View clinical trials related to Acute Myeloid Leukemia.
Filter by:This phase II MyeloMATCH treatment trial compares cytarabine with daunorubicin versus cytarabine with daunorubicin and venetoclax versus venetoclax with azacitidine for the treatment of younger patients with intermediate risk acute myeloid leukemia (AML). Cytarabine is a drug that inhibits some of the enzymes needed for deoxyribonucleic acid (DNA) replication and repair and can slow or stop the growth of cancer cells. Daunorubicin is a drug that blocks a certain enzyme needed for cell division and DNA repair, and it may kill cancer cells. Venetoclax is in a class of medications called B-cell lymphoma-2 (BCL-2) inhibitors. It may stop the growth of cancer cells by blocking Bcl-2, a protein needed for cancer cell survival. Azacitidine is a drug that interacts with DNA to activate tumor-suppressing genes, resulting in an anti-tumor effect. Adding venetoclax to cytarabine and daunorubicin, and adding venetoclax to azacitidine, may work better than the usual treatment of cytarabine with daunorubicin alone. To decide if they are better, the study doctors are looking to see if venetoclax increases the rate of elimination of AML in participants by 20% or more compared to the usual approach.
This is a retrospective, translational, epidemiologic, multicenter, non-interventional study (No EPA study) to provide insights into disease epidemiology, disease biology, treatment regimens, and clinical outcomes of patients with acute myeloblastic leukemia (AML) in routine clinical practice according to their molecular markers. The primary objective of the study is to describe the use of the main molecular markers (FLT3 and NPM1) in the real-life according of the type of AML, treating institution, patients' characteristics, and disease status.
The purpose of this study is to determine the recommended Phase 2 dose(s) (RP2Ds) of JNJ-75276617 in combination with a conventional chemotherapy backbone in pediatric and young adult participants with relapsed/refractory acute leukemia harboring histone-lysine N-methyltransferase 2A1 ([KMT2A1], nucleophosmin 1 gene (NPM1), or nucleoporin alterations in Part 1 (Dose Escalation) and to further evaluate safety at the RP2D(s) of JNJ-75276617 in combination with chemotherapy in pediatric and young adult participants with relapsed/refractory acute leukemia harboring KMT2A1, NPM1, or nucleoporin alterations and safety at the RP2D(s) of JNJ-75276617 as monotherapy in a select low burden of disease cohort in Part 2 (Dose Expansion).
estimation of the clinical characters and out come of adult acute myeloid leukemia patients • correlation of the estimated clinical characters and outcome to the expression of CD200
This is a phase I/II dose escalation study designed to determine the safety and estimate the efficacy of UD-NK cells combined with FLA chemotherapy in patients age 18-24.99 with relapsed or refractory acute myeloid leukemia. PRIMARY OBJECTIVE: I. To determine the safety and recommended phase II dose of adoptive NK cell therapy using UD-NK cells in pediatric and young adult patients with relapsed/refractory AML. SECONDARY OBJECTIVES: I. To estimate the efficacy of UD- NK cells with FLA chemotherapy in pediatric and young adult patients with relapsed/refractory AML. EXPLORATORY OBJECTIVES: I. To determine the immunophenotype and function of UD-NK cells II. To characterize in vivo expansion of UD-NK cells III. To determine the persistence of UD-NK cells Six doses of universal donor mbIL-21 expanded NK cells (UD-NK) given thrice weekly for two weeks. Days may vary and NK cells can be given from days 0 to 21. Patients may receive up to 2 cycles of fludarabine/cytarabine (FLA) + NK cells (up to 12 NK cell infusions) if they do not achieve CR after cycle 1 or if necessary to bridge to transplant.
This research study is evaluating whether a psychological mobile application (app), is efficacious in reducing anxiety and depression symptoms and improving quality of life for patients diagnosed with acute myeloid leukemia (AML) compared to a physical health promotion app.
To evaluate the safety and tolerability of RC1012 infusion in patients with relapsed or refractory Acute Myelocytic Leukemia (r/r AML).
This study is a Phase 1, open-label, dose escalation, and cohort expansion study designed to characterize the safety, tolerability, pharmacokinetics, pharmacodynamics, immunogenicity, and preliminary anti-leukemic activity of WU-NK-101 in R/R AML.
This study will explore how malnutrition (poor nutrition/diet) and sarcopenia (a condition that causes a loss of muscle and bone mass) affects study participants over the age of 60 with acute myeloid leukemia (AML) who will receive induction chemotherapy (chemotherapy given as the first treatment to help cancer go into remission) and/or cancer drugs as part of standard care for AML. By studying how these nutritional and skeletal factors, doctors leading this study hope to learn how malnutrition and sarcopenia may be able to predict certain outcomes --such as how long study participants with poor nutrition and muscle loss can live after chemotherapy- for older (age 60+) individuals with AML.
This phase III trial compares hematopoietic (stem) cell transplantation (HCT) using mismatched related donors (haploidentical [haplo]) versus matched unrelated donors (MUD) in treating children, adolescents, and young adults with acute leukemia or myelodysplastic syndrome (MDS). HCT is considered standard of care treatment for patients with high-risk acute leukemia and MDS. In HCT, patients are given very high doses of chemotherapy and/or radiation therapy, which is intended to kill cancer cells that may be resistant to more standard doses of chemotherapy; unfortunately, this also destroys the normal cells in the bone marrow, including stem cells. After the treatment, patients must have a healthy supply of stem cells reintroduced or transplanted. The transplanted cells then reestablish the blood cell production process in the bone marrow. The healthy stem cells may come from the blood or bone marrow of a related or unrelated donor. If patients do not have a matched related donor, doctors do not know what the next best donor choice is. This trial may help researchers understand whether a haplo related donor or a MUD HCT for children with acute leukemia or MDS is better or if there is no difference at all.