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Lymphoproliferative Disorders clinical trials

View clinical trials related to Lymphoproliferative Disorders.

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NCT ID: NCT00124189 Completed - Clinical trials for Chronic Lymphoproliferative Diseases

Safety and Dose Study of GRN163L to Treat Patients With Chronic Lymphoproliferative Disease(CLD)

Start date: July 2005
Phase: Phase 1
Study type: Interventional

The purpose of this study is to determine the safety and maximum tolerated dose of GRN163L in treating patients with refractory or relapsed chronic lymphoproliferative disease.

NCT ID: NCT00112593 Completed - Clinical trials for Unspecified Adult Solid Tumor, Protocol Specific

Fludarabine and Total-Body Irradiation Followed By Donor Stem Cell Transplant and Cyclosporine and Mycophenolate Mofetil in Treating HIV-Positive Patients With or Without Cancer

Start date: November 1999
Phase: N/A
Study type: Interventional

This clinical trial studies the side effects and best dose of giving fludarabine and total-body irradiation (TBI) together followed by a donor stem cell transplant and cyclosporine and mycophenolate mofetil in treating human immunodeficiency virus (HIV)-positive patients with or without cancer. Giving low doses of chemotherapy, such as fludarabine, and TBI before a donor bone marrow or peripheral blood stem cell transplant helps stop the growth of cancer or abnormal cells and helps stop 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 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 (CSP) and mycophenolate mofetil (MMF) after the transplant may stop this from happening.

NCT ID: NCT00089011 Completed - Clinical trials for Recurrent Mantle Cell Lymphoma

Tacrolimus and Mycophenolate Mofetil in Preventing Graft-Versus-Host Disease in Patients Who Have Undergone Total-Body Irradiation With or Without Fludarabine Phosphate Followed by Donor Peripheral Blood Stem Cell Transplant for Hematologic Cancer

Start date: April 2004
Phase: Phase 2
Study type: Interventional

This phase II trial studies how well tacrolimus and mycophenolate mofetil works in preventing graft-versus-host disease in patients who have undergone total-body irradiation (TBI) with or without fludarabine phosphate followed by donor peripheral blood stem cell transplant for hematologic cancer. Giving low doses of chemotherapy, such as fludarabine phosphate, and TBI before a donor peripheral blood stem cell transplant helps stop the growth of cancer cells. It also stops the patient's immune system from rejecting the donor's stem cells. The donated stem cells may replace the patient's immune system and help destroy any remaining cancer 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 tacrolimus and mycophenolate mofetil after the transplant may stop this from happening.

NCT ID: NCT00078858 Completed - Clinical trials for Chronic Myelomonocytic Leukemia

Mycophenolate Mofetil and Cyclosporine in Reducing Graft-Versus-Host Disease in Patients With Hematologic Malignancies or Metastatic Kidney Cancer Undergoing Donor Stem Cell Transplant

Start date: September 2003
Phase: Phase 1/Phase 2
Study type: Interventional

This phase I/II trial studies whether stopping cyclosporine before mycophenolate mofetil is better at reducing the risk of life-threatening graft-versus-host disease (GVHD) than the previous approach where mycophenolate mofetil was stopped before cyclosporine. The other reason this study is being done because at the present time there are no curative therapies known outside of stem cell transplantation for these types of cancer. Because of age or underlying health status, patients may have a higher likelihood of experiencing harm from a conventional blood stem cell transplant. This study tests whether this new blood stem cell transplant method can be made safer by changing the order and length of time that immune suppressing drugs are given after transplant.

NCT ID: NCT00070382 Completed - Lymphoma Clinical Trials

Darbepoetin Alfa Compared With Epoetin Alfa in Treating Anemia in Patients Receiving Chemotherapy for Cancer

Start date: August 2003
Phase: Phase 3
Study type: Interventional

RATIONALE: Darbepoetin alfa and epoetin alfa may stimulate red blood cell production and treat anemia in patients who are receiving chemotherapy. It is not yet known whether darbepoetin alfa is more effective than epoetin alfa in treating patients with anemia. PURPOSE: Randomized phase III trial to compare the effectiveness of darbepoetin alfa with that of epoetin alfa in treating anemia in patients who are receiving chemotherapy for cancer.

NCT ID: NCT00068146 Completed - Lymphoma Clinical Trials

Fluorodeoxyglucose-Positron Emission Tomography (FDG-PET) to Evaluate Autoimmune Lymphoproliferative Syndrome (ALPS) and ALPS-associated Lymphoma

Start date: September 19, 2002
Phase:
Study type: Observational

This study will evaluate the usefulness of FDG-PET scanning in distinguishing autoimmune lymphoproliferative syndrome (ALPS) from lymphoma. Lymphoma is cancer of the lymph system. ALPS is a condition involving persistent enlargement of the lymph glands, spleen, or liver, and a range of other problems relating to blood cell counts and abnormal immune activity, in which the immune system attacks healthy tissues. People with ALPS particularly those with an abnormal Fas gene also have an increased risk of developing lymphoma. The Fas gene codes for a protein that causes immune cells called lymphocytes to die when they are no longer needed. FDG-PET is a new nuclear imaging test that is very effective in detecting lymphoma. It is important to identify these cancers as quickly as possible, since some are very curable when caught early. Since ALPS and lymphoma share several common characteristics, a reliable, non-invasive method of distinguishing the two, such as FDG-PET might offer, is crucial. FDG-PET uses a radioactive sugar molecule to produce images that show the metabolic activity of tissues. Because cancer cells grow and divide more rapidly than normal cells, they metabolize more sugar for fuel. This increased activity identifies them as cancer in FDG-PET scanning. For this procedure, the subject is injected with the sugar molecule and lies in a doughnut-shaped machine (PET camera) for the imaging. Adults and children 10 years old or older with ALPS, with or without lymphoma, may be eligible for this study. Candidates will be screened with a physical examination, blood tests, and computed tomography (CT) scan. Participants will have an FDG-PET scan and a DEXA scan. The DEXA scan measures fat and non-fat tissue and is used help interpret the FDG-PET results. For this test, the subject lies on a table while a fast X-ray is taken from head to toe. Patients who develop signs or symptoms suggesting the development or recurrence of lymphoma (such as further enlargement of lymph glands, unexplained fever or weight loss, or abnormal scans) may undergo a tissue biopsy. For this procedure, a small piece of lymph or other tissue is surgically removed for examination under the microscope. In addition, patients who develop these symptoms may be asked to undergo additional FDG-PET scans up to two a year in patients without lymphoma, and as many as needed in patients with lymphoma to evaluate their response to treatment and guide future therapy.

NCT ID: NCT00066469 Completed - Clinical trials for Lymphoproliferative Disorder

Cyclophosphamide, Rituximab, and Either Prednisone or Methylprednisolone in Treating Patients With Lymphoproliferative Disease After Solid Organ Transplantation

Start date: April 2004
Phase: Phase 2
Study type: Interventional

RATIONALE: Drugs used in chemotherapy such as cyclophosphamide, prednisone, and methylprednisolone use different ways to stop cancer cells from dividing so they stop growing or die. Monoclonal antibodies such as rituximab can locate cancer cells and either kill them or deliver cancer-killing substances to them without harming normal cells. Combining cyclophosphamide and either prednisone or methylprednisolone with rituximab may be effective in treating lymphoproliferative disease following organ transplantation. PURPOSE: Phase II trial to study the effectiveness of combining cyclophosphamide and either prednisone or methylprednisolone with rituximab in treating patients who have Epstein-Barr virus-positive lymphoproliferative disease following organ transplantation.

NCT ID: NCT00065390 Completed - Clinical trials for Lymphoproliferative Disorder

Pyrimethamine to Treat Autoimmune Lymphoproliferative Syndrome

Start date: July 2003
Phase: Phase 1
Study type: Interventional

This study will examine whether the drug pyrimethamine can shrink lymph nodes and spleen in patients with autoimmune lymphoproliferative syndrome (ALPS). In this disease, lymphocytes (white blood cells) do not die as they normally would. As a result, patients have enlarged lymph glands, spleen, or liver, and other problems that may involve blood cell counts and autoimmune disease (overactivity of the immune system). Pyrimethamine is an orally administered antibiotic that has been used to treat or prevent malaria and toxoplasma, and may be effective in shrinking lymph nodes and spleen. Patients with ALPS who are between 2 and 70 years of age and have had lymph gland enlargement for at least 1 year may be eligible for this study. Candidates will be screened with a medical history and physical examination, blood tests, and possibly a bone marrow test. Females of reproductive age will be screened with a urine pregnancy test. Women who are capable of becoming pregnant must use an effective method of birth control during the entire study period, because, taken during early months of pregnancy, pyrimethamine can cause birth defects in the fetus. Women who are pregnant or nursing are excluded from the study. Participants will undergo the following tests and procedures: - CT scan: For this test, the patient lies still in the CT scanner while images are taken of the neck, chest, and stomach area. A contrast dye is injected into a vein to brighten the CT images. Very young children will be evaluated on a case by case basis to determine whether a CT scan will be performed. - Bone marrow biopsy: Participants undergo this test to rule out underlying bone marrow disease if they have not had a bone marrow test done in the last six months prior to enrolling in pyrimethamine study, as pyrimethamine can affect bone marrow function. Under local anesthesia, a needle is inserted into the back part of the hipbone and a small amount of marrow is removed. (Children are sedated for this test.) - Leukapheresis: This is a procedure for collecting a small proportion of circulating white blood cells while conserving the majority of blood cells. Specifically, blood is drawn from a needle placed in an arm vein and is directed into a cell separator machine, which separates the blood cells by spinning. A small proportion of circulating white cells are removed, and the red cells, platelets, plasma and majority of white cells are returned to the patient's blood circulation. Only patients who are 7 years of age or older and weigh at least 55 pounds undergo this procedure. Other participants who choose not to have apheresis will have about 3 tablespoons of blood drawn instead. - Pyrimethamine administration: When the above tests are completed, participants begin taking pyrimethamine. The dose is determined according to the individual's weight and is gradually increased during the study period. Patients take the drug twice a week for a total of 12 weeks. - Blood tests: Blood samples are collected during weeks 2, 4, 6, 8, and 10 after beginning treatment, and 2 weeks after the last dose of pyrimethamine. The purpose of these blood tests is to check for possible drug-related side effects. Patients who develop a skin rash, mouth sores or other side effects may have one or more doses of the treatment drug withheld. When indicated, the patient will be directed to stop taking the study drug. If needed, drug side effects will be treated with a vitamin supplement, folinic acid, taken by mouth, 3 times weekly. - Evaluations at the NIH Clinical Center will comprise of a pretreatment visit, one end of treatment visit at the end of 12 weeks and an optional post-treatment visit 3months after stopping pyrimethamine therapy. Patients who respond well to treatment may be asked to return to NIH for additional visits at 3, 6, and 12 months after the treatment has ended for repeat evaluations. If their lymph glands or spleen become much larger after stopping pyrimethamine, they will be offered treatment for another 12 weeks. If they respond to the second course of treatment, they will return to NIH again after 3, 6, and 12 months. If the symptoms return again, patients will be asked to resume treatment for an additional 6 months or more. They will have blood drawn periodically by their private physician and will return to NIH for evaluation every 12 weeks.

NCT ID: NCT00064246 Completed - Clinical trials for Recurrent Adult Diffuse Large Cell Lymphoma

Yttrium Y 90 Ibritumomab Tiuxetan and Rituximab in Treating Patients With Post-Transplant Lymphoproliferative Disorder

Start date: July 2003
Phase: Phase 1/Phase 2
Study type: Interventional

Phase I/II trial to study the effectiveness of combining yttrium Y 90 ibritumomab tiuxetan with rituximab in treating patients who have localized or recurrent lymphoproliferative disorder after an organ transplant. Monoclonal antibodies such as yttrium Y 90 ibritumomab tiuxetan and rituximab can locate cancer cells and either kill them or deliver radioactive cancer-killing substances to them without harming normal cells

NCT ID: NCT00063648 Completed - Liver Disease Clinical Trials

Detection and Cytotoxic T Lymphocyte Therapy of Post-Transplant Lymphoproliferative Disorder After Liver Transplant

Start date: May 2002
Phase: Phase 1
Study type: Interventional

Despite advances in medical and gene therapy, orthotopic liver transplantation remains the only definitive therapeutic option for children with end-stage liver disease. Recent advances in pre-, intra-, and early post-transplant care have resulted in a dramatic improvement in survival of the pediatric liver transplant patient. The broad long-range goal of our research program is directed at enhancing the patient's long-term survival. Our primary focus relates to obligate life-long immunosuppression, with its inherent complications including severe infection and development of cancer. These two complications come together in a single disease, Epstein-Barr Virus (EBV)- associated post-transplant lymphoproliferative disorder (PTLD). EBV, a latent human lymphotrophic herpes virus infects and immortalizes B cells. Primary infection usually occurs via salivary exchange and results in a mild, self-limited illness followed by life-long EBV-specific T cell controlled EBV latency. T cell-based immunosuppression prevents allograft rejection, however, it also suppresses cytotoxic T lymphocyte (CTL) function, generating an environment in which EBV-infected cells can proliferate. Patients receiving life-long T cell-based immunosuppression have an increased risk of developing PTLD due to their inability to produce normal immunoregulatory responses. This disease is particularly devastating to the pediatric patient as its incidence is at least 4-fold greater than in the adult liver transplant patient population. In fact, PTLD is the number one cause of death following pediatric liver transplantation. At this time, there is no definitive method of prospectively detecting, diagnosing, or treating PTLD, and current treatment protocols place the liver allograft and patient at risk. Therefore, a diagnostic tool that is both sensitive and specific, and a treatment strategy with low toxicity are greatly needed to decrease the morbidity and mortality suffered by the pediatric liver transplant patient with PTLD. Our proposed studies will support our hypothesis that the combination of a persistently elevated EBV load in the setting of a diminished immune response to EBV will be an early risk indicator associated with PTLD development, and that pre-emptive treatment utilizing autologous adoptive EBV-specific CTL immunotherapy will provide a low toxicity treatment option.