View clinical trials related to Muscular Dystrophy, Duchenne.
Filter by:Many therapeutic trials in DMD exclude non-ambulatory boys and men. Rate of progression in these non-ambulatory patients has been studied but consensus has not been reached for what measures are most reliable and reproducible. Furthermore, any treatment trial would be expected to demonstrate improved function and improvement in quality of life. Therefore, function, strength, and quality of life must be understood and standardized. While the goal of this proposal is to standardize clinical outcomes for therapeutic trials, careful understanding of the progression of DMD in non ambulatory boys may also lead to better medical treatment.
This protocol will exploit novel state of the art cardiovascular magnetic resonance techniques to examine important changes in the heart in children with muscular dystrophy. The purpose of this study is to compare cardiac magnetic resonance (CMR) with the collected cardiac outcome data obtained in protocol: PITT1109 - Cardiac Outcome Measures in Children with Muscular Dystrophy.
Summary for Patients: This study, funded by the Muscular Dystrophy Association, is intended to build on recent findings published in the journal Nature showing beneficial effects of tadalafil (also known as Cialis) in mice with an animal version of Duchenne and Becker muscular dystrophies. Only two doses of tadalafil improved muscle blood flow, allowing the dystrophic mice to perform more exercise with less muscle injury. This new short-term clinical trial will move the testing from animals to human patients with Becker muscular dystrophy and examine the effects of acute tadalafil dosing on muscle blood flow during a bout of exercise. Patients will take two doses of tadalafil prior to exercising. Then doctors will measure whether muscles receive increased blood flow and therefore are better protected during exercise. Scientific Hypothesis: In patients with Becker muscular dystrophy (particularly those with dystrophin gene mutations between exons 41-46), loss of sarcolemmal nitric oxide synthase engenders functional muscle ischemia and thus muscle edema after an acute bout of exercise. The investigators further hypothesize that PDE5A inhibition, which boosts nitric oxide-cGMP signaling, constitutes an effective new countermeasure for these patients.
The purpose of the research study is to evaluate different cardiac measures that are obtained by echocardiographic tests in patients with muscular dystrophy.
The purpose of this study is to see whether PRO044 is safe and effective to use as medication for DMD patients with a mutation around location 44 in the DNA for the dystrophin protein.
The aim of this Phase III study was to assess the efficacy of idebenone on pulmonary function, motor function, muscle strength and quality of life in patients with DMD. Furthermore, the safety and tolerability of idebenone was assessed.
The purpose of this study is to understand the biochemistry of different types of Limb-Girdle Muscular Dystrophy (LGMD) and to determine appropriate outcome measures for future clinical treatment trials for LGMD. It is being conducted at two sites in the Cooperative International Neuromuscular Research Group (CINRG). It involves a one day clinical evaluation at a participating institution that will take approximately four to six hours, and will involve strength testing and muscle functional testing by a physical therapist, an evaluation by a physician, pulmonary function testing, a complete cardiac evaluation with electrocardiogram (ECG or EKG) and echocardiogram (Echo), and involve two blood draws, one before the evaluation and one after the evaluation is complete. During the visit, the participant will be asked to fill out a couple of questionnaires asking questions about quality of life and activity limitations, as well as his/her understanding of their diagnosis with regards to etiology (or cause of their muscle disorder), genetics, and inheritance of their muscle disorder.
Muscular dystrophies are inherited disorders in which the skeletal and heart muscles become progressively weaker, sometimes leading to permanent disability. Current treatments aim to control symptoms as much as possible, but there is no cure. Gene therapy, in which defective genes causing the disorder are corrected, is a potential treatment option and is in the process of being developed for muscular dystrophies. This study will determine the safety and feasibility of a particular delivery method for gene therapy that could be used in the future to treat people with muscular dystrophies. Only normal saline, and no active treatment, will be used in this study.
The specific aim of this Phase I/II study is to assess the safety of intravenous administered Morpholino oligomer directed against exon 51 (AVI-4658 PMO).
The scientific aim of the present extension study is to monitor long-term safety and tolerability of idebenone in patients with DMD. Furthermore, the long-term effect on respiratory, cardiac and motor functions, and skeletal muscle strength/function will be assessed.