View clinical trials related to Hodgkin Disease.
Filter by:RATIONALE: Beclomethasone dipropionate may be effective in preventing acute graft-versus-host disease in patients undergoing a stem cell transplant for hematologic cancer. PURPOSE: This randomized phase II trial is studying how well beclomethasone dipropionate works in preventing acute graft-versus-host disease in patients undergoing a donor stem cell transplant for hematologic cancer.
The purpose of this study is to find the highest safe dose of Iodine-131 Tositumomab (Bexxar®) that can be given to patients who have relapsed/refractory Hodgkin's lymphoma, what side effects these patients get when they take Bexxar® and if Bexxar® is effective in treating relapsed/refractory Hodgkin's lymphoma. Bexxar® works by delivering doses of radiation to cancer cells.
This study is for patients with lymphoproliferative malignancies that have progressed after receiving a previous treatment (relapsed) or are no longer responding to treatment (refractory). To be in this study, patients must have certain types of Hodgkin's lymphoma (HL), peripheral T-cell lymphoma (PTCL), or B-cell lymphoma, including Waldenstrom's macroglobulinemia. This study is being done to find doses of the combination of pralatrexate and gemcitabine with vitamin B12 and folic acid that can be safely given to patients with these types of lymphoma and explore the effectiveness of the treatment.
This is a single-arm, open-label Phase II study evaluating the activity of Lenalidomide in patients with relapsed or refractory Hodgkin's lymphoma.
RATIONALE: Vaccines made from a tumor antigen may help the body build an effective immune response to kill tumor cells. PURPOSE: This phase I/II trial is studying the side effects and how well vaccine therapy works in treating patients who have received first-line therapy for Hodgkin's lymphoma.
The purpose of this study is to determine the efficacy and safety of transplanting StemEx® in patients with certain hematological malignancies. For these patients, it is suggested that StemEx® can improve upon the outcome of transplanting a single, unmanipulated cord blood unit by significantly increasing the number of stem/progenitor cells available to the patient.
Cytokine-induced killer ( CIK ) cells have been shown by our lab to be cytolytic against both autologous and allogeneic acute myeloid leukemia ( AML ) cells. Large scale expansion of CIK cells has also been shown to be feasible in healthy allogeneic stem cell donors as well as in patients undergoing mobilization for autologous transplant. Donor lymphocyte infusion (DLI) has been shown to be active against some haematological malignancies including CML, AML, MDS,NHL and Hodgkin's disease. These donor lymphocytes can be further activated in vitro to become CIK cells. At least 2 other centers in the world have given allogeneic CIK cells for patients relapsing post allogeneic transplant for a variety of haematological malignancies. These early reports have demonstrated feasibility, absence of increased GVHD and possible efficacy in some cases. We are proposing a Phase I /II study on the feasibility / efficacy of immunotherapy with allogeneic CIK cells for patients who relapse after allogeneic marrow transplant for their haematological malignancies. These patients have to be either refractory to conventional donor lymphocyte infusion, or need a larger number of donor lymphocyte than could be provided by unmanipulated donor lymphocytes. Donor lymphocytes will be collected and cultured in GMP facilities to maturity, then infused into patients. This will be given in graded doses at 4 weekly intervals and continued on in the absence of GVHD till remission is achieved or disease progression occurs. Patients may receive various forms of chemotherapy appropriate to the clinical condition in each case before the allogeneic CIK infusion. Efficacy will be assessed by comparing the response to allogeneic CIK infusion vs that to due to conventional DLI, ie response to the two different treatment using DLI response as the comparator. We expect about 10 such cases to be done over the next 3 years. Significant statistics is unlikely to be generated but observation and description of the response can generate useful information for presence or not of the efficacy of such a treatment. If clinical efficacy and superiority over conventional DLI is demonstrated, then future allogeneic CIK may take the place of DLI in this group of poor prognosis patients who relapse after allogeneic transplant .
This phase I trial is studying the side effects and best dose of bevacizumab and cediranib maleate in treating patients with metastatic or unresectable solid tumor, lymphoma, intracranial glioblastoma, gliosarcoma or anaplastic astrocytoma. Monoclonal antibodies, such as bevacizumab, can block cancer growth in different ways. Some block the ability of cancer cells to grow and spread. Others find cancer cells and help kill them or carry cancer-killing substances to them. Cediranib maleate may stop the growth of cancer cells by blocking some of the enzymes needed for cell growth. Bevacizumab and cediranib maleate may also stop the growth of cancer cells by blocking blood flow to the cancer. Giving bevacizumab together with cediranib maleate may kill more cancer cells.
Participants with non-Hodgkin lymphoma (NHL) or Hodgkin disease (HD) will be assigned to one of 2 arms based on the immunophenotype of their lymphoma. (A)Participants with CD20(-) lymphoma will undergo mobilization with granulocyte colony-stimulating factor (G-CSF) and plerixafor. (B) Participants with CD20(+) lymphomas will undergo mobilization with rituximab, G-CSF, and plerixafor. They will receive a weekly dose of rituximab beginning 1 week prior to, and continuing until 2 weeks after, the first dose of G-CSF. Participants in both groups will receive G-CSF twice daily for 4 days. In the evening on Day 4, a dose of plerixafor will be administered. Apheresis will be initiated the next morning. Participants will continue to receive G-CSF twice daily and to receive the evening dose of plerixafor followed by apheresis the next morning for up to a total of 4 aphereses or until ≥5*10^6 CD34+ cells/kg are collected. Participants who are transplanted will be monitored for the time to polymorphonuclear leukocytes (PMN), platelets (PLT), and lymphocyte engraftment. Follow-up assessments will be done at 100 days, and 6 and 12 months post-transplantation.
The purpose of this study is to compare the toxicities of the COPPEBVCAD vs BEACOPP vs ABVD regimens.