View clinical trials related to Acute Myeloid Leukemia.
Filter by:This study compares haplo-identical family donor stem cell transplantation (haplo SCT) to matched unrelated donor transplantation (URD SCT) in adult patients with acute myeloid leukemia (AML) with the hypothesis that haplo SCT is as good as URD SCT. Background: A haplo-identical family donor is a relative sharing 50% of the human leukocyte antigens (HLA) of the patient. SCT with this type of donor is increasing, and a number of retrospective studies have demonstrated its feasibility, but prospective randomized studies are still lacking. Such studies are necessary to establish the benefits of haplo SCT. For the ≈70% of the patients that lack the 1st choice donor, an HLA-matched sibling, the 2nd choice is an URD at most centers. However, if haplo-identical donors are as good as URDs, this could change. Haplo-identical donors have several advantages. Almost all patients have at least one available haplo-identical donor, while URDs can be difficult to find. It also eliminates the need for time-consuming donor searches, and is considerably less costly. The Study: Patients can be included in the study if they have AML and require SCT, ≥18 years, DO NOT have an HLA-matched sibling donor, and DO have potential haplo-identical family donors AND URDs. After enrollment in the study, the patients are assigned randomly to either haplo SCT or URD SCT. The treatment surrounding the transplantation differs according to the donor type. Patients receiving haplo-identical transplantation are treated with a specified chemotherapy protocol before transplantation and a chemotherapy combined with immunosuppressive drugs after the transplantation to prevent graft-vs. host disease (GVHD). The patients receiving URD SCT will be treated according to the standard protocol at their center. Thus, haplo SCT will be compared to what is currently used in patients without an HLA-identical sibling today. The primary endpoint of this study is graft-vs.-host disease- and relapse free survival two years after study inclusion. This measurement takes into account the side effect that causes the most long-term suffering, graft-vs-host disease, as well as leukemia relapse and thus indicates to what extent the treated patients remain relapse-free and without significant side effects. Secondary end points include relapse-free survival, frequencies of graft-versus-host disease and of infections, and the patients will be followed in the study for five years.
Phase 1 dose escalation will determine the maximum tolerated dose (MTD) and recommended Phase 2 dose (RP2D) of revumenib in participants with acute leukemia. In Phase 2, participants will be enrolled in 3 indication-specific expansion cohorts to determine the efficacy, short- and long-term safety, and tolerability of revumenib.
This phase II trial studies how well azacitidine and venetoclax work in treating patients with acute myeloid leukemia that is in remission. Drugs used in chemotherapy, such as azacitidine and venetoclax, work in different ways to stop the growth of cancer cells, either by killing the cells, by stopping them from dividing, or by stopping them from spreading.
Genetic mutations have closely linked to the pathogenesis and prognostication of myeloid cancers. In addition, a number of molecularly targeted agents have been developed in recent years. With the advent of next generation sequencing (NGS), we now are able to detect a wide range of mutations more rapidly, accurately, and economically. In this study, the investigators will use NGS to screen and analyze myeloid-associated gene mutations in the participants, and aim to build up the mutational landscapes of the various myeloid cancers, and investigate how these mutations are linked to clinical outcome.
This phase II trial studies how well Triplex vaccine works in preventing cytomegalovirus (CMV) infection in patients undergoing a hematopoietic stem cell transplantation. CMV is a virus that may be carried for life and does not cause illness in most healthy individuals. However, in people whose immune systems are lowered (such as those undergoing stem cell transplantation), CMV can reproduce and cause disease and even death. The Triplex vaccine is made up of 3 small pieces of CMV deoxyribonucleic acid (DNA) (the chemical form of genes) placed into a weakened virus called modified vaccinia Ankara (MVA) that may help produce immunity (the ability to recognize and respond to an infection) and reduce the risk of developing complications related to CMV infection.
This is a multi-center, single-arm, open-label, phase II trial for the frontline treatment of relapsed AML or MDS following allo-HCT. Eligible subjects will receive up to 4 cycles of combined modality treatment. The number of cycles depends on response, toxicity, and the remaining cell dose.
This multi-center, randomized phase 2 study is designed to evaluate the complete remission (including complete remission with incomplete count recovery) rates of glasdegib in combination with either decitabine on a 5-day or 10-day schedule in patients with newly-diagnosed poor-risk AML who either refuse or are ineligible for intensive therapy.
This phase I/II trial studies the side effects and how well cladribine, idarubicin, cytarabine, and quizartinib work in treating patients with acute myeloid leukemia or high-risk myelodysplastic syndrome that is newly diagnosed, has come back (relapsed), or does not respond to treatment (refractory). Drugs used in chemotherapy, such as cladribine, idarubicin, and cytarabine, work in different ways to stop the growth of cancer cells, either by killing the cells, by stopping them from dividing, or by stopping them from spreading. Quizartinib may stop the growth of cancer cells by blocking some of the enzymes needed for cell growth. Giving quizartinib with cladribine, idarubicin, and cytarabine may help to control acute myeloid leukemia or high-risk myelodysplastic syndrome.
In this trial the investigators aim to evaluate safety and efficacy of combination Ivosidenib (AG-120) and nivolumab in the context of adult patients with Isocitrate dehydrogenase-1 (IDH1) mutated acute myeloid leukemias (AML) or Myelodysplastic syndromes (MDS).
Study CPX351-103 is an open-label, multicenter, phase 1b, safety and PK study to determine the MTD of the combination of CPX 351 and venetoclax when administered to subjects with newly diagnosed AML who are unfit for intensive chemotherapy (ICT) and to determine the recommended phase 2 dose (RP2D) for the Expansion Phase. This study will comprise 2 phases: a Dose Exploration Phase (Part 1) and an Expansion Phase (Part 2), in which all subjects will receive a combination of CPX-351 and venetoclax.