View clinical trials related to Neuromyelitis Optica.
Filter by:Neuromyelitis optica (NMO) is an autoimmune inflammatory demyelinating disease of the central nervous system that leads to blindness and paralysis. Since disability accrues incrementally related to attacks, attack prevention with immunosuppressive therapy is the mainstay of preventing disability. However, there is no standard immunosuppressive treatment strategy for NMO relapse prevention. In a previous study, the investigators provided evidence supporting the use of azathioprine plus a low dose corticosteroid as an effective strategy which is associated with a reduction in the risk of relapse in Chinese patients with NMO, but azathioprine has bone marrow suppression and other side effects. Mycophenolate mofetil (MMF) is a new immunosuppressant with rapid onset, fewer side effects and other advantages. In recent years, MMF has been used in different immune-related neurological diseases; some literature shown the possible efficacy of MMF in NMO treatment. In this research, a multi-center (Third Affiliated Hospital of Sun Yat-sen University, Zhongshan Ophthalmic Centre of Sun Yat-sen University, Nangfang Hospital of Southern Medical University) study will carry out to evaluate the efficacy and safety of mycophenolate mofetil therapy in NMO spectrum disorders.
This multi-center randomized controlled trial evaluates if the addition of intravenous immunoglobulin to standard treatment of corticosteroids improves outcome in children and adults with first episode of Transverse Myelitis of Neuro-myelitis optica. Half of participants will receive corticosteroids alone, whilst the other half will receive corticosteroids plus intravenous immunoglobulin.
First in human study to assess the tolerability and safety profile of treatment with dendritic cell in patients with multiple sclerosis or neuromyelitis optica.
Ublituximab (also known as LFB-R603) is a monoclonal antibody that specifically binds to the trans-membrane antigen CD20. The binding induces immune response that causes lysis of B cells. The rationale for using ublituximab in neuromyelitis optica (NMO) and neuromyelitis optica spectrum disorder (NMOSD) is based on the known roles of B cells, antibody production and plasma cells in the pathophysiology of NMO. NMO is characterized by the presence of an anti-Aquaporin-4 (AQP4) antibody, which can only be produced by differentiation of B cells to plasma cells. Because these anti-AQP4 antibodies may be pathogenic, B cells recognizing AQP4 may be directly involved in the disease process as well. B cells also play a role as potent antigen presenting cells in NMO. The strongest evidence of the importance of B cells in NMO comes from studies of B cell depletion, most commonly with anti-CD20 monoclonal antibody, rituximab (Rituxan®). Rituximab has been shown in five retrospective and two prospective studies to be effective in reducing NMO relapses up to 90% and achieving remission in up to 80% of patients solely by its action on CD20+ B cells, despite no change in plasma cell population and anti-AQP4 antibody titers. These human trials strongly suggest a critical role for B cells in the pathophysiology of human disease. While typically used in the prevention of disease, B-cell depletion may be beneficial in the treatment of an acute relapse as well. Emerging evidence indicates that peripheral B cells are activated during a relapse and plasmablast production of anti-AQP4 antibodies spikes. B cells are also found within acute lesions of the spinal cord and optic nerve suggesting roles both in the blood and in the central nervous system during a relapse.
Neuromyelitis optica (NMO) is a demyelinating and degenerative disorder of the central nervous system affecting vision and brain and spinal cord function which leads to accumulating disability with a 5 year-mortality of approximately 30%. Survivors are typically left with severe morbidity secondary to blindness, quadriparesis and respiratory failure. No agent has been found to be highly effective in halting disease activity.Based on recent outcomes of Multipotent mesenchymal stromal cells in autoimmune diseases including multiple sclerosis, and based on the mechanisms of neuromyelitis optica, the investigators anticipate that mesenchymal stem cells transplantation may provide lasting disease stability for neuromyelitis optica patients.
To compare the efficacy of inebilizumab (MEDI-551) versus placebo in reducing the risk of an neuromyelitis optica/neuromyelitis optica- spectrum disorders (NMO/NMOSD) attack in participants with NMO/NMOSD.
Transverse myelitis (TM) is an inflammatory disorder of the spinal cord that leads to disabilities of gait. Dalfampridine, a sustained-release potassium inhibitor has been shown to be effective in improving gait and other neurologic functions in multiple sclerosis. Dalfampridine has the potential to improve neurologic function in patients with transverse myelitis as this rare disorder shares a similar pathogenic process with multiple sclerosis. The in a clinical trial to test the efficacy of dalfampridine in TM. The clinical trial that the investigators propose to conduct will focus on TM and will evaluate the dalfampridine in primary neurologic outcome, 25-foot timed walk, and several secondary outcomes including valid behavioral and neurophysiological tests. This is a re-launch of the previous trial, which now includes additional behavioral and clinical testing.
Neuromyelitis Optica (NMO) is a rare, devastating demyelinating disease of the central nervous system (CNS) that has different causes and treatments from the more common demyelinating disease multiple sclerosis (MS). Current NMO therapies are nonspecific and have varying and often suboptimal benefit. The investigators will evaluate whether use of alpha1-antitrypsin (A1AT, an FDA-approved medication for patients with congenital deficiency of A1AT associated with emphysema) can benefit acute attacks of NMO, improving patient disability and quality of life.
The objectives of this study are to evaluate the efficacy, safety, pharmacodynamic, pharmacokinetic and immunogenic profiles of satralizumab in participants with NMO and NMOSD.
The objective of this study is to evaluate the efficacy, safety, pharmacodynamic, pharmacokinetic, and immunogenic profiles of satralizumab, compared with placebo, in addition to baseline immunosuppressive treatment in participants with NMO and NMOSD.