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Active clinical trials for "Leukemia"

Results 3701-3710 of 5979

Vaccine Therapy in Treating Patients With Acute Myeloid Leukemia in Complete Remission

Leukemia

RATIONALE: Vaccines made from dendritic cells may help the body build an effective immune response to kill cancer cells. PURPOSE: This phase I trial is studying the side effects of vaccine therapy and to see how well it works in treating patients with acute myeloid leukemia in complete remission.

Completed25 enrollment criteria

Bendamustine Combined With Alemtuzumab in Pretreated Chronic Lymphocytic Leukemia (CLL)

LeukemiaLymphocytic2 more

The primary objective of this study is to determine the percentage of patients achieving a response, defined as the percentage of patients achieving complete response, partial response and stable disease/ no change upon treatment with the combination therapy according to NCI response criteria (also established according to IWCLL guidelines) upon treatment with a combination of bendamustine and alemtuzumab.

Completed19 enrollment criteria

QUILT-3.018: Neukoplast™ (NK-92) for the Treatment of Refractory or Relapsed Acute Myeloid Leukemia...

Acute Myeloid Leukemia

NK cells from patients with malignant diseases are often functionally impaired. Their function cannot be fully restored through ex vivo expansion and cytokine activation. In addition, the in vivo administration of cytokines not only expands NK cells but expands polyclonal T cells with no tumor specificity and no known effects. The utilization of Neukoplast™, as a form of adoptive immunotherapy, offers several advantages. Neukoplast™ represents a uniform cell population with a well-characterized immunophenotype, confirmed strong anti-tumor activity and are easy to grow and expand in culture, so that they can be made available in large numbers for therapeutic delivery.

Completed27 enrollment criteria

Methotrexate, Vincristine, Pegylated L-Asparaginase and Dexamethasone (MOAD) in Acute Lymphoblastic...

LeukemiaLymphocytic1 more

This goal of this clinical research study is to learn if the combination of methotrexate, pegylated-L-asparaginase, vincristine, and dexamethasone (also rituximab in some patients) can help to control ALL that has not responded to previous treatment or has come back after a response or chronic myeloid leukemia (CML).

Completed10 enrollment criteria

Physical Activity to Modify Sequelae and Quality of Life in Childhood Acute Lymphoblastic Leukemia...

Acute Lymphoblastic Leukemia

This will be the first multidisciplinary, randomized, longitudinal trial of a tailored, parent- and child-focused physical activity program for children (ages 4- <19 years) with newly diagnosed ALL. It will test the ability of the intervention to prevent or diminish early physical function limitations and improve health-related quality of life (HRQL). The intervention will be tested for its effect on: 1) physical function outcomes (muscle strength, range of motion, endurance, gross motor skills), bone density and bone mineral content (end of therapy only); and 2) HRQL. This multi-site trial will test the intervention in 76 evaluable children with ALL (38 receiving the intervention and 38 receiving a placebo "minimal movement" standard care strategy).

Completed11 enrollment criteria

Induction, Consolidation and Intensification Therapy for Patients Younger Than 66 Years With Previously...

Acute Myeloid Leukemia

This is a prospective, open, non-randomized, non-controlled, phase II, clinical trial for treatment of newly diagnosed AML patients, younger than 66 years. Trial is based on: INDUCTION: FLAI + Gemtuzumab-Ozogamicin (FLAI-GO). CONSOLIDATION: Intermediate dose AraC + IDA (IDAC+IDA) +/- one course of high dose AraC (HDAC) INTENSIFICATION: Allo-BMT, ASCT MAINTENANCE: AraC a) Primary endpoints: Feasibility, Efficacy (CR+PR rate) and Toxicity of FLAI + Gemtuzumab-Ozogamicin. RFS, DFS and OS. b) Secondary endpoints: Evaluation of Minimal Residual Disease by WT1 (and other biologic markers) expression and monitoring. Evaluation of prognostic clinical relevance of biological features at onset. Feasibility and outcome of consolidation with BMT.

Completed23 enrollment criteria

Azacytidine for the Treatment of Myelodysplastic Syndromes/Acute Myeloid Leukemia (MDS/AML) With...

Myelodysplastic SyndromesLeukemia2 more

The purpose of this study is to assess the hematological and cytogenetic responses with 5 azacytidine in patients over 55 years of age with MDS/AML due to chromosome 7 abnormalities and to assess the hematological and cytogenetic response rates in patients with relapsed AML and chromosome 7 abnormality.

Completed34 enrollment criteria

MLN4924 for the Treatment of Acute Myelogenous Leukemia, Myelodysplastic Syndrome, and Acute Lymphoblastic...

Acute Myelogenous LeukemiaAcute Lymphoblastic Leukemia1 more

An open-label, multicenter, phase 1, dose escalation study of MLN4924 in adult patients with acute myelogenous leukemia (AML), high-grade myelodysplastic syndrome (MDS). The patient population will consist of adults previously diagnosed with AML including high-grade MDS for which standard curative, life-prolonging treatment does not exist or is no longer effective.

Completed29 enrollment criteria

Panobinostat and Everolimus in Treating Patients With Recurrent Multiple Myeloma, Non-Hodgkin Lymphoma,...

Adult Nasal Type Extranodal NK/T-cell LymphomaAnaplastic Large Cell Lymphoma26 more

This phase I/II trial studies the side effects and best dose of panobinostat and everolimus when given together and to see how well they work in treating patients with multiple myeloma, non-Hodgkin lymphoma, or Hodgkin lymphoma that has come back. Panobinostat and everolimus may stop the growth of cancer cells by blocking some of the enzymes needed for cell growth.

Completed88 enrollment criteria

Haploidentical Stem Cell Transplantation for Children With Therapy Resistant Leukemia

Acute Lymphoblastic LeukemiaAcute Myeloid Leukemia

Despite substantial progress in the treatment pediatric acute leukemia a significant number of children will experience primary or secondary resistance to the treatment. In other words it will be not possible to achieve remission using standard chemotherapy (primary resistance) or the patients will develop chemotherapy resistant relapse (secondary resistance). Children failing to achieve remission or children relapsing after previous allogeneic stem cell transplantation have short life expectancy and palliative treatment still remains the most reasonable option as the escalation of conventional chemotherapy is not longer effective. The role of Graft versus Leukemia effect was postulated as one of the mechanisms contributing to the leukemia control/eradication after transplantation of hematopoietic stem cells. In this study the investigators combine intensified multiagent Clofarabine containing chemotherapy with post-induction treatment intensification using reduced intensity conditioning followed by haploidentical hematopoietic stem cell transplantation. Introducing a new drug to the treatment of resistant leukemia the investigators want to achieve a response which allows us to proceed to immediate haploidentical transplantation. Using a haploidentical donor the investigators can avoid time consuming search for an unrelated donor and perform the transplantation at the optimal time-point. Combating therapy resistant leukemia the investigators would like to evoke and utilize potential Graft-versus-Leukemia effect which is much more pronounced in the haploidentical setting, as it is well documented that allogeneic transplantation with a matched donor is not effective in resistant disease. The use of best KIR mismatch donor and post-transplant donor lymphocyte infusion will be implemented in order to develop/intensify graft versus leukemia effect.

Completed43 enrollment criteria
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