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NCT ID: NCT00078091 Terminated - Clinical trials for Bardet-Biedl Syndrome

Genetics and Clinical Characteristics of Bardet-Biedl Syndrome

Start date: February 17, 2004
Phase:
Study type: Observational

This study will evaluate patients with a rare inherited condition called Bardet-Biedl syndrome . The purpose of the study is to learn more about the genetics and clinical characteristics of this disorder. Patients may have the following problems: polydactyly (extra fingers and toes); retinal dystrophy (changes in the retina that may lead to vision problems, including blindness); obesity and diabetes (overweight and high blood sugar due to failure of body organs to respond to insulin); cognitive dysfunction (difficulties with learning and understanding); hypogenitalism (decreased functioning of the ovaries in women and the testes in men); kidney anomalies (changes in the structure or function of the kidneys); heart disease; and hepatic fibrosis (liver disease). Patients with Bardet-Biedl syndrome may be eligible for this study. First-degree relatives will also be enrolled for certain tests and procedures. Candidates are screened with a review of their medical records, laboratory tests, and x-rays. Patients in this study undergo the following tests and procedures: - Medical and family history and physical examination, including body measurements. - Blood tests to evaluation kidney, liver, heart, and hormonal function, and for genetic studies and other research purposes. - Dual emission x-ray absorptiometry (DEXA) scan to measure the amount of total body fat. For this test, the subject lies on a table for scanning with low-dose X-rays. - Computed tomography (in adults) of the abdomen to measure abdominal fat. CT uses a small amount of radiation to obtain images of internal body structures. - Magnetic resonance imaging (in children) of the abdomen to measure abdominal fat. MRI uses a magnetic field and radio waves to obtain images of internal body structures. - Oral glucose tolerance tests to measure blood glucose and insulin levels. For this test, the patient drinks a glucose (sugar) solution. Blood samples are drawn through an IV catheter before the test begins and at 1, 2, and 3 hours after drinking the solution. - Complete eye examination to look for retinal changes and to assess vision, and, if medically needed, an examination of the ear, nose, and throat to check for hearing and breathing abnormalities. - Tests of learning ability in patients over 5 years of age. For younger patients, a parent is asked about the child's development. - Ultrasound study of the ovaries and uterus in females and of the testes in males. - Photographs of the face, hands, feet, body, and genitalia, if the patient agrees. - Meeting with investigators and a genetic counselor for review of test findings when the studies are completed. Relatives of patients have a complete medical and family history and physical examination. Blood is drawn for assessment of kidney, liver, heart, and hormonal function and for genetic study and other research purposes. Relatives over 5 years of age may have tests of learning ability and cognition. For younger patients, a parent is asked about the child's development. Relatives meet with investigators and a genetic counselor for review of test findings when the studies are completed.

NCT ID: NCT00074490 Terminated - Lymphoma Clinical Trials

Donor Stem Cell Transplant With No or Low-Intensity Chemotherapy Using Sirolimus and Treated Immune Cells to Treat Blood and Lymph Cancers

Start date: January 1, 2004
Phase: Phase 2
Study type: Interventional

Background: Patients with cancers of the blood and immune system often benefit from transplants of stem cells from a genetically well-matched sibling. However, severe problems may follow these transplants because of the high-dose chemotherapy and radiation that accompany the procedure. Also, donated immune cells sometimes attack healthy tissues in a reaction called graft-versus-host disease (GVHD), damaging organs such as the liver, intestines and skin. To reduce toxicity of high-dose preparative chemotherapy, this study performs allogeneic transplant after low doses of chemotherapy. In an attempt to improve anti-tumor effects without increasing GVHD, this study uses donor immune cells (T helper 2 (Th2) cells) grown in the laboratory; some patients will receive standard donor immune cells (not grown in laboratory). All patients will receive immune modulating drugs sirolimus and cyclosporine to prevent GVHD. Objective: To determine the safety, treatment effects and rate of GVHD in patients receiving transplants that use low-intensity chemotherapy, sirolimus plus cyclosporine, and transplant booster with either Th2 cells or standard immune cells. Eligibility: Patients 16 to 75 years of age with acute or chronic leukemia, non-Hodgkin's lymphoma, Hodgkin's disease, multiple myeloma, or myelodysplastic syndrome. Patients must have a suitable genetically matched sibling donor and adequate kidney, heart and lung function. Design: The protocol has three treatment groups: cohort 1, Th2 booster at two weeks post-transplant; cohort 2, standard T cell booster at two weeks post-transplant; cohort 3, multiple infusion of Th2 cells. Condition: Hematologic Neoplasms, Myeloproliferative Disorders Intervention: Biological; therapeutic allogeneic lymphocytes Drug: Sirolimus Study Type: Interventional Study Design: Primary Purpose: Treatment Phase: Phase II

NCT ID: NCT00069992 Terminated - Leukemia Clinical Trials

Total-Body Irradiation, Fludarabine, and Alemtuzumab Followed By Stem Cell Transplant in Treating Patients With Myeloproliferative Disorder, MS, AML, or CML

MPDMDSBMT
Start date: December 2001
Phase: Phase 2
Study type: Interventional

Patients are being asked to participate in this study because they have a malignant blood disease such as Myelodysplastic Syndrome (MDS), Myeloproliferative Disorder (MPD), Acute Myelogenous Leukemia (AML) or Chronic Myelogenous Leukemia (CML). We feel that patients could benefit from an allogeneic (meaning the cells come from a donor other than themself) stem cell transplant. The donor would be a family member or an unrelated person that is felt to be a good match for the patient. Stem cells are cells that are made in the bone marrow (spongy material that fills the middle of the bones). As the stem cells grow, they change into different types of blood cells that they need. This includes red blood cells that carry oxygen around the body, white blood cells that help to fight infections, and platelets that help to prevent and stop bleeding. Usually, patients are given high doses of chemotherapy before a stem cell transplant. High doses of chemo destroy the bone marrow. Healthy stem cells from a donor are then given to replace the patient's unhealthy cells. However, because of complications with the patient's disease, they have a high risk of having life-threatening side effects. These include serious damage to organs such as the lung, liver, kidney and heart. There is also an increased risk of bacterial, fungal, and viral infections. The other major problem is when a donor's stem cells (also called the graft) find that the patient's cells ( the host cells) are not the same. The donor cells may try to destroy the host's cells. The cells at high risk are those of the skin, liver and intestines. This is called graft versus host disease (GVHD) and it can be fatal. Recently, doctors have been able to use less toxic chemotherapy treatments before patients receive their transplants. This less toxic treatment helps reduce some of the treatment related problems mentioned above. Patient's are being asked to be involved in a research study that uses this approach. One major risk of this low dose treatment is that the patient's body may reject the donor cells. This is called graft rejection. This study is designed to see if this low dose treatment is safe and effective. This treatment plan adds CAMPATH 1H (a special protein called an antibody) to a low dose chemotherapy regimen. After chemo, the patient will receive an allogeneic (cells come from a donor) stem cell transplant. Adding CAMPATH 1H to the transplant medicines may help in treating the disease. CAMPATH 1H may reduce life-threatening and treatment related side effects like GVHD. CAMPATH 1H stays active in the body for a long time which means it may work longer to prevent GVHD. CAMPATH 1H destroys lymphocytes, a type of white cells that help fight infection, and this helps prevent graft rejection. We want to see if the addition of CAMPATH 1H to the patient's pre-transplant low dose chemotherapy will decrease the side effects from an allogeneic stem cell transplant, while providing a curative treatment for patients with blood disorders.

NCT ID: NCT00067496 Terminated - Clinical trials for Postpoliomyelitis Syndrome

Modafinil to Treat Fatigue in Post-Polio Syndrome

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

This study, conducted at the Walter Reed Army Medical Center, the National Rehabilitation Hospital, and the National Institutes of Health, will examine whether the drug Modafinil can decrease fatigue in patients with post-polio syndrome. Many people who have had polio develop weakness and severe fatigue several years after their recovery from the acute disease. Modafinil is approved by the Food and Drug Administration to improve wakefulness in patients with narcolepsy (disease in which patients have excessive daytime sleepiness) and has been used to treat patients with fatigue related to other medical conditions, such as multiple sclerosis. This study will compare the effects of two doses of Modafinil and of a placebo (a pill with no active ingredient) on fatigue in patients with post-polio syndrome. Patients who develop fatigue, weakness, muscle pain or atrophy, and functional loss at least 15 years after recovering from polio and whose symptoms cannot be attributed to another cause may be eligible for this study. Candidates will be screened with a medical history, physical and neurological examinations, fatigue rating scales, electrocardiogram, blood and urine tests, drowsiness and depression evaluations, and an electroymogram (EMG) to diagnose nerve or muscle problems. For the EMG, electrodes (small metal discs) are taped to the skin and a needle is inserted into a muscle to record the electrical activity. Candidates will also undergo a sleep study to exclude abnormal sleep patterns as the cause of the fatigue. For this study, patients stay overnight at the NIH hospital. Electrodes are placed on the throat, on a finger, and on the chest (for an electrocardiogram), and a respiratory belt is placed around the chest-abdomen area. During sleep (from 10:30 p.m. to 6 a.m.), brain waves, eye and leg movements, muscle tone, respiration, and heart rate are recorded. Beginning at 8 a.m. the following morning, the patient takes 20-minute naps to measure the level of daytime sleepiness, using a recording technique similar to that of the all-night study. When five naps are completed, the sleep study ends. Candidates may also undergo a lumbar puncture (spinal tap) to check for certain chemicals in the spinal fluid that might be related to fatigue and to look for possible causes of post-polio syndrome. This procedure is optional. For the lumbar puncture, a local anesthetic is given and a needle is inserted in the space between the bones in the lower back where the cerebrospinal fluid circulates below the spinal cord. A small amount of fluid is collected through the needle. Patients enrolled in the study will complete a sleep diary during the entire study period. They will be randomly assigned to one of two treatment groups-Modafinil or placebo-for 6 weeks, followed by a 2-week washout period with no medication, and then a crossover phase, in which patients who took Modafinil for the first 6 weeks now take placebo, and those who took placebo now take Modafinil. At the first study visit, patients will be given a supply of study medication and have blood drawn. They will take one pill twice a day during both study phases. In both study phases, evaluations will be done 3 and 6 weeks after starting the medication. The evaluations include filling out the same forms completed at the screening visit, a review of drug side effects, and a review of medical problems since the last study visit. At the 6-week visit, blood is also drawn.

NCT ID: NCT00052598 Terminated - Clinical trials for Recurrent Adult Acute Myeloid Leukemia

Therapeutic Allogeneic Lymphocytes and Aldesleukin in Treating Patients With High-Risk or Recurrent Myeloid Leukemia After Undergoing Donor Stem Cell Transplant

Start date: September 2002
Phase: Phase 1/Phase 2
Study type: Interventional

This phase I/II trial is studies the side effects of giving therapeutic allogeneic lymphocytes together with aldesleukin and to see how well it works in treating patients with high-risk or recurrent myeloid leukemia after undergoing donor stem cell transplant. Biological therapies, such as therapeutic autologous lymphocytes, may stimulate the immune system in different ways and stop cancer cells from growing. Aldesleukin may stimulate the white blood cells to kill cancer cells. Giving therapeutic autologous lymphocytes together with aldesleukin may kill more cancer cells

NCT ID: NCT00052377 Terminated - Clinical trials for Recurrent Cutaneous T-cell Non-Hodgkin Lymphoma

Interleukin-12 and Interleukin-2 in Treating Patients With Mycosis Fungoides

Start date: September 2002
Phase: Phase 1/Phase 2
Study type: Interventional

Phase I/II trial to study the effectiveness of combining interleukin-12 with interleukin-2 in treating patients who have mycosis fungoides. Biological therapies, such as interleukin-12 and interleukin-2, use different ways to stimulate the immune system and stop cancer cells from growing. Combining more than one biological therapy may kill more tumor cells

NCT ID: NCT00049959 Terminated - Clinical trials for Basal Cell Carcinoma

Two Studies to Determine if Verteporfin PDT is Effective & Safe in Treating Multiple Basal Cell Carcinoma of the Skin.

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

The purpose of the two studies is to determine whether an experimental therapy using a photoactive drug, verteporfin, in combination with direct light exposure of basal cell carcinoma of the skin can safely eliminate these skin tumors.

NCT ID: NCT00049582 Terminated - Clinical trials for Recurrent Adult Acute Myeloid Leukemia

Decitabine in Treating Patients With Myelodysplastic Syndromes or Acute Myeloid Leukemia

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

This phase I trial is studying the side effects and best dose of decitabine in treating patients with myelodysplastic syndromes or acute myeloid leukemia. Drugs used in chemotherapy use different ways to stop cancer cells from dividing so they stop growing or die.

NCT ID: NCT00039091 Terminated - Clinical trials for Recurrent Adult Acute Myeloid Leukemia

Monoclonal Antibody Therapy in Treating Patients With Ovarian Epithelial Cancer, Melanoma, Acute Myeloid Leukemia, Myelodysplastic Syndrome, or Non-Small Cell Lung Cancer

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

This phase I trial is studying the side effects of monoclonal antibody therapy in treating patients with ovarian epithelial cancer, melanoma, acute myeloid leukemia, myelodysplastic syndrome, or non-small cell lung cancer. Monoclonal antibodies can locate tumor cells and either kill them or deliver tumor-killing substances to them without harming normal cells

NCT ID: NCT00033969 Terminated - Healthy Clinical Trials

Study of Proteins Associated With Complex Regional Pain Syndrome

Start date: April 15, 2002
Phase:
Study type: Observational

This study will try to learn more about complex regional pain syndrome, or CRPS (previously known as reflex sympathetic dystrophy, spreading neuralgia, and sympathalgia), by examining the release of small proteins in the blood of patients with this condition. Patients with CRPS usually have three types of symptoms: - Sensory abnormalities increased sensitivity to pain or a painful reaction to a harmless stimulus - Perfusion abnormalities alterations in blood flow, temperature abnormality, swelling, decrease or increased nail growth, and hair and skin changes - Motor abnormalities weakness, guarding (Holding the limb in such a fashion that it minimizes accidental or intentional contact from possible sources of pain), and atrophy (wasting) The cause of CRPS is unknown, and there are no definitive diagnostic tests for the condition. Because early treatment improves the prognosis of CRPS, a test that enables early diagnosis would be important for optimal medical management. The findings of this study may contribute to the development of such a test and possibly new drug treatments. Normal healthy volunteers and patients of any age with complex regional pain syndrome who are in otherwise good general health may be eligible for this study. Participants will have a medical history, physical examination and collection of a blood sample. They will fill out several questionnaires, providing information on their health, personality, mood, pain levels, and symptoms. Participation in the study requires one outpatient clinic visit.