View clinical trials related to Acute Myeloid Leukemia.
Filter by:This randomized phase III trial studies cytarabine and daunorubicin hydrochloride or idarubicin and cytarabine with or without vorinostat to see how well they work in treating younger patients with previously untreated acute myeloid leukemia. Drugs used in chemotherapy, such as cytarabine, daunorubicin hydrochloride, idarubicin, and vorinostat, work in different ways to stop the growth of cancer cells, either by killing the cells, stopping them from dividing, or by stopping from spreading. Giving more than one drug (combination chemotherapy) and giving the drugs in different doses and in different combinations may kill more cancer cells. It is not yet known which combination chemotherapy is more effective in treating acute myeloid leukemia.
The purpose of this study is to determine whether ATIR is safe and effective in reducing transplant-related mortality and improving overall survival, when infused in patients with a hematologic malignancy following a T-cell depleted stem cell graft from a related haploidentical donor.
The purpose of this study is to determine whether Azacitidine consolidation is superior to standard DA consolidation treatment of acute myeloid leukemia in first complete remission in elderly patients.
The purpose of this study is to assess the safety and efficacy of infusing immune cells from a donor as treatment for patients with acute myeloid leukemia that is resistant to chemotherapy or who have experienced relapse. Unlike standard bone marrow or stem cell transplantation which uses donors who are well 'matched' to the patient, this study uses donors whose immune cells are not compatible with the patient. With standard stem cell or bone marrow transplantation, the well-matched immune cells will attack the leukemia but they also attack the patient's organs (a situation called graft-versus-host disease, which can persist in the long term). Our hypothesis is that the mismatched donor cells will fight the leukemia but will then be eliminated from the patient's body, so long-term side effects like graft-versus-host disease should not occur.
The purpose of this study is evaluate patients with acute myeloid leukemia (<=66 years), treated with conventional and experimental chemotherapy following allogeneic transplantation. THis patients have been enrolled from 2000 to 2011 at the Division of Hematology, Molinette University Hospital. The purpose of data collection is to assess, with retrospective analysis, the clinical outcome divided by risk class and evaluated in patients who achieve complete remission after induction therapy and consolidation.
This research study is a Phase II clinical trial. Phase II clinical trials test the effectiveness of an investigational intervention to learn whether the intervention, in this case, the GVAX vaccine, works in preventing MDS, CMML, or AML from relapsing after allogeneic stem cell transplantation. "Investigational" means that the vaccine is still being studied and that research doctors are trying to find out more about it-such as the side effects it may cause, and if the vaccine is effective. It also means that the FDA has not yet approved the vaccine for these types of cancer. Participants are being asked to participate in this trial because they have advanced myelodysplastic syndrome (MDS), Chronic Myelomonocytic Leukemia (CMML), or acute myeloid leukemia (AML). Investigators have determined that participants are a candidate for an allogeneic stem cell transplant as treatment for MDS/CMML/AML. Allogeneic stem cell transplantation is a standard treatment for MDS/CMML/AML. It can be effective because the cells from the donor (also known as the graft) could form a new immune system that can fight against the MDS/CMML/AML cells in the body. This is also known as the "graft-versus-leukemia" or "GVL" effect. In patients with advanced MDS, CMML, or AML that is not in remission at the time of transplantation, relapse remains the number one cause of transplant failure. As such, this clinical trial is designed to assess whether adding a leukemia vaccine early after transplantation could stimulate donor cells to fight cancer and improve transplant outcomes. In recent years, researchers at the Dana-Farber Cancer Institute have discovered that GVAX, a vaccine made from the patient's own cancer cells engineered to produce a protein called GM-CSF, can be effective in stimulating a powerful immune response specific to that cancer. GM-CSF is a naturally occurring hormone in the body that helps the immune system fight infections and diseases. The GVAX vaccine is made in the laboratory by using a virus (called adenovirus, which has been modified so it cannot cause illness) to insert the GM-CSF gene into tumor cells. The cells are then irradiated, which prevents them from being able to grow, before being administered to patients in a series of vaccinations. A previous phase I clinical trial using this GVAX vaccine in patients with MDS/AML after allogeneic transplantation demonstrated that the GVAX vaccine is safe, and the survival outcomes were encouraging. The current randomized phase II study will investigate this vaccine further and gather more information to assess the activity. Participants in this study will be "randomized" to receive either GVAX vaccination or placebo (a saline solution) vaccination. Randomization means participants are put into a group by chance. It is like flipping a coin. There is a 50% chance they will receive the GVAX vaccine and a 50% chance they will receive placebo. Neither participants nor investigators will know which participants will be receiving. The primary goal of this trial is to assess if there will be a difference in the percentage of cancer free survivors in the vaccinated vs. placebo group at 18 months after transplant.
This is a non-interventional multi-center study (NIS) in adult patients with AML in first complete remission with measurable minimal residual disease (MRD). Patients are eligible when gene status was already determined for previous induction and consolidation therapy of AML and showed carrier of NPM1, CBFβ-MYH11, or MLL-AF9 mutation. The study objective is to observe the impact of pre-emptive therapy with histamine dihydrochloride (HDC) and interleukin-2 (IL-2) with regard to assess leukemia-free survival/time to relapse and to monitor MRD level trend over time. HDC and IL-2 are approved drugs for AML patients in first complete remission. Therapy is administered for 10 treatment cycles as outlined in the Summary of Product Characteristics.
This study was a multi-center, open, randomized-control study on the effects and safety of idarubicin 60mg/M2 combined with BUCY pretreatment program or BUCY pretreatment program on the overall survival rate and disease-free survival rate of acute myeloid leukemia patient in high-risk group over a period of 2 years.
This study will compare the clinical outcomes of transplants from family-mismatched/haploidentical donors (FMT) with transplants from 8/8-matched unrelated donor (MUT), which is a current gold standard donors when lacking of HLA-matched-siblings 1. Primary objectives: Overall survival of FMT may be similar to that of MUT 2. Secondary objectives: i. Comparison of disease-free survival, relapse, non-relapse mortality, immune reconstitution cytomegalovirus infection, and acute or chronic graft-versus-host disease between FMT and MUT. ii. Investigation of possible biomarkers related with above events after transplantation
The primary objective of this study is to determine the complete remission/complete remission with incomplete recovery of blood counts (CR/CRi) rate for relapsed and refractory acute myeloid leukemia (AML) and high-risk myelodysplastic syndrome (MDS) patients.