View clinical trials related to Muscular Dystrophy, Duchenne.
Filter by:(-)-Epicatechin will be evaluated for the treatment of progressive muscle loss and impaired skeletal muscle function in Becker Muscular Dystrophy (BMD) patients.
The main purpose of this study is to test the safety and tolerability of different, increasing doses of an experimental medication called HT-100 in boys and young men with Duchenne muscular dystrophy (DMD). The study medication, HT-100, is a medicine that may help promote healthy muscle regeneration, diminish inflammation and the resulting damage to muscle, and decrease the scar tissue that forms in the muscles of children with DMD. In this study, pharmacokinetic sampling, or measurements of the amount of HT-100 in the bloodstream will also be taken.
This Study is single arm, single centre trial to check the safety and efficacy of Bone Marrow derived autologous cell(100 million per dose) for the patient with Duchenne Muscular Dystrophy.
This Study is single arm, single center trial to check the safety and efficacy of BMMNC (100 million per dose) for the patient with Duchenne Muscular Dystrophy,
Dystrophinopathy is a disease continuum that includes Duchenne muscular dystrophy, which develops in boys. It is caused by a mutation in the gene for dystrophin, a protein that is important for maintaining normal muscle structure and function. Loss of dystrophin causes muscle fragility that leads to weakness and loss of walking ability. A specific type of mutation, called a nonsense (premature stop codon) mutation is the cause of dystrophinopathy in approximately 10-15 percent (%) of boys with the disease. Ataluren is an orally delivered, investigational drug that has the potential to overcome the effects of the nonsense mutation. The main goal of this Phase 3 study is to evaluate the effect of ataluren on walking ability. The effect of ataluren on physical function, quality of life, and activities of daily living will be evaluated. This study will also provide additional information on the long-term safety of ataluren.
The purpose of the study is to see whether PRO045 is safe and effective to use as medication for Duchenne Muscular Dystrophy (DMD) patients with a mutation around location 45 in the DNA for the dystrophin protein.
The purpose of this study is to evaluate the effect of docosahexaenoic fatty acid and eicosapentaenoic fatty acid supplementation for six months on the inflammation state as well as the process of muscular regeneration and the metabolic disorders like obesity and insulin resistance in patients with Duchenne muscular dystrophy (DMD) and Becker muscular dystrophy (DMB) compared to those receiving placebo.
Duchenne muscular dystrophy (DMD) is the most common and devastating form of muscular dystrophy, caused by an X-chromosome gene mutation resulting in the absence of the protein dystrophin. Gene therapy by exon skipping or stop codon read-through and cell therapy are at the stage of clinical assays with very promising results. Nevertheless, they will not allow a complete cure of DMD patients and they will concern only specific types of mutations. It is therefore crucial to develop other therapeutic strategies related to the natural history of the disease and targeted not on the dystrophin itself, but on the consequences of its absence. Another crucial pathophysiological pathway in DMD is muscle cell calcium homeostasis, particularly via the ryanodine recepteur (RyR1). Our study focus on the relationship between endomysial fibrosis, abnormal inflammation response and calcium homeostasis dysfunction which are not entirely established in DMD. The identification of the biological mechanisms that play a role in the severity of the phenotype, particularly endomysial fibrosis, should allow the development of targeted pharmacotherapy as a complementary strategy for the future treatment of DMD.
This is a phase III, multicenter, open-label, uncontrolled extension study in male subjects with DMD open to eligible US and Canadian subjects who previously participated in the following studies of drisapersen: DMD114876, DMD114044 and DMD114349. Subjects will receive 6mg/kg subcutaneous drisapersen on a weekly basis. For subjects who have previously experienced significant safety or tolerability issues or who experience these during the study, there is the potential of an alternate intermittent dosing arm that will be given as a regimen of 6 mg/kg weekly for 8 weeks followed by 4 weeks off treatment. For subjects who experience or have previously experienced significant safety/tolerability issues, side effects or reactions or intermittent dosing, intravenous dosing will be made available.
We will utilize the Cooperative International Neuromuscular Research Group (CINRG) network to collect and store tissue and blood from patients with Duchenne muscular dystrophy (DMD) with specific genetic mutations within the dystrophin gene that could be treated by antisense oligonucleotide (AO) drugs.