with azacitidine in subjects with MDS. The study consisted of 2 parts. The objective of Part 1 is to determine the recommended phase 2 dose (RP2D) of GSK2879552 administered alone and in combination with azacitidine in adult subjects with high risk MDS previously treated with HMA. The objective of Part 2 is to evaluate clinical activity after treatment with GSK2879552, alone or in combination with azacitidine, in adult subjects with high risk MDS previously treated with HMA.
Myelodysplastic syndromes (MDS) prevail in elderly patients and are characterized by inefficient erythropoiesis and peripheral cytopenias. Supportive care still represents the main therapeutic option in most patients. Quality of life is deteriorated mostly by anemia and by limitations due to dependence on transfusions, thrombocytopenia, and neutropenia. The only treatment available for severe thrombocytopenia consists of PLT transfusions, mainly in the presence of bleeding. In patients with low and intermediate-1 risk MDS with an isolated deletion 5q cytogenetic abnormality, red blood cell (RBC) transfusion-dependence is a prevalent condition. For these latter patients reaching transfusion-dependence, lenalidomide, an immunomodulatory drug, has been approved by FDA and EMA. It has been shown that the drug induces significant erythroid (about 65%) and cytogenetic responses which have been associated with a survival benefit. In patients with MDS with del5q and serum erythropoietin levels > 500 miU/L, lenalidomide dosing of 10 mg/day for 21 days every 28, rather than 5 mg dosing, induces higher rates of transfusion-independence and cytogenetic responses with a trend to survival advantage. As a consequence, the recommended starting dose of lenalidomide is 10 mg orally once daily on days 1-21 of repeated 28-day cycles. Lenalidomide treatment must not be started if the Absolute Neutrophil Counts (ANC) < 0.5 Gi/L and/or PLT counts < 25 Gi/L. For patients who are dosed initially at 10 mg and who experience thrombocytopenia < 25 Gi/L (45-75%), it is recommended to interrupt lenalidomide treatment until PLT count returns to ≥ 25 Gi/L on at least 2 occasions for ≥ 7 days or when the PLT count recovers to ≥ 50 Gi/L at any time, to resume lenalidomide at 50% dose reduction. Eltrombopag is an orally bioavailable agonist of the thrombopoietin receptor. It has been shown that in patients affected by MDS and by acute myeloid leukemia, Eltrombopag neither increases the proliferation, nor the clonogenic growth capacity of bone marrow blasts. Furthermore, Eltrombopag induces an increase in the megakaryocytic differentiation and in the formation of normal megakaryocytic colonies. These results provide the rationale for pursuing further research on Eltrombopag for the treatment of thrombocytopenia in case of MDS. Preliminary results of an ongoing randomized trial, EQoL-MDS, for the evaluation of efficacy, safety of eltrombopag for thrombocytopenia of low and intermediate-1 IPSS risk MDS has shown that eltrombopag is able to significantly raise PLT counts in about 65% of patients without additional toxicity Furthermore, the combination of lenalidomide and eltrombopag resulted in significant inhibitory effects on the growth of leukemic colonies in the majority of primary MDS and AML samples. Most importantly, eltrombopag was able to reverse the anti-megakaryopoietic effects of lenalidomide in primary MDS patient samples. These results provide a preclinical rationale for the use of this combination in MDS and AML
Registry participants with advanced malignancy or myelodysplasia will have a sample of their tumor or tissue analysed for genetic alterations using next generation sequencing (NGS) performed in a lab that has been certified to meet a high quality standard. Treatments and outcomes will be reported to the registry to allow further understanding of how genetic differences can lead to better diagnosis and treatments.
This phase II trial studies how well tacrolimus, bortezomib, and anti-thymocyte globulin (thymoglobulin) work in preventing low toxicity graft versus host disease (GVHD) in patients with blood cancer who are undergoing donor stem cell transplant. Tacrolimus and anti-thymocyte globulin may reduce the risk of the recipient's body rejecting the transplant by suppressing the recipient's immune system. Giving bortezomib after the transplant may help prevent GVHD by stopping the donor's cells from attacking the recipient. Giving tacrolimus, bortezomib, and anti-thymocyte globulin may be a better way to prevent low toxicity GVHD in patients with blood cancer undergoing donor stem cell transplant.
CC-90009-AML-001 is a phase 1, open-label, dose escalation and expansion, study in subjects with relapsed or refractory acute myeloid leukemia and relapsed or refractory higher-risk myelodysplastic syndrome.