View clinical trials related to Vasculitis.
Filter by:The purpose of this study is to access the efficacy of MMF compared to CTX in inducing remission and improving renal function in subjects with ANCA associated vasculitis with renal involvement.
Lupus and vasculitis are autoimmune conditions which can be life threatening. In order to treat these conditions toxic therapies such as cyclophosphamide and steroids are often required. These standard treatments are associated with significant side effects. Furthermore a proportion of patient do not respond to these conventional therapies. Newer safer therapies are being sought. Rituximab is a drug that eliminates B cell from the blood. B cells are one part of the human immune system that helps prevent infections. Abnormal activity of the immune system is responsible for autoimmune disease although the exact mechanisms in lupus and vasculitis are not yet established. Rituximab is liscenced as a treatment for a form of B cell cancer called non-Hodgkins Lymphoma and has a good safety track record when used in this context. It has recently been used to treat some autoimmune conditions with positive results. In this pilot study we wish to assess the effectiveness and safety of rituximab in patients with lupus and vascultis that are resistant to conventional therpies.
The purpose of this study is to investigate if interferon-alpha2a is superior to the standard treatment with cyclosporin A for the treatment of severe ocular manifestations of Behcet`s disease.
Antineutrophil cytoplasmic antibodies (ANCA)-associated vasculitis is the most common type of small blood vessel inflammation in adults. ANCA-associated vasculitis includes Wegener's granulomatosis (WG) and microscopic polyangiitis (MPA). Rituximab is a man-made antibody used to treat certain types of cancer. The purpose of this study is to determine the effectiveness of rituximab in treating patients with WG and MPA. Study hypothesis: Rituximab is not inferior to conventional therapy in its ability to induce disease remission by Month 6.
This study will look for biological markers of primary retinal vasculitis that can be useful in understanding what causes the disease. It will evaluate its progression, and develop and monitor treatments. Biological markers are substances (e.g., chemicals called cytokines and chemokines or antibodies) that are associated with a disease or condition such as retinal vasculitis. Retinal vasculitis is an inflammation of blood vessels in the retina that can cause retinal damage and subsequent loss of vision. It can occur by itself (primary retinal vasculitis), or it can be part of a systemic vascular disease. The study will evaluate patients with primary retinal vasculitis and compare the findings with those of two other groups of patients with retinal vasculitis patients with Behcet's syndrome and HIV-infected patients undergoing HAART therapy. Patients over 10 years of age with sight-threatening retinal vasculitis may be eligible for this study. (page 6 of the protocol, under #4 Study Design and Methods, says the age range is 2 years old and above; page 10, under #5 Participant Inclusion and Exclusion Criteria, says initial enrollment will include all patients over the age of 10 years). Upon entering the study, participants will have about 10 teaspoons of blood withdrawn from an arm vein through a needle and again 6 months and 12 months later. The blood samples will be analyzed for cytokines, chemokines or adhesion molecules, certain types of antibodies, and infectious agents.
The purpose of this study is to assess the efficacy of Rituximab (anti-CD20) in the treatment of patients with hepatitis C associated cryoglobulinemic vasculitis (HCV-CV) who have failed or are intolerant to interferon-alpha/ribavirin therapy. Up to 75 patients may be screened to enroll 34 adult patients with active HCV-CV in this randomized, non-blinded phase I/II trial. Patients will be randomized to receive either Rituximab 375 mg/M(2) on days 1, 8, 15 and 22 beginning at the time of enrollment or standard therapy. Patients in both groups will be maintained on stable doses of any immunosuppressive therapies that they were receiving at the time of enrollment. Response to Rituximab will be assessed by clinical and laboratory parameters. Although the cause of cryoglobulinemic vasculitis is not known, a critical component is the presence of cryoglobulins-abnormal proteins that white blood cells called B lymphocytes produce in response to the chronic hepatitis C infection. Rituximab decreases the number of B cells. The Food and Drug Administration approved Rituximab in 1997 for the treatment of B-cell non-Hodgkin's lymphoma. Patients between 18 and 75 years of age with hepatitis C and signs and symptoms of cryoglobulinemic vasculitis may be eligible for this study. They must have failed, or been unable to tolerate, treatment with IFN-a and ribavirin. Candidates will be screened with a history and physical examination, electrocardiogram (ECG), blood and urine tests, 24-hour urine collection and chest X-ray, if clinically indicated. Participants will be randomly assigned to receive Rituximab upon entering the study or 6 months after entering the study. Those whose treatment is delayed 6 months will be followed once a month at NIH for disease evaluation and blood tests during that time. Patients will be given Rituximab intravenously (through a vein) once a week for 4 weeks. For the first dose, patients will be admitted to the hospital for at least 24 hours after the infusion for monitoring. Subsequent infusions will be given on an inpatient or outpatient basis, depending on how the infusion is tolerated. The day before each infusion they will have a history and physical examination, blood work, and other tests, such as X-rays, as clinically indicated. After the four infusions, patients will be followed for drug side effects and response to treatment. They will have blood tests every week for 4 weeks and will then return to NIH for 1 day every month for 12 months for a physical examination, blood tests, and X-rays, if medically indicated. Visits may be more frequent, if necessary, and patients may be asked to stay longer than a day if test findings requ...
This study will determine the effects of angiotensin-converting enzyme (ACE) inhibitor (trade name Ramipril) therapy on inflammation and stiffness of artery walls. These are two risk factors for developing atherosclerosis-deposits of fatty substances called plaques that can block the blood vessel, causing a heart attack or stroke. Studies of patients with coronary artery disease suggest that ACE inhibitor therapy reduces the risk of heart attack and heart failure. This study will examine the effects of this treatment on the artery walls and on levels of substances in the blood that indicate blood vessel inflammation. Patients between 40 and 75 years old with coronary artery disease caused by atherosclerosis may be eligible for this study. Candidates will be screened with a medical history, cardiovascular (heart and blood vessel) examination, electrocardiogram and blood tests. Those enrolled will be randomly assigned to take either an ACE inhibitor pill or a placebo (look-alike pill with no medicine) once a day for 3 months. No pills will be taken for the next month, and then participants will take the alternate pill for the next 3 months. That is, those who took ACE inhibitor for the first 3-month period will take placebo for the second 3-month period and vice versa. Blood pressures will be taken at the NIH Clinical Center or by the patient's physician at the end of the first and second weeks of the study. At the end of 3 weeks, patients will return to the Clinical Center for a blood draw of 6 cc (1/2 teaspoon) to assess kidney function. In addition, at the end of each 3-month study period, patients will undergo the following procedures at the Clinical Center: 1. Fasting blood draw of 60 cc (2 ounces) to measure electrolytes (e.g., sodium and potassium) and blood markers for inflammation 2. Ultrasound (use of sound waves to create pictures) study of the carotid arteries (arteries in the neck leading to the brain)-An ultrasound probe is applied gently on the neck, and ultrasound pictures of the right and left carotid arteries are recorded on tape. Heart activity and blood pressure are monitored during the procedure with an electrocardiogram and blood pressure cuff. 3. Magnetic resonance imaging (MRI) of the carotid arteries-The patient lies on a table in a narrow cylinder (the MRI machine) containing a magnetic field. A flexible padded sensor called a MRI coil is placed over the neck area. Earplugs are placed in the ear to muffle the loud thumping sounds the machine makes when the magnetic fields are switched. During the second half of the exam, a contrast agent (gadolinium) is injected through an intravenous catheter (flexible tube placed in a vein) to brighten the images. The heart is monitored during the procedure with an electrocardiogram.
This study will compare the safety and effectiveness of two drugs-methotrexate and mycophenolate mofetil (MPM)-in preventing disease recurrence in patients with Wegener's granulomatosis and related inflammatory blood vessel disorders. The standard treatment for these conditions is combination drug therapy with prednisone plus cyclophosphamide. However, although most patients improve on this therapy and achieve disease remission, many experience a relapse (return of the disease) some time after therapy is stopped. Also, these drugs can produce serious side effects during treatment. This study will test a new treatment regimen to try to maintain disease remission in these patients with minimal side effects. Patients with Wegener's granulomatosis or other related blood vessel disorders between 10 and 80 years old will be considered for this study. All participants will start therapy with daily doses of prednisone and cyclophosphamide. Prednisone will be reduced gradually and then stopped after symptoms improve significantly. Cyclophosphamide will continue until the disease is in remission. Patients in remission will then be randomly assigned to continue treatment with either MPM or methotrexate. MPM is taken twice a day by mouth. Methotrexate is taken once a week, usually by mouth, but in some cases, by injection into a muscle or under the skin. Patients who do well and have no side effects will continue treatment for 2 years. Then, the drug will gradually be reduced (usually at monthly intervals) and finally stopped. No further treatment will be given unless a relapse occurs. At that time, the type of treatment will depend on various medical factors, including the severity of the recurrence and the patient's history of drug side effects. Physical examinations and various tests, including blood and urine analyses, and X-rays, will be done periodically to evaluate the response to treatment and monitor drug side effects. The total duration of the study-from the screening evaluation through a 2-year follow up after all medications have been stopped-is about 5 to 6 years.
Juvenile dermatomyositis (JDM) is a connective tissue disease that causes skin rash and weak muscles in children. The purpose of this study is to measure the absorption of oral prednisolone and intravenous (IV) methylprednisolone and to determine levels of disease activity indicators in the blood. These levels will be compared to see if there are patterns specific to active and less active JDM.
This study will examine the use of etanercept (also called Enbrel or TNFR:Fc) in patients with Wegener's granulomatosis, a type of vasculitis (blood vessel inflammation). Wegener's granulomatosis may affect many parts of the body, including the brain, nerves, eyes, sinuses, lungs, kidneys, intestinal tract, skin, joints, heart, and other sites. Generally, the greater the disease involvement, the more life-threatening it is. Standard treatment is a combination of prednisone and a cytotoxic agent-usually cyclophosphamide or methotrexate. However, many patients treated with this regimen have a disease relapse, and others cannot take these drugs because of severe side effects. This study will evaluate etanercept's safety and effectiveness, and particularly its value in reducing the need for prednisone and preventing disease relapse. The Food and Drug Administration has approved etanercept for treating rheumatoid arthritis, another inflammatory disease. The drug works by blocking the activity of TNF-a protein made by white blood cells that is involved in the inflammatory process. Since prednisone also affects inflammatory proteins and lowers TNF production, the use of etanercept may reduce the need for prednisone in patients with Wegener's granulomatosis, and thus the risk of its side effects. Patients between 10 and 70 years of age with Wegener's granulomatosis who have never taken prednisone, methotrexate or cyclophosphamide, or have taken these drugs for less than 3 weeks may be eligible for this study. Participants will have a medical history review and physical examination, including laboratory studies. If medically indicated, X-rays, consultations and biopsies (surgical removal of a small tissue sample) of affected organs will also be done. All patients will begin treatment with prednisone, methotrexate and etanercept. Those who improve on this regimen will stop prednisone gradually over 3 months. Those who achieve disease remission at the end of another 3 months will be randomly assigned to either continue taking etanercept and methotrexate for another 12 months or to stop etanercept and continue only methotrexate for the next 12 months (after which methotrexate will gradually be stopped). Patients who are not in remission by the 6-month point will continue taking etanercept until they go into remission, when they will be assigned to stop or not stop etanercept, as described above. Patients who do not achieve remission within 12 months of beginning treatment will be taken off the study. Patients who have a disease relapse while on the study will likely be switched to treatment with prednisone and either methotrexate or cyclophosphamide. Patients randomized to stop etanercept and who have a relapse within a year of stopping the drug may be offered re-treatment on this protocol, but with continuing etanercept for a full year after remission. Patients will be evaluated in the outpatient clinic every 2 to 4 weeks for the first 4 months and every 1 to 3 months after that. Patients whose disease is in remission and who stop all medications will be followed every 3 to 6 months for 2 years. Follow-up evaluations include a physical examination, blood draws and, if medically indicated, X-rays. The total study duration is 60 to 70 months.