View clinical trials related to Muscular Dystrophy, Duchenne.
Filter by:This Phase I/II of the clinical trial is to investigate whether the transplantation of normal myoblasts throughout one muscle (the extensor carpi radialis) of the patients is safe and will improve the strength of that muscle. During this Phase I/II, the patients will be transplanted with myoblasts grown from the muscle biopsy of a donor and kept frozen in liquid nitrogen. Thirty million myoblasts will be injected per cm cube in a progressively higher surface of the radialis (i.e., 3, 6 and 9 cm2). The contralateral muscle will be injected with saline to serve as a control. The strength of both muscles will be measured at 3 months post transplantation to verify whether the myoblast transplantation improved the strength of the muscle. If there is no significant strength improvement, the protocol will be terminated immediately for that patient. If there is a significant strength improvement, the patient will be maintained under immunosuppression until 6 months post transplant and his strength will be re-evaluated.
This study seeks to develop and validate non-invasive assessments of cardiac and respiratory muscles with magnetic resonance imaging (MRI) to better predict the natural disease progression of Duchenne muscular dystrophy (DMD) in affected individuals over time, as well as determine whether peripheral skeletal muscle dysfunction can predict cardiopulmonary dysfunction. The central hypothesis is that non-invasive MRI measures of the heart, muscle, and peripheral skeletal muscles can sensitively predict future cardiopulmonary decline.
Background: - Children with Duchenne/Becker Muscular Dystrophy (DBMD) slowly lose muscle function. They usually die at a young age. Some mothers adapt to the demands of caring for a child with this disease better than others. Studies show that a person s hope may positively affect how they cope and adapt. Researchers want to find out more about this. They want to develop ways to improve caregivers overall wellness. Objective: - To study the relationships between uncertainty, hope, and coping ability in mothers of children with DBMD. Eligibility: - Women in the United States 18 years and older. They must be biological mothers of a living child with DBMD and be able to answer a survey in English. Design: - This study is part of a larger study that examines the well-being of mothers with sons who have DBMD. - Participants will take a questionnaire. The questionnaire can be done on paper or on a computer. It will take 30 45 minutes to complete. - The questionnaire will include basic demographic questions about the participant and the child. There will also be questions about how the participant copes with the stress and uncertainty of DBMD. - For most of the questions, participants will rate their feelings on a scale. There will also be four open-ended questions.
The purpose of this research study is to determine the potential of Optical Imaging techniques to detect muscle damage in boys with Duchenne Muscular Dystrophy and unaffected exercised muscle. Healthy subjects will undergo two different exercises in opposite forearms before any imaging techniques are performed. Boys with Duchenne Muscular Dystrophy will only undergo the imaging techniques without exercise.
While it has been known for many years that corticosteroid use benefits boys with Duchenne Muscular dystrophy (DMD), most clinicians do not consider treating until after age 3 or 4 years of age. The primary reason for the delay is that daily corticosteroid use has many side effects including short stature, obesity, and osteoporosis. A recent randomized blinded study of weekend oral corticosteroid use over one year showed equal improvement in strength with fewer side effects, particularly as related to growth and cushingoid changes. The investigators will test the efficacy of oral weekend corticosteroid use in infants and young boys with DMD who are under age 30 months. The investigators have demonstrated that the Bayley-III Scales of Infant development shows that infants and young boys in this age group who are untreated decline in abilities when compared to their peers. Here, in this Phase 2 historically controlled trial, the investigators will use these two measures and treat boys at five Muscular Dystrophy Association-DMD centers
The purpose of this study is to investigate the paradoxical muscle enlargement in the calves and tongue seen in patients affected by Becker muscular dystrophy and Limb-girdle muscular dystrophy type 2I. The enlarged calves' muscle quality will be assessed primarily on the basis of the muscle structure on MRI and based on a calculation of muscle strength per cross-sectional area.The findings will be compared with results from non-affected controls. Additionally we want to describe the tongue muscle appearance on T1-weighted MRI.
This study is intended to build on a growing body of literature showing a blood flow abnormality in patients with Becker muscular dystrophy. The investigators' laboratory recently showed that this blood flow abnormality could be corrected by a single oral dose of the drug Tadalafil (also known as Cialis). The investigators now wish to replicate these exciting results using a common nitric oxide donor (sodium nitrate).
Duchenne muscular dystrophy (DMD) , caused by mutations in the DMD gene, is the most common and most severe progressive dystrophy of the child. Although the development is rapidly progressive , there is variability in the severity of the disease between DMD patients that do not correlate with the type of mutations in the DMD gene. There are no easily measurable biomarkers for monitoring the DMD or moderate form of the disease, Becker muscular dystrophy (BMD ) . MicroRNAs (miRNAs) are involved in most cellular processes , and their expression pattern is a signature of the state of a cell . They represent a potential class of diagnostic and prognostic biomarkers. Some are specific for the skeletal myogenesis , and changes in their pattern of expression are associated with muscle diseases including muscular dystrophy. The levels of muscle- specific miRNAs are indeed greatly increased in the serum of DMD and BMD compared to control patients . The main objective of this is to validate the use of serum muscle-derived microRNAs as biomarkers of DMD patients (compared with healthy subjects). Secondary objectives are i) to investigate the relationship between circulating levels of these miRNAs and the severity of the dystrophinopathy (DMD vs BMD) and also the progression of the disease (longitudinal study), ii) to assess the specificity of these markers for dystrophinopathy (comparison with other patients with muscular dystrophy), iii) to test candidate miRNAs recently identified but not yet analyzed in the serum of patients. Clinical data and samples will be recorded at each regular consultation. miRNA levels will be quantified using Real Time Quantitative RT-PCR.
The primary objective of this study is to obtain long term safety data of ataluren in male participants with nonsense mutation dystrophinopathy (who participated and completed a previous Phase 3 study of ataluren [PTC124-GD-020-DMD {NCT01826487}]) to augment the overall safety database. Screening and baseline procedures are structured to avoid a gap in treatment between the double-blind study (PTC124-GD-020-DMD) and this extension study. This study may be further extended by amendment until either ataluren becomes commercially available or the clinical development of ataluren in duchenne muscular dystrophy (DMD) is discontinued.
This study is designed to assess the safety, tolerability, efficacy and pharmacokinetics (PK) of NS-065/NCNP-01 in subjects diagnosed with Duchenne muscular dystrophy (DMD).