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Hematologic Neoplasms clinical trials

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NCT ID: NCT00051311 Completed - Clinical trials for Hematologic Neoplasms

Modified Stem Cell Transplant Procedure to Treat Patients With Blood and Immune System Cancers

Start date: January 3, 2003
Phase: Phase 2
Study type: Interventional

This study will investigate the safety and effectiveness of a modified stem cell transplant procedure for treating cancers of the blood and immune system. Patients with cancers and pre-cancerous conditions originating in blood or immune system cells can sometimes benefit greatly from, and even be cured by, transplants of stem cells (cells produced by the bone marrow that mature into blood cells). In addition to producing new bone marrow and restoring normal blood production and immunity, the donated cells fight any residual tumor cells that might have remained in the body, in what is called a graft-versus-tumor effect. However, severe problems, and sometimes death, may follow these transplants as a result of the high-dose chemotherapy and radiation that accompany the procedure. Also, donated immune system cells called T cells sometimes attack healthy tissues in a reaction called graft-versus-host-disease (GVHD), damaging organs such as the liver, intestines and skin. This study will use the following strategies to try to reduce these risks: - induction chemotherapy to reduce patient's immunity in an attempt to prevent rejection of the donated stem cells; - reduced-intensity conditioning chemotherapy that is easier for the body to tolerate and involves a shorter period of complete immune suppression; - donation of immune cells called T helper type 2 (Th2) cells instead of T cells to try to reduce the risk of serious GVHD; - treatment with methotrexate and cyclosporine to try to reduce the risk of serious GVHD. Patients between 12 and 75 years of age with non-Hodgkin's lymphoma, Hodgkin's lymphoma, multiple myeloma, chronic lymphocytic leukemia, chronic myelogenous leukemia, acute myelogenous leukemia, acute lymphocytic leukemia, myelodysplasia, idiopathic myelofibrosis, polycythemia vera, or chronic myelomonocytic leukemia may be eligible for this study. Candidates will have a medical history, physical and dental examinations, blood and urine tests (including a blood test for genetic match with the donor), lung and heart function tests, and X-ray studies. A bone marrow biopsy may be done to evaluate disease status. Patients with lymphoma may have a nuclear medicine test called a positron emission tomography (PET) scan. Participants will have a central venous line (large plastic tube) placed into a major vein. This tube can stay in the body and be used during the entire treatment period to deliver the donated stem cells and give medications, including chemotherapy and other drugs, antibiotics and blood transfusions, and to withdraw blood samples. Treatment will start with induction chemotherapy, which will include the drugs fludarabine, cyclophosphamide, etoposide, doxorubicin, vincristine, and prednisone. Some patients may also receive an antibody called rituximab. Patients will receive one to three cycles of this treatment, depending on their response to the drugs. (One cycle consists of 5 days on drug therapy followed by a 16-day rest period.) Several days before the transplant procedure, patients will start conditioning chemotherapy with cyclophosphamide and fludarabine. Three days after the conditioning therapy is completed, the stem cells will be infused. To help prevent GVHD, patients will take four doses of methotrexate (by vein) shortly after the transplant, and cyclosporine (by mouth or by vein) for about 6 months after the transplant. The average hospital stay for stem cell transplantation is 3 to 4 weeks. After discharge, patients will return for frequent follow-up visits for 3 months. Monthly visits will be scheduled for the next 3 months, then every 3 months for the next 18 months, and less frequently for a total of at least 5 years post-transplant. These visits will include bone marrow aspirates and biopsies, blood draws, and other tests to monitor disease status.

NCT ID: NCT00044759 Completed - Clinical trials for Hematologic Neoplasms

Study Comparing the Safety and Efficacy of Piperacillin/Tazobactam to Cefepime in Patients With Hematologic Malignancy or Lymphoma

Start date: n/a
Phase: Phase 3
Study type: Interventional

To compare the safety and efficacy of piperacillin/tazobactam (4 g/500 mg) administered intravenously every 6 hours to cefepime (2 g) administered intravenously every 8 hours for the empiric treatment of neutropenic fever in patients with a hematologic malignancy or lymphoma.

NCT ID: NCT00038376 Completed - Clinical trials for Hematologic Neoplasms

Phase II Study Of Roferon and Accutane For Patients With T-Cell Malignancies

Start date: May 8, 1990
Phase: Phase 2
Study type: Interventional

The purpose of this study is to determine the response rate of patients with T-cell malignancies to combination therapy using interferon-alpha (Roferon) and Isotretinoin (Accutane).

NCT ID: NCT00028418 Completed - Leukemia Clinical Trials

Clofarabine in Chronic Lymphocytic Leukemia

Start date: February 1999
Phase: Phase 1
Study type: Interventional

This is a dose-escalation study to determine the maximum tolerated dose and toxic effects of clofarabine in patients with chronic lymphocytic leukemia and other acute leukemias. Clofarabine is a synthesized hybrid nucleoside analog, which is believed to possess the better qualities of fludarabine and chlorodeoxyadenosine, the 2 most active agents against lymphoproliferative disorders. Thus, it is hoped that this drug will be more active and less toxic than similar drugs.

NCT ID: NCT00013533 Completed - Lymphoma Clinical Trials

Pilot Study of Non-Myeloablative, HLA-Matched Allogeneic Stem Cell Transplantation for Pediatric Hematopoietic Malignancies

Start date: March 14, 2001
Phase: Early Phase 1
Study type: Interventional

Background: - Allogeneic blood and marrow stem cell transplantation (BMT) plays an important role in the curative treatment of a number of pediatric malignancies. Unfortunately, the success of conventional allogeneic BMT is limited in part by the multiple toxicities associated with myeloablative preparative regimens. - Non-myeloablative pre-transplant regimens are associated with less toxic side effects than standard BMT. Recently, a novel immunosuppressive, non-myeloablative pre-transplant chemotherapy regimen has been shown to facilitate complete donor engraftment in an adult trial at the NCI. Objectives: The primary objective of this protocol is to evaluate the efficacy and safety of this treatment approach in pediatric patients with hematopoietic malignancies Eligibility: Inclusion Criteria Age: Patient must be greater than or equal to 5 years and less than 22 years of age. Diagnosis: - Hodgkin s and Non-Hodgkin s Lymphoma: Refractory disease or relapse after salvage regimen. - Acute Myelogenous Leukemia: History of bone marrow relapse in remission (CR) #2 or greater. - Acute Lymphocytic Leukemia: History of bone marrow relapse in CR #2 or greater (CR#1 with Philadelphia chromosome positive or prior induction failure). - Acute Hybrid Leukemia including mixed lineage, biphenotypic and undifferentiated: History of bone marrow relapse in CR #2 or greater (CR#1 with Philadelphia chromosome positive or prior induction failure). - Myelodysplastic Syndrome: RAEB or RAEB-t with less than 10% blasts in marrow and blood. - Chronic Myelogenous Leukemia: Chronic phase or accelerated phase with less than 10% blasts in marrow and blood. - Juvenile Myelomonocytic Leukemia: less than 10% blasts in marrow and blood. Prior Therapy: Chemotherapy to achieve above criteria allowed. Prior BMT allowed as long as at least day 100+ post-prior BMT, no evidence of GVHD, and no detectable residual donor chimerism. Donor: First degree related donors, who are HLA matched (single HLA-A or B locus mismatch allowed), weight greater than or equal to 15 kilograms, and who meet standard donation criteria will be considered. The same donor from a prior BMT is allowed. ECOG Performance Status: 0, 1, or 2. and life expectancy: greater than 3 months. Liver Function: Serum direct bilirubin less than 2.0 mg/dL and serum ALT and AST values less than or equal to 2.5x upper limit of normal. (Values above these levels may be accepted if due to malignancy.) Renal Function: Age adjusted normal serum creatinine or Cr clearance greater than or equal to 60 mL/min/1.73 m(2). Pulmonary Function: DLCO greater than or equal to 50%. Cardiac Function: LVEF greater than or equal to 45% by MUGA or LVSF greater than or equal to 28% by ECHO Exclusion Criteria - Active CNS malignancy: Tumor mass on CT or leptomeningeal disease. (Patients with a history of CNS involvement and no current evidence of CNS disease are allowed.) - HIV infection, active hepatitis B or C infection: HbSAg or HCV seropositive and elevated liver transaminases. - Fanconi Anemia. - Lactating or pregnant females. Design: Pilot Study - Initial evaluation: Patient and donor will be screened for eligibility. G-CSF primed bone marrow derived stem cells will be collected from the donor. - Induction/Consolidation chemotherapy: 1 to 3 cycles will be given every 22 days depending on disease response, CD4 count, and toxicities. - Lymphoma: fludarabine, etoposide, doxorubicin, vincristine, cyclophohamide, prednisone, and filgrastim (EPOCH-fludarabine). - Leukemia and MDS: Fludarabine, cytarabine, and filgrastim (FLAG). - Transplantation: Fludarabine and cyclophosphamide will be administered over 4 days followed by bone marrow transplant. Patients will remain hospitalized until bone marrow recovery. Patients will be monitored closely at the NIH for at least 100 days post-BMT. - Post-transplant CNS prophylaxis for ALL: Standard post-transplant CNS prophylaxis will be employed with intrathecal methotrexate to decrease the risk of CNS relapse for all patients with ALL. - Total number of recipient and donors to be accrued is 56.

NCT ID: NCT00005785 Completed - HIV Infection Clinical Trials

Stem Cell (Modified Bone Marrow) Transplantation in HIV-Infected Patients With Blood Cancer

Start date: September 1999
Phase: Phase 1
Study type: Interventional

This study will investigate the safety and effectiveness of a new stem cell transplant procedure to treat acute or chronic leukemia, multiple myeloma, myelodysplastic syndrome, Hodgkin's and non-Hodgkin's lymphoma in HIV-infected patients. HIV-infected patients usually are not offered bone marrow transplant treatments because they are at increased risk of dying from the intense chemotherapy and radiation therapy used for the procedure. This study uses a modified procedure, transplanting stem cells instead of bone marrow, designed to be less dangerous for such patients. Patients will also undergo a procedure called gene transfer to try to halt progression of their HIV infection. The procedure in this study differs from standard bone marrow transplantation in three ways: Stem cells will be transplanted instead of bone marrow. (Stem cells, which are produced by the bone marrow, mature into the different blood components-white and red cells and platelets.) The stem cell donor will be given a drug that releases these cells from their bone marrow into the blood stream. The cells will then be collected from the donor by apheresis, a procedure in which whole blood is drawn, the stem cells separated and removed, and the rest of the blood returned to the donor.); The procedure will use lower doses of chemotherapy than the conventional method, and will not use radiation therapy; or A laboratory-manufactured gene designed to obstruct HIV reproduction will be inserted into the stem cells, rendering future cells that develop from resistance to the virus. Prospective patients will be tested for matching with an HIV-negative donor (family member) and will undergo a medical history, physical examination and several tests (e.g., breathing tests, X-rays, etc.) to determine eligibility for the study. Study participants will then undergo apheresis to collect white blood cells called lymphocytes. Stem cells will be collected from the donor. Half the donated cells will have the HIV-resistant gene inserted; the other half will have a "control" gene inserted. Additional stem cells collected a second day will not be manipulated. All the donor cells will be frozen until transplantation. Patients will be given drugs (cyclophosphamide, fludarabine and cyclosporin) to prevent the donated cells from being rejected and to prevent them from damaging the patient's organs. The thawed stem cells will then be infused through a vein. After 30, 60 and 100 days, bone marrow cells and circulating lymphocytes will be checked to see how many are of donor cell origin. If less than 100 percent are of donor origin, more lymphocytes will be transfused. Patients will have physical examinations and blood tests once or twice a week for 2 to 3 months with and then will be followed periodically for at least 5 years.

NCT ID: NCT00003395 Completed - Lymphoma Clinical Trials

Arsenic Trioxide in Treating Patients With Advanced Hematologic Cancer

Start date: April 1998
Phase: Phase 1
Study type: Interventional

RATIONALE: Drugs used in chemotherapy use different ways to stop tumor cells from dividing so they stop growing or die. PURPOSE: Phase I trial to study the effectiveness of arsenic trioxide in treating patients who have advanced hematologic cancer.

NCT ID: NCT00001873 Completed - Multiple Myeloma Clinical Trials

The Role of Cyclosporine in Blood Cell Transplants With T-Cell Add-Back for Blood Cancers

Start date: February 22, 1999
Phase: Phase 2
Study type: Interventional

Cancers of the blood, sometimes referred to as hematologic malignancies, are disorders of bone marrow cells that lead to the failure of the normal function of bone marrow and the uncontrolled growth of cancerous cells in the bone marrow. These cancerous cells can spill over into the bloodstream and affect other organs causing widespread symptoms. The disease is life threatening because it blocks the normal function of the marrow, which is to produce red cells (preventing anemia), white cells (preventing infection), and platelets (preventing progression). Bone marrow transplants are a potential form of therapy for patients with hematologic malignancies. However, BMT is a complicated procedure and can be associated with dangerous side effects. In this study researchers are attempting to find ways to reduce the complications of BMT, so that it would be possible to use it more safely and can be offered more patients. In order to do this, researchers are developing new techniques to make BMT safer. It requires making small changes to the standard procedure, which may improve the outcome. The experimental procedures researchers are evaluating are: 1. <TAB>T-cell depleted peripheral blood progenitor cell (PBPC) transplantation 2. <TAB> Cyclosporine given immediately after the transplant 3. <TAB>Add-back of donor lymphocytes Patients undergoing these experimental techniques must be monitored closely to see if any benefit or harmful effects will occur. Information gathered from this study can be used to develop further research studies and potential new therapies for hematologic malignancies.

NCT ID: NCT00001872 Completed - Clinical trials for Graft vs Host Disease

Cell Selection for Bone Marrow Transplants to Prevent Graft-Versus-Host-Disease

Start date: February 2, 1999
Phase:
Study type: Observational

Blood contains different kinds of cells, white blood cells, red blood cells, and platelets. In order to treat certain diseases, specific cell types can be removed from blood and transplanted into patients. The process of removing white blood cells for the treatment of leukemia is called apheresis. This study will make available blood cell collections from volunteers genetically matched to various degrees with recipients in order to test and, if necessary, refine the process of removing white blood cell T-lymphocytes....

NCT ID: NCT00001748 Completed - Lymphoma Clinical Trials

HLA-Mismatched Peripheral Blood Mobilized Hematopoietic Precursor Cell Transplantation for Hematological Malignancies

Start date: June 1998
Phase: Phase 1
Study type: Interventional

Many patients with hematological malignancies potentially curable by bone marrow transplantation are not considered for transplantation because an HLA identical family or unrelated donor is unavailable. For these patients the only curative option is a transplant from a partially matched family donor. Such transplants are feasible but are less successful than matched sibling donor transplants. The main problems with mismatched transplants are graft rejection, graft-vs-host disease, and regimen-related mortality. This restricts the use of mismatched transplants to patients less than 45 years at high risk of dying from the hematological malignancy. This protocol evaluates a new preparative regimen designed to ensure stem cell engraftment by increased immunosuppression, followed by a G-CSF mobilized T cell depleted, stem cell rich, peripheral blood progenitor cell (PBPC) transplant from a mismatched related donor in patients with high risk hematological malignancies. This phase I study evaluates engraftment and GVHD following T cell depleted, HLA-mismatched PBPC transplants. Stopping rules will be used to make modifications to the protocol in the event of graft failure. The end points of the study are graft take, acute and chronic GVHD, leukemic relapse, transplant-related mortality, death and leukemia-free survival. Patients will be followed up for 5 years. It is planned to treat up to 35 patients aged between 10 and 45 years.