View clinical trials related to Leukemia.
Filter by:The purpose of this study is to determine whether Valproic acid, as a single agent is effective in the treatment of Chronic Lymphocytic Leukemia which has relapsed or is refractory to therapy with standard drugs.
The patient receive 2 different drug combinations on this study. The first combination will consist of an intensive chemotherapy regimen (cyclophosphamide, mesna, methotrexate, doxorubicin liposomal or doxorubicin, vincristine, ARA-C (cytarabine) and dexamethasone). The second combination will consist of another intensive chemotherapy regimen (methotrexate and Ara-C [cytarabine]).
This phase II trial studies the side effects and how well fludarabine phosphate, cytarabine, filgrastim-sndz, gemtuzumab ozogamicin, and idarubicin hydrochloride work in treating patients with newly diagnosed acute myeloid leukemia or high-risk myelodysplastic syndrome. Drugs used in chemotherapy, such as fludarabine phosphate, cytarabine, and idarubicin hydrochloride, work in different ways to stop the growth of cancer cells, either by killing the cells or by stopping them from dividing. Gemtuzumab ozogamicin is a monoclonal antibody, called gemtuzumab, linked to a antitumor drug, called calicheamicin. Gemtuzumab is a form of targeted therapy because it attaches to specific molecules (receptors) on the surface of cancer cells, known as CD33 receptors, and delivers calicheamicin to kill them. Colony-stimulating factors, such as filgrastim-sndz, may increase the number of immune cells found in bone marrow or peripheral blood and may help the immune system recover from the side effects of chemotherapy. Giving fludarabine phosphate, cytarabine, filgrastim-sndz, gemtuzumab ozogamicin, and idarubicin hydrochloride may kill more cancer cells.
AML patients with de-novo or secondary disease with age greater than 18 years not eligible for stem cell transplantation for medical contraindications, lack of donor or lack of stem cells,are eligible. Leukemias other than AML and M3 FAB subtype will be excluded from the study. Immunosuppressive chemotherapy prior to NK cell infusion will include: fludarabine and cyclophosphamide 4g/m2 (Flu/Cy). The therapy will be administered over 6 days on inpatient basis. Haploidentical NK cells will be selected from a steady-state large volume leukapheresis product from a suitable KIR ligand incompatible donor. Donor-recipients pairs will be selected on the basis of known KIR ligands. In particular, haploidentical donors will be included if present at least one allele mismatch at a class I locus among the following ones: HLA-C alleles with Asn77-Lys80, HLA-C alleles with Ser77-Asn80, HLA-Bw4 alleles. Immunomagnetic enrichment of NK cells will follow two subsequent steps: 1) depletion of CD3+ T cells followed by 2) positive selection of CD56+ NK cells. Contaminating CD3+ T cells will be carefully evaluated.
RATIONALE: Drugs used in chemotherapy 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. A donor stem cell transplant may replace the patient's immune cells and help destroy any remaining cancer cells (graft-versus-tumor effect). Giving combination chemotherapy before the transplant helps stop the growth of cancer cells and stop the patient's immune system from rejecting the donor's stem cells. It is not yet known which combination chemotherapy regimen is more effective in treating young patients with acute lymphoblastic leukemia. PURPOSE: This randomized phase III trial is studying different risk-adjusted combination chemotherapy regimens in treating young patients with acute lymphoblastic leukemia.
RATIONALE: Giving chemotherapy, such as fludarabine, busulfan, and cyclophosphamide, together with antithymocyte globulin before a donor stem cell transplant helps stop the growth of cancer and abnormal cells. Giving chemotherapy before or after transplant also stops the patient's immune system from rejecting the donor's stem cells. The donated stem cells may replace the patient's immune cells and help destroy any remaining cancer and abnormal cells (graft-versus-tumor effect). Sometimes the transplanted cells from a donor can also make an immune response against the body's normal cells. Giving cyclosporine and mycophenolate mofetil after the transplant may stop this from happening. PURPOSE: This phase II trial is studying how well stem cell transplant works in treating patients with hematological cancer or other disorders.
This clinical trial keeps track of and collects follow-up information from patients who are currently enrolled on or have participated in a Children's Oncology Group study. Developing a way to keep track of patients who have participated in Children's Oncology Group studies may allow doctors learn more about the long-term effects of cancer treatment and help them reduce problems related to treatment and improve patient quality of life.
The drug that will be used in this study is called Azacitidine. Azacitidine belongs to a group of drugs which may restore normal control in cancer cells by affecting the genes and proteins in the body. Azacitidine is approved by the FDA for the treatment of Myelodysplastic Syndrome (MDS), a pre-leukemic bone marrow disease. The purpose of this study is to find out what effect the drug Azacitidine has on Acute Myeloid Leukemia (AML) in elderly patients.
The purpose of this study is to assess the safety and tolerability of an 'AML Cell Vaccine' in patients with poor prognosis acute myeloid leukaemia (AML).
This is a two-part, open-label, Phase I/II study in subjects with relapsed or refractory TdT-positive leukemia for which no standard therapies are expected to result in durable remission.