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Active clinical trials for "Leukemia, Myelogenous, Chronic, BCR-ABL Positive"

Results 551-560 of 939

Dasatinib in Treating Patients With Chronic Myelogenous Leukemia or Acute Lymphoblastic Leukemia...

Leukemia

RATIONALE: Dasatinib may stop the growth of cancer cells by blocking some of the enzymes needed for cell growth. PURPOSE: This phase I trial is studying the side effects of dasatinib in treating patients with chronic myelogenous leukemia or acute lymphoblastic leukemia.

Completed92 enrollment criteria

Safety Assessment of Two Schedules of Intravenous Infusions of SNS-595 for the Treatment of Hematologic...

LeukemiaLymphocytic8 more

This study primarily determined the safety and tolerability of escalating doses of vosaroxin (SNS-595) in 2 dose schedules, and assessed the PK profile of vosaroxin and defined a recommended dose regimen for Phase 2 studies. Secondarily the study assessed potential biomarkers and antileukemic activity.

Completed20 enrollment criteria

PEG Interferon Alpha 2B and Low-Dose Ara-C in Early Chronic Phase CML

Chronic Myeloid Leukemia

The goal of this clinical research study is to see if a new interferon which is given only once a week with ARA-C works as well as standard interferon and low dose ARA-C. The safety of this treatment will also be studied.

Completed8 enrollment criteria

Low Dose IL-2, Hematopoietic Stem Cell Transplantation, IL2 for GVHD

Acute Lymphoblastic LeukemiaALL8 more

Patients are being asked to participate in this study because treatment for their disease requires a stem cell transplant (SCT). Stem cells are the source of normal blood cells found in the bone marrow and lead to recovery of blood counts after bone marrow transplantation. With stem cell transplants, regardless of whether the donor is a full match to the patient or not, there is a risk of developing graft-versus-host disease (GVHD). GVHD is a serious and sometimes fatal side effect of SCT. GVHD occurs when the new donor stem cells (graft) recognizes that the body tissues of the patient (host) are different from those of the donor. When this happens, cells in the graft may attack the host organs. How much this happens and how severe the GVHD is depends on many things, including how different the donors cells are, the strength of the drugs given in preparation for the transplant, the quality of transplanted cells and the age of the person receiving the transplant. Typically, acute GVHD occurs in the first 100 days following transplant, while chronic GVHD occurs after day 100. Acute GVHD most often involves the skin, where it can cause anywhere from a mild rash to complete removal of skin; liver, where it can anywhere from a rise in liver function tests to liver failure; and the gut, where it can cause anywhere from mild diarrhea to profuse, life-threatening diarrhea. Most patients who develop GVHD experience a mild to moderate form, but some patients develop the severe, life-threatening form. Previous studies have shown that patients who receive SCT's can have a lower number of special T cells in their blood, called regulatory T cells, than people who have not received stem cell transplants. When regulatory T cells are low, there appears to be an increased rate of severe, acute GVHD. A drug known as IL-2 (Proleukin) has been shown to increase the number of regulatory T cells in patients following stem cell transplant, and in this study investigators plan to give low dose IL-2 after transplant. This study is called a phase II study because its major purpose is to find out whether using a low-dose of IL-2 will be effective in preventing acute GVHD. Other important purposes are to find out if this treatment helps the patient's immune system recover regulatory T cells faster after the transplant. This study will assess the safety and toxicity of low-dose IL-2 given to patients after transplantation and determine whether this drug is helpful in preventing GVHD.

Completed18 enrollment criteria

A Study of Imatinib Versus Nilotinib in Adult Patients With Newly Diagnosed Philadelphia Chromosome...

Myelogenous LeukemiaChronic

In this study, the efficacy and safety of two nilotinib doses, 300 mg twice daily and 400 mg twice daily, were compared with imatinib 400 mg once daily in newly diagnosed patients with Philadelphia chromosome-positive (Ph+) Chronic Myelogenous Leukemia in the chronic phase (CML-CP). An extension protocol was included in this study design to allow patients who did not show sufficient response to their assigned treatments the opportunity to receive imatinib 400 mg BID (option available until protocol amendment 7) or nilotinib 400 mg BID, using an abbreviated safety and efficacy assessment schedule.

Completed11 enrollment criteria

Stem Cell Transplantation for Patients With Cancers of the Blood

CML (Chronic Myelogenous Leukemia)CLL (Chronic Lymphocytic Leukemia)3 more

This study will try to improve the safety and effectiveness of stem cell transplant procedures in patients with cancers of the blood. It will use a special machine to separate immune cells (T cells) from the blood of both the donor and the patient and will use photodepletion, a laboratory procedure that selectively kills cancer cells exposed to light. These special procedures may reduce the risk of graft-versus-host-disease (GVHD), a serious complication of stem cell transplants in which the donor's immune cells destroy the patient's healthy tissues, and at the same time may permit a greater graft-versus-leukemia effect, in which the donated cells fight any residual tumor cells that might remain in the body. Patients between 18 and 75 years of age with a life-threatening disease of the bone marrow (acute or chronic leukemia, myelodysplastic syndrome, or myeloproliferative syndrome) may be eligible for this study. Candidates must have a family member who is a suitable tissue match.

Completed37 enrollment criteria

3-AP and Fludarabine in Treating Patients With Myeloproliferative Disorders, Chronic Myelomonocytic...

Accelerated Phase Chronic Myelogenous LeukemiaAtypical Chronic Myeloid Leukemia9 more

This phase II trial is studying how well giving 3-AP together with fludarabine works in treating patients with myeloproliferative disorders (MPD), chronic myelomonocytic leukemia (CMML), or accelerated phase or blastic phase chronic myelogenous leukemia. Drugs used in chemotherapy, such as 3-AP and fludarabine, work in different ways to stop the growth of cancer cells, either by killing the cells or by stopping them from dividing. 3-AP may help fludarabine work better by making cancer cells more sensitive to the drug. 3-AP and fludarabine may also stop the growth of cancer cells by blocking some of the enzymes needed for cell growth. Giving 3-AP together with fludarabine may kill more cancer cells.

Completed53 enrollment criteria

Methods to Enhance the Safety and Effectiveness of Stem Cell Transplants

Chronic Myelogenous LeukemiaAcute Myelogenous Leukemia3 more

Bone marrow stem cell transplants (otherwise called bone marrow transplants) from healthy donors are sometimes the only means of curing hematological malignant diseases such as acute and chronic leukemias, myelodysplastic syndrome, myeloproliferative diseases and lymphomas. Before transplant the patient receives chemotherapy and radiation treatment to reduce the malignancy to low levels and to prevent rejection of the transplant. The transplant restores the blood counts to normal and replaces the patients immunity with that of the donor. The donors immune cells increase the effect of the transplant by attacking remaining malignant cells. Donor immune cells (especially those called T lymphocytes) also attack healthy non-cancerous cells and tissues of the recipient causing "graft-versus-host-disease" (GVHD). Strong GVHD reactions occurring within weeks after the transplant can be life-threatening . In this study we remove most of the T lymphocytes from the transplant to minimize the risk of GVHD. However to improve immunity against residual malignant cells and boost immunity to infections, donor T cells (stored frozen at time of transplant) are given back around 90 days after the transplant when they have a reduced risk of causing serious GVHD. Any patient between 10 and 75 years of age with acute or chronic leukemia, myelodysplastic syndrome, myeloproliferative syndromes or lymphoma, who have a family member who is a suitable stem cell donor may be eligible for this study. Candidates are screened with a medical history and various tests and examinations.

Completed34 enrollment criteria

Homoharringtonine (Omacetaxine Mepesuccinate) in Treating Patients With Chronic Myeloid Leukemia...

Chronic Myeloid Leukemia

To evaluate the safety and efficacy of subcutaneous administration of omacetaxine mepesuccinate (HHT) in achieving a clinical response in CML patients in chronic, accelerated, or blast phase who have failed prior imatinib therapy and have the T315I kinase domain gene mutation.

Completed8 enrollment criteria

Vorinostat and Idarubicin in Treating Patients With Relapsed or Refractory Leukemia or Myelodysplastic...

Acute Myeloid Leukemia With Multilineage Dysplasia Following Myelodysplastic SyndromeAdult Acute Myeloid Leukemia With 11q23 (MLL) Abnormalities14 more

This randomized phase I trial is studying the side effects and best dose of vorinostat when given together with idarubicin in treating patients with relapsed or refractory leukemia or myelodysplastic syndromes. Drugs used in chemotherapy, such as vorinostat and idarubicin, work in different ways to stop the growth of cancer cells, either by killing the cells or by stopping them from dividing. Vorinostat may also stop the growth of cancer cells by blocking some of the enzymes needed for cell growth. Giving vorinostat together with idarubicin may kill more cancer cells.

Completed31 enrollment criteria
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