View clinical trials related to Hodgkin Disease.
Filter by:The main purpose of this study is to examine the outcome of a combined bone marrow and kidney transplant from a partially matched related (haploidentical or "haplo") donor. This is a pilot study, you are being asked to participate because you have a blood disorder and kidney disease. The aim of the combined transplant is to treat both your underlying blood disorder and kidney disease. We expect to have about 10 people participate in this study. Additionally, because the same person who is donating the kidney will also be donating the bone marrow, there may be a smaller chance of kidney rejection and less need for long-term use of anti-rejection drugs. Traditionally, very strong cancer treatment drugs (chemotherapy) and radiation are used to prepare a subject's body for bone marrow transplant. This is associated with a high risk for serious complications, even in subjects without kidney disease. This therapy can be toxic to the liver, lungs, mucous membranes, and intestines. Additionally, it is believed that standard therapy may be associated with a higher risk of a complication called graft versus host disease (GVHD) where the new donor cells attack the recipient's normal body. Recently, less intense chemotherapy and radiation regimens have been employed (these are called reduced intensity regimens) which cause less injury and GVHD to patients, and thus, have allowed older and less healthy patients to undergo bone marrow transplant. In this study, a reduced intensity regimen of chemotherapy and radiation will be used with the intent of producing fewer toxicities than standard therapy. Typical therapy following a standard kidney transplant includes multiple lifelong medications that aim to prevent the recipient's body from attacking or rejecting the donated kidney. These are called immunosuppressant drugs and they work by "quieting" the recipient's immune system to allow the donated kidney to function properly. One goal in our study is to decrease the duration you will need to be on immunosuppressant drugs following your kidney transplant as the bone marrow transplant will provide you with the donor's immune system which should not attack the donor kidney.
This phase I trial studies the side effects and best dose of MORAb-004 in treating young patients with recurrent or refractory solid tumors or lymphoma. Monoclonal antibodies, such as MORAb-004, can block cancer growth in different ways. Some block the ability of cancer to grow and spread. Others find cancer cells and help kill them or carry cancer-killing substances to them
The purpose of this study is compare the efficacy of haplo-cord transplant (investigational arm) with that of a more commonly used procedure in which only the cells contained in one or two umbilical cords are infused (standard arm). We hypothesize that reduced intensity conditioning and haplo-cord transplant results in fast engraftment of neutrophils and platelets, low incidences of acute and chronic graft versus host disease, low frequency of delayed opportunistic infections, reduced transfusion requirements, shortened length of hospital stay and promising long term outcomes. We also hypothesize that umbilical cord blood selection can prioritize matching and better matched donors can be identified rapidly for most subjects.
For patients with lymphoma that recurs after chemotherapy, bone marrow transplantation using cells from a healthy donor represents potentially curative treatment. In these individuals, cure is possible because transplantation of healthy donor immune cells can fight the lymphoma in the patient. The goal of this work is to test a strategy that activates the healthy donor immune cells so that they more effectively fight lymphoma and can result in an increased cure rate for these patients. Our group has previously studied CpG, an immune activating medication, in patients with lymphoma and demonstrated modest anti-tumor responses. We now have a more potent form of CpG which we intend to test to see if it will better activate the donor immune cells and result in shrinkage of tumor throughout the entire body, not just at the injected site.
The study hypothesis is that lenalidomide and romidepsin (and dexamethasone for patients with myeloma) will have an acceptable toxicity profile and that in combination will have sufficient activity in the target population (including those previously refractory to HDACi monotherapy) to warrant further investigation.
This trial will study brentuximab vedotin to find out whether it is an effective treatment for Hodgkin lymphoma (HL) and peripheral T-cell lymphoma (PTCL). Participants in this study will be older or will have other conditions that make them unable to have standard chemotherapy treatment. The study will look at brentuximab vedotin alone and combined with other drugs.
This open-label, randomized, 2-arm, multicenter, phase 3 study has the primary objective of comparing the modified progression-free survival (mPFS) obtained with brentuximab vedotin (ADCETRIS®) plus AVD (doxorubicin [Adriamycin], vinblastine, and dacarbazine; abbreviated A+AVD) versus that obtained with ABVD (doxorubicin [Adriamycin],bleomycin, vinblastine, and dacarbazine) for the frontline treatment of advanced classical Hodgkin lymphoma(HL)
This study will help researchers learn more about non-Hodgkin's lymphoma and Hodgkin's lymphoma and how it is treated in Kenya. Researchers want to see if having certain viruses like Epstein Barr Virus (EBV), Human Immunodeficiency Virus (HIV), and Kaposi's Sarcoma Herpes Virus (KSHV) affects lymphoma. Patients in Kenya who agree to be in this study will let the resesarchers look at their medical record, follow their normal cancer care, and have blood drawn to look at different proteins and viruses. Researchers would also like to look at part of the original tumor that was taken out of each patient. Some of these samples will be stored at Kenyatta National Hospital and research will be done on them later. This study does not involve any change in treatment, but only allows the study team to follow how a patient in Kenya with lymphoma is treated.
This phase II pilot trial studies how well brentuximab vedotin with or without nivolumab works in treating patients with CD30+ lymphoma that has come back after a period of improvement or does not respond to treatment. Biological therapies, such as brentuximab vedotin, may stimulate the immune system in different ways and stop cancer cells from growing. Monoclonal antibodies, such as nivolumab may interfere with the ability of tumor cells to grow and spread. Giving brentuximab vedotin with or without nivolumab may work better in treating patients with CD30+ lymphoma.
High-dose chemotherapy followed by autologous (the patient's own) peripheral blood (circulating blood) stem cell (cells that divide to form white cells, red cells and cells that help clot) transplantation is a conventional treatment for patients with lymphoma (cancer of lymph glands) and Hodgkin's disease (cancer of lymph glands) after first relapse (recurrence of disease). For patients who did not have a complete response after traditional chemotherapy, the chance is high that the tumor will return even after high-dose chemotherapy. To improve the response and decrease the chance of relapse, doctors have used rituximab, an antibody that kills lymphoma cells, both before and after transplantation. These doctors have reported that more patients had control of the tumor for an extended period of time using rituximab with high-dose chemotherapy with autologous stem cell transplantation. How widely this is applicable is not known. The purpose of this clinical research trial is to confirm that there is a good control of tumor in patients with lymphoma or Hodgkin's disease treated with rituximab and conventional stem cell transplantation.