Clinical Trials Logo

Leukemia, Myeloid, Acute clinical trials

View clinical trials related to Leukemia, Myeloid, Acute.

Filter by:

NCT ID: NCT01809392 Active, not recruiting - Clinical trials for Myelodysplastic Syndromes

Decitabine Augments for Post Allogeneic Stem Cell Transplantation in Patients With Acute Myeloid Leukemia and Myelodysplastic Syndrome

Start date: January 2013
Phase: Phase 2/Phase 3
Study type: Interventional

Allo - hematopoietic stem cell transplantation is currently the only way to cure myelodysplastic syndrome /acute leukemia . The existing experimental results showed that decitabine and 5-azacytidine up-regulated the expression of tumor Ags on leukemic blasts in vitro and expanded the numbers of immunomodulatory T regulatory cells in animal models. Reasoning that decitabine might selectively augment a graft versus leukemia effect, the investigators used decitabine administration after allogeneic stem cell transplantation to studied the immunologic sequelae.

NCT ID: NCT01806116 Active, not recruiting - Clinical trials for Higher-risk Myelodysplastic Syndrome

Decitabine for Myelodysplastic Syndromes and Acute Myeloid Leukemia Before Allogeneic Hematopoietic Cell Transplantation

DFMBHSCT
Start date: September 2009
Phase: Phase 4
Study type: Interventional

Allogeneic stem cell transplantation (SCT) is the only potentially curative therapy for patients with myelodysplastic syndrome (MDS) and acute myeloblastic leukemia (AML). Relapse remains a leading cause for treatment failure after hematopoietic cell transplantation (HCT) in patients,so that there is the need to continue to look for alternative therapies. Decitabine, is known to inhibit DNA methyltransferase which results in DNA hypomethylation and expression of silenced genes including those involved in apoptosis. The approval of decitabine for the treatment of MDS and AML has provided an alternative strategy to inhibit disease progression in transplant-eligible patients. To assess the effect of pretransplant decitabine treatment on post transplant outcomes, we recently reviewed our institutional experience with MDS and AML patients.

NCT ID: NCT01757535 Active, not recruiting - Clinical trials for Leukemia, Myeloid, Acute

Efficacy of Oral Azacitidine Plus Best Supportive Care as Maintenance Therapy in Subjects With Acute Myeloid Leukemia (AML) in Complete Remission

QUAZAR AML-001
Start date: April 24, 2013
Phase: Phase 3
Study type: Interventional

This study enrolled 472 participants, aged 55 or older, with a diagnosis of de novo acute myeloid leukemia (AML) or AML secondary to prior myelodysplastic disease or chronic myelomonocytic leukemia (CMML), and who have achieved first complete remission (CR)/ complete remission with incomplete blood count recovery (CRi) following induction with or without consolidation chemotherapy. The study is amended to include an extension phase (EP). The EP allows participants who are currently receiving oral azacitidine and who are demonstrating clinical benefit as assessed by the investigator, to continue receiving oral azacitidine after unblinding by sponsor until the participant meets the criteria for study discontinuation or until oral azacitidine becomes commercially available and reimbursed. In addition, all participants in the placebo arm and participants who had been discontinued from the treatment phase (irrespective of randomization arm) and continuing in the follow-up phase will be followed for survival in the EP.

NCT ID: NCT01744223 Active, not recruiting - Lymphoma Clinical Trials

Safety Study of Gene Modified Donor T-cells Following Partially Mismatched Stem Cell Transplant

Start date: March 2013
Phase: Phase 1/Phase 2
Study type: Interventional

This study will evaluate patients with blood cell cancers who are going to have an allogeneic (donor) blood stem cell transplant from a partially matched relative. The research study will test whether immune cells, called T cells, which come from the donor relative and are specially grown in the laboratory and then given back to the patient along with the stem cell transplant (T cell addback), can help the immune system recover faster after the transplant. As a safety measure, these T cells have been "programmed" with a "self-destruct switch" so that if, after they have been given to the patient, the T cells start to react against the tissues (called "graft versus host" disease, GVHD), the T cells can be destroyed.

NCT ID: NCT01716364 Active, not recruiting - Multiple Myeloma Clinical Trials

Safety Study of Anti LewisY Chimeric Antigen Receptor in Myeloma, Acute Myeloid Leukemia or Myelodysplastic Syndrome

Start date: January 2010
Phase: Phase 1
Study type: Interventional

Patients with some forms of acute myeloid leukemia (AML) and multiple myeloma (MM) are not cured with conventional therapy and new approaches are needed. For the last 15 years we have investigated the potential of using a patient's own T cells (a type of white blood cell [WBC]) to eradicate the tumor. We have demonstrated the feasibility of this approach in cell culture and animal models of AML and MM. Over the last 5 years we have been preparing to treat patients as part of a Phase I (first in human) clinical trial. The trial treatment involves collecting the patient's own WBCs from the blood by a standard well established and safe process called apheresis. The cells are then cultured in a specialized laboratory (under Good Manufacturing Practice conditions, similar to standards under which pharmaceuticals are produced) over 12 days to convert the cells to specialized tumor-attacking T cells. Early in that culture process the cells are exposed to a virus (that is modified so that it cannot infect or replicate outside the special culture conditions) that contains a special gene. Via the virus, this gene inserts into the patient's T cells in culture and gets incorporated into the T cell's genetic machinery. As the T cells replicate, the new gene produces a protein receptor that becomes part of the patient's T cells. This protein receptor on the T cells has the capacity to specifically recognize and bind to a protein on the leukemia or myeloma cells called the "Lewis Y" antigen. After the modified T cells are infused into the patient, they home into the bone marrow (this tracking is monitored by special radiological techniques) where the new protein receptor on the T cell surface can recognize and bind to the cancer cells (which express Lewis Y). Once bound onto the cancer cells, the T cells get activated and subsequently replicate and kill the cancer cells. The novelty of this approach is that the T-cells will only kill cells that have the Lewis Y on their surface - the cancer cells. Moreover, because there are few normal cells in a person's body that carry Lewis Y, this treatment is likely to only have minor side effects. This gene therapy trial is unique and although the primary purpose is to test the safety of this approach, patients will be monitored closely for anti-tumor responses. As the trial progresses, the dose of T cells infused will increase, in the hope that this will result in a better and stronger immune response to the leukemia or myeloma.

NCT ID: NCT01686334 Active, not recruiting - Clinical trials for Acute Myeloid Leukemia

Efficacy Study of Dendritic Cell Vaccination in Patients With Acute Myeloid Leukemia in Remission

WIDEA
Start date: October 2012
Phase: Phase 2
Study type: Interventional

The primary aim of this innovative immunotherapeutic study is to determine whether the antileukemic effects seen in our previous phase I/II study can be confirmed in a large cohort of patients and whether dendritic cell vaccination can significantly prevent relapse and increase survival of acute myeloid leukemia (AML) patients by eradicating minimal residual disease.

NCT ID: NCT01656031 Active, not recruiting - Leukemia Clinical Trials

A Phase II Open-Label Study of High-Dose Cytarabine and Clofarabine in Adult Patients With Refractory or Relapsed Acute Myelogenous Leukemia or Refractory or Relapsed Acute Lymphoblastic Leukemia

Start date: February 2005
Phase: Phase 2
Study type: Interventional

RATIONALE: Drugs used in chemotherapy, such as cytarabine and clofarabine, work in different ways to stop the growth of cancer cells, either by killing the cells or by stopping them from dividing. Giving more than one drug (combination chemotherapy) may kill more cancer cells. PURPOSE: This phase II trial is studying clofarabine when given together with cytarabine to see how well they work in treating patients with refractory or relapsed acute myeloid leukemia or acute lymphoblastic leukemia.

NCT ID: NCT01627041 Active, not recruiting - Clinical trials for Acute Myeloid Leukemia

Decitabine, Cytarabine, and Daunorubicin Hydrochloride in Treating Patients With Acute Myeloid Leukemia

Start date: September 16, 2011
Phase: Phase 2
Study type: Interventional

This randomized phase II trial studies how well decitabine works when given together with daunorubicin hydrochloride and cytarabine in treating patients with acute myeloid leukemia. Drugs used in chemotherapy, such as decitabine, daunorubicin hydrochloride, and cytarabine, work in different ways to stop the growth of cancer cells, either by killing the cells or by stopping them from dividing. Decitabine may help daunorubicin hydrochloride and cytarabine kill more cancer cells by making them more sensitive to the drugs. It is not yet known whether low-dose decitabine is more effective than high-dose decitabine when giving together with daunorubicin hydrochloride and cytarabine in treating acute myeloid leukemia.

NCT ID: NCT01619761 Active, not recruiting - Clinical trials for Myelodysplastic Syndrome

NK Cells in Cord Blood Transplantation

Start date: May 3, 2013
Phase: Phase 1
Study type: Interventional

This phase I trial studies the side effects and best way to give natural killer cells and donor umbilical cord blood transplant in treating patients with hematological malignancies. Giving chemotherapy with or without total body irradiation before a donor umbilical cord blood transplant helps stop the growth of cancer cells. It may also stop the patient's immune system from rejecting the donor's stem cells. When the healthy stem cells and natural killer cells from a donor are infused into the patient they may help the patient's bone marrow make stem cells, red blood cells, white blood cells, and platelets.

NCT ID: NCT01587430 Active, not recruiting - Clinical trials for Acute Myeloid Leukemia

3 Anthracyclines, 2 Types of Consolidation With Different ARA-C Doses and Maintenance in Adult Acute Myeloid Leukemia

Start date: January 2010
Phase: Phase 4
Study type: Interventional

The goal: to evaluate the role of high dose ara-c plus idarubicin and mitoxantrone consolidation followed by maintenance in the setting of high total cumulative anthracyclines dose(720-660 mg/m2).