View clinical trials related to Acute Myeloid Leukemia.
Filter by:The purpose of this study is to: - Test the safety of the research study drug, lenalidomide, when given with Idarubicin and Cytarabine - See how many respond to combination treatment with lenalidomide, Idarubicin and Cytarabine - See how long people respond to this combination therapy - See how long people live after being treated with this combination of drugs
This randomized allogeneic transplantation protocol compares i.v. Treosulfan-based conditioning therapy with reduced intensity i.v. Busulfan-based conditioning in adult AML and MDS patients at increased risk for standard conditioning therapies. The protocol is based on results of previous phase I/II trials evaluating Treosulfan/Fludarabine conditioning prior to allogeneic haematopoietic stem cell transplantation. The reference arm (reduced intensity i.v. Busulfan/Fludarabine) is considered to be accepted medical practice for the study patient population.
The study investigates if CPX-351 will be a) more effective than the standard intensive salvage AML treatment and b) more tolerable than the standard intensive salvage treatment regimens. The study compares the investigational product CPX-351 vs the standard intensive salvage treatment for first relapse AML patients.
The purpose of this research study is to determine the safety of the combination of RAD001 and PKC412 as a cancer treatment, and to establish the highest dose of RAD001 that can be given in conjunction with PKC412. These drugs have been used in other research trials for individuals with solid and hematology malignancies. Past research on PKC412 shows that it blocks the abnormal functioning of an enzyme called FLT3. FLT3 is found in your cells in either a normal (wild type) or genetically changed form and plays a role in the survival and growth of AML cells. RAD001 is an inhibitor of a central growth pathway that involves the protein MTOR. The MTOR pathway is overactive in cancer cells, causing the cells to grow abnormally. By inhibiting the abnormal growth activity of the MTOR pathway, RAD001 slows down and possibly stops the growth of cancer cells.
The goal of this research study is to determine if it is feasible to collect leukemia cells from patients ahead of time (before they undergo further treatments) so that these cells (after being radiated so they will no longer grow or divide) can be given back to them as a cancer vaccine if/after the participant receives a bone marrow or blood stem cell transplant in the future. The purpose of the research study will be to collect, freeze and store leukemia calls from participants blood or bone marrow. This study is a companion study to a vaccine study.
The purpose of this research study is to determine if the GM-K562/leukemia cell vaccine can be safely given soon after allogeneic marrow or blood stem cell transplant. The GM-K562/leukemia cell vaccine is composed of a cultured cell line that has been genetically modified to secrete GM-CSF, a naturally occuring substance in the body that stimulates the immune system. The vaccine is a mixture of the GM-K562 cells (radiated to prevent them from growing in the participants body) with the participant's previously frozen and killed leukemia cells. By mixing the GM-K562 with the leukemia cells, we would like to study whether this vaccine combination will stimulate the participant's new immune system to recognize and fight against their MDS/AML cancer cells.
The purpose of this study is to determine the maximum tolerated dose (MTD) of TAK-901 in subjects with advanced hematological malignancies, and to further assess the safety and tolerability of TAK-901 at or below the MTD in an expanded cohort of subjects in order to select a dose for future studies.
Acute leukemia is a life threatening illness that strikes people of all ages. In addition to surviving the direct effects of the disease, the treatment of leukemia generally requires chemotherapy which has its own burden. Infection is one of the most common secondary problems faced by these patients. Simple infections are common and easily treated with aggressive antibiotics. However, treated progressive infection leads to loss of vital organ function and is termed severe sepsis. Severe sepsis is associated with increased risk of death and the need for specialized care in the intensive care unit. Besides the appropriate use of antibiotics, little is known about what clinical and patient factors are associated with the development of severe sepsis. Recent evidence has suggested that certain practices like frequent transfusion of blood products and control of glucose levels effects outcome in critically ill patients. In addition, there have been advances in our knowledge of certain genes that may predispose people to severe infections. It is possible that these factors are important in people who are not yet critically ill, but are at risk for the development of severe sepsis. This observational study will look at genetic, clinical and therapeutic factors that are associated with the development of severe sepsis. This will help doctors understand what treatments may be helpful in preventing this serious complication.
Multicentric evaluation of the reduction of unrelated cord blood transplantation (UCBT) toxicity by using reduced intensity conditioning (RIC) in patients with acute myeloid leukaemia.UCBT related mortality and morbidity were limiting factors for the development of this procedure in adults. Non myeloablative conditioning regimen showed promising results and prospective evaluation has to be developed to confirm these retrospective data.
This open label phase-II trial evaluates hematological response of an additional treatment with 5-Azacitidine to common DLI in patients with MDS or AML relapsing after allogeneic stem cell transplantation.