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Hodgkin Disease clinical trials

View clinical trials related to Hodgkin Disease.

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NCT ID: NCT00581815 Completed - Breast Cancer Clinical Trials

Spectroscopy With Surface Coils and Decoupling

Start date: February 1997
Phase: Phase 1
Study type: Interventional

The purpose of this study is to obtain chemical information from part of your body without a biopsy. This is done using a technique called magnetic resonance spectroscopy (MRS) which is similar to magnetic resonance imaging (MRI) except that signals are detected from the chemicals (spectroscopy) naturally present in your body using radio waves. To receive this information from your body, small loops of wire (surface coils), placed near the tissue of interest, may be used to more effectively detect signals that come from the chemicals in your body. The investigators may use a second radio channel simultaneously, which will allow us to obtain greater chemical information (decoupling). The results may also help us to understand how this study can be used to help other patients with your condition.

NCT ID: NCT00579917 Completed - Multiple Myeloma Clinical Trials

Behavioral Intervention For BMT/SCT Survivors

BMT/SCT
Start date: January 2005
Phase: N/A
Study type: Observational

The purpose of this study is to understand how to help survivors of bone marrow transplant and stem cell transplant (BMT/SCT) with emotional distress. BMT/SCT has become a more common type of treatment for cancer or hematological disorder (blood disease). For this reason, there is concern that adjustment after treatment may be difficult for many persons. We have found that about 25% of BMT/SCT survivors still feel anxious and distressed about their illness and its treatment after at least one year following transplant. This study is one of the first to study the impact of counseling on BMT/SCT survivors. The study is being carried out at Memorial Sloan-Kettering Cancer Center, Mount Sinai Medical Center, and Hackensack University Medical Center.

NCT ID: NCT00578539 Terminated - Leukemia Clinical Trials

T-Reg Cell Kinetics, Stem Cell Transplant, REGALE

REGALE
Start date: October 2007
Phase: N/A
Study type: Interventional

Patients have a type of blood cell disorder that is very hard to cure. We are now suggesting a treatment that might help patients live longer without disease than other treatment plans would. This treatment is known as a stem cell transplant. We believe this may help patients as it allows us to give much stronger doses of drugs and radiation to kill the diseased cells than we could give without the transplant. We also think that the healthy cells may help fight any diseased cells left after the transplant. Stem Cells are special "mother" cells that are found in the bone marrow (the spongy tissue inside bones), although some are also found in the bloodstream (peripheral blood). As they grow, they become either white blood cells which fight infection, red blood cells which carry oxygen and remove waste products from the organs and tissues or platelets, which enable the blood to clot. For the transplant to take place, we will collect these stem cells from a "donor" (a person who agrees to donate these cells) and give them to recipient. Patients do not have a sibling that is a perfect match, so the stem cells will come from a donor who is the best match available. This person may be a close relative or an unrelated person whose stem cells best "matches" the patients, and who agrees to donate stem cells. Before the transplant, two very strong drugs plus total body irradiation will be given to the patient (pre-conditioning). This treatment will kill most of the blood-forming cells in the bone marrow. We will then give the patient the healthy stem cells. Once these healthy stem cells are in the bloodstream they will move to the bone marrow (graft) and begin producing blood cells that will eventually mature into healthy red blood cells, white blood cells and platelets. This research study will also use CAMPATH-1H as a pre-treatment. CAMPATH-1H is an antibody against certain types of blood cells. CAMPATH-1H is important because it stays active in the body for a long time after infusion, which means it may work longer at preventing GvHD symptoms. The stem cell transplant described above is considered to be "standard" treatment. We would like to collect additional blood as described below in order to evaluate how the immune system is recovering. We are asking permission to draw blood from the patient so that we can measure the number of certain blood cells called T regulatory cells. T regulatory cells are special immune cells that can control or regulate the body's immune response. We want to determine whether T regulatory cells are important participants in graft versus host disease (GVHD), infection and relapse. In GVHD, certain cells from the donated marrow or blood (the graft) attack the body of the transplant patient (the host). GVHD can affect many different parts of the body. The skin, eyes, stomach and intestines are affected most often. GVHD can range from mild to life-threatening. We do not know whether T regulatory cells can modify these conditions. We want to measure these T regulatory cells and learn if these cells do influence these conditions. If we learn that T regulatory cells do affect these conditions, then it may be possible to modify these cells for the benefit of transplant patients.

NCT ID: NCT00578461 Terminated - Cancer Clinical Trials

T-Regulatory Cell Kinetics, Stem Cell Transplantation, REGKINE

REGKINE
Start date: October 2007
Phase: N/A
Study type: Interventional

Patients are being asked to participate in this study because they have a cancer in their blood (such as leukemia or lymphoma) or myelodysplastic/myeloproliferative (pre-leukemia). We suggest a treatment that might help them live longer without disease than other treatment plans would. This treatment is known as a stem cell transplant. We believe this may help the patient as it allows us to give much stronger doses of drugs and radiation to kill the diseased cells than we could give without the transplant. We also think that the healthy cells may help fight any diseased cells left after the transplant. Stem Cells are special "mother" cells that are found in the bone marrow (the spongy tissue inside bones), although some are also found in the bloodstream (peripheral blood). As they grow, they become either white blood cells which fight infection, red blood cells which carry oxygen and remove waste products from the organs and tissues or platelets, which enable the blood to clot. For the transplant to take place, we will collect these stem cells from a "donor" (a person who agrees to donate these cells) and give them to the patient. The patient has a type of blood cell cancer or other blood problem that is very hard to cure with standard treatments and they will receive a stem cell transplant (SCT). If they have a brother or sister that is a perfect match and agrees to donate, the stem cells will come from him/her. Before the transplant, two very strong drugs plus total body irradiation will be given to the patient (pre-conditioning). This treatment will kill most of the blood-forming cells in the bone marrow. We will then give the patient the healthy stem cells. Once these healthy stem cells are in the bloodstream they will move to the bone marrow (graft) and begin producing blood cells that will eventually mature into healthy red blood cells, white blood cells and platelets. Also, we will ask permission to draw blood from the patient so that we can measure the number of certain blood cells called T regulatory cells. T regulatory cells are special immune cells that can control or regulate the body's immune response. We want to determine whether T regulatory cells are important participants in graft versus host disease (GVHD), infection and relapse. In GVHD, certain cells from the donated marrow or blood (the graft) attack the body of the transplant patient (the host). GVHD can affect many different parts of the body. The skin, eyes, stomach and intestines are affected most often. GVHD can range from mild to life-threatening. We do not know whether T regulatory cells can modify these conditions. We want to measure these T regulatory cells and learn if these cells do influence these conditions. If we learn that T regulatory cells do affect these conditions, then it may be possible to modify these cells for the benefit of transplant patients.

NCT ID: NCT00577798 Completed - Lymphoma Clinical Trials

Cardiac Magnetic Resonance Imaging in Patients With Non-Hodgkin Lymphoma or Hodgkin Lymphoma Receiving Doxorubicin

Start date: January 1, 2008
Phase:
Study type: Observational

RATIONALE: Diagnostic procedures, such as cardiac magnetic resonance imaging, may help doctors detect early changes in the heart caused by chemotherapy. PURPOSE: This clinical trial is studying how well cardiac magnetic resonance imaging works in patients with newly diagnosed non-Hodgkin lymphoma or Hodgkin lymphoma receiving doxorubicin.

NCT ID: NCT00574496 Completed - Lymphoma Clinical Trials

Combination Chemotherapy Followed by Donor Stem Cell Transplant in Treating Patients With Relapsed or High-Risk Primary Refractory Hodgkin Lymphoma

Start date: November 13, 2007
Phase: Phase 2
Study type: Interventional

RATIONALE: Giving chemotherapy before a donor stem cell transplant helps stop the growth of cancer cells. It also helps stop the patient's immune system from rejecting the donor's stem cells. When the healthy stem cells from a donor are infused into the patient they may help the patient's bone marrow make stem cells, red blood cells, white blood cells, and platelets. Sometimes the transplanted cells from a donor can make an immune response against the body's normal cells. Giving cyclosporine, mycophenolate mofetil, and methotrexate before and after transplant may stop this from happening. PURPOSE: This phase II trial is studying how well combination chemotherapy followed by donor stem cell transplant works in treating patients with relapsed or high-risk primary refractory Hodgkin lymphoma.

NCT ID: NCT00571662 Completed - Multiple Myeloma Clinical Trials

Safety and Efficacy of Pentostatin and Low Dose TBI With Allogenic Peripheral Blood Stem Cell Transplant

Start date: December 8, 2000
Phase: Phase 2
Study type: Interventional

This is a continuation of a pilot study which is now regarded as a phase II trial with a plan to enroll an additional 40 patients (20 related and 20 unrelated donor transplants) with hematological malignancy assessing the safety and efficacy of a minimally myelosuppressive regimen with pentostatin and low-dose total body irradiation (TBI) followed by allogeneic peripheral blood stem cell transplantation (alloPSCT).

NCT ID: NCT00570999 Withdrawn - Clinical trials for Myelodysplastic Syndrome

Palifermin After Haploidentical PBSCT

KGF Haplo Allo
Start date: February 2008
Phase: Phase 2
Study type: Interventional

This is a double blind, placebo controlled clinical trial, where patients with an advanced form of blood cancer are treated with haploidentical allogeneic peripheral blood progenitor cell (PBPC) transplant after which they are randomised to receive either placebo or a keratinocyte growth factor (Palifermin or Kepivance®). The function of Kepivance® is to stimulate the growth of epithelial cells. This drug has also been suggested to have an ability to help improve the reconstitution, or development, of the immune system after the transplantation. The hypothesis is that the patients T-cell dependent humoral immune response to recall antigen (PrevenarTM) will be higher in in palifermin treated patients than in the placebo control group

NCT ID: NCT00569842 Completed - Multiple Myeloma Clinical Trials

Investigation of the Cylex® ImmuKnow® Assay

Start date: November 2007
Phase: N/A
Study type: Observational

Currently, there is no accurate way of predicting the occurrence of Graft vs Host Disease (GvHD) or infection. The purpose of this study is to analyze blood with the ImmuKnow® Assay to see if doctors can detect which patients are at risk for GvHD and for getting an infection before they occur.

NCT ID: NCT00562224 Completed - Multiple Myeloma Clinical Trials

Study of the Safety and Tolerability of Oral Capsule Form of PCI-24781 in Advanced Cancer Patients

Start date: November 2007
Phase: Phase 1
Study type: Interventional

To determine the highest dose of study drug that can be taken without causing serious side effects in patients with advanced cancer. The study will look at safety of the study drug and whether the treatment schedule is tolerated by patients.