View clinical trials related to Muscular Dystrophy, Duchenne.
Filter by:The primary objective of Parts 1 and 2 of the study were to establish the histologic effects of givinostat administered chronically at the selected daily dose. The secondary objectives of Parts 1 and 2 of the study were as follows: - To establish the effects of givinostat administered chronically at the selected daily dose on functional parameters, such as the 6-Minute Walk Test (6MWT), North Star Ambulatory Assessment (NSAA), and performance of upper limb (PUL) - To establish the safety and tolerability of givinostat administered chronically at the selected daily dose in children with Duchenne muscular dystrophy (DMD) - To explore the effects of givinostat administered chronically at the selected daily dose on parameters such as magnetic resonance imaging (MRI) and biomarkers - To explore the acceptability/palatability of the oral suspension - To explore whether the effects of givinostat on disease progression may be related to the type of DMD mutation. The primary objective of the Extension of the study was to evaluate the safety and tolerability of long-term administration of givinostat administered chronically at the selected daily dose in children with DMD. The secondary objectives of the Extensions were: - To establish the effects of givinostat administered chronically at the selected daily dose on muscular functional parameters, such as the 6MWT, NSAA, and PUL (Extensions 1, 2, and 3) - To explore the effects of givinostat administered chronically at the selected daily dose on parameters such as MRI (Extension 1) - To collect information related to 2 biomarkers, latent Transforming growth factor β (TGFβ) binding protein 4 (LTBP4) and osteopontin genotype (at the beginning of Extension 2 only) - To collect information related to time to wheelchair and how much time the children spend in wheelchair (Extension 3 - only for the children who were not able to complete the 6MWT)
To characterize the natural history and progression of Duchenne Muscular Dystrophy (DMD) to help inform the design of future studies, to capture biomarkers of safety and disease progression and to provide comparative data for the development of rare exons for which formal controlled trials are not feasible.
Carriers of Duchenne muscular dystrophy (DMD) often have no severe symptoms of the scelet muscles, but they may develop a poor heart function due to the involvement of the heart muscle. Ultrasound of the heart is recommended, but it can detect a cardiac affection only after the heart has already become weaker. Cardiac magnetic resonance tomography can detect myocardial fibrosis already at preserved heart function and may facilitate early therapy. In our study, diagnosed carriers of DMD will undergo examinations of the heart by blood tests, EKG, heart ultrasound and magnetic resonance at enrollment and after one year in order to assess the extent of cardiac affection and its association with the clinical development.
The objective is to determine whether nebivolol, a beta-blockade drug, can prevent the development of heart disease in patients with Duchenne muscular dystrophy aged 10 to 15 year-old.
This is an interventional study on Duchenne muscular dystrophy patients who will be receiving sedation for a muscle biopsy as part of another study.
The purpose of this study is to evaluate and optimize advances in radio frequency (RF) coil magnetic resonance imaging (MRI) technology at Cincinnati Children's Hospital Medical Center (CCHMC).
Duchenne muscular dystrophy (DMD), an X-linked recessive genetic disease always progressed slowly,tends to leading proximal skeletal muscle atrophy and weakness of limbs, as well as impaired respiratory muscle and cardiac muscle. To a large extent, patients always lose motor function gradually and die for heart failure or severe infection at the end stage of DMD. At present, the treatment strategy relies on heteropathy accompanied with rehabilitation training. However, the therapeutic effect remains extremely limited. Human umbilical cord mesenchymal stem cells (hUC-MSCs) have been evidenced to improve motor function, increase muscle strength and reduce abnormal levels of related enzymes, such as creatine kinase (CK), lactate dehydrogenase (LDH), alanine aminotransferase (ALT) and aspartate aminotransferase (AST). This study is aimed to explore the safety and efficacy of hUC-MSCs transplantation for DMD.
The Finding the Optimum Regimen for Duchenne Muscular Dystrophy (FOR DMD) study will compare three ways of giving corticosteroids to boys with Duchenne muscular dystrophy (DMD) to determine which of the three ways increases muscle strength the most, and which causes the fewest side effects. Using the results of this study, the investigators aim to provide patients and families with clearer information about the best way to take these drugs.
PDE5A inhibition, which boosts NO-cGMP signaling, will relieve functional muscle ischemia and restore normal blood flow regulation (i.e., functional sympatholysis) during exercise in boys with DMD. The investigators specific aim is to perform an efficient dose-titration study to inform the design of a randomized multicenter trial of PDE5A inhibition for clinical skeletal muscle and cardiac endpoints.
Duchenne/Becker muscular dystrophy (DBMD) is a genetic disorder that 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 during childhood and teenage years. A specific type of mutation, called a nonsense (premature stop codon) mutation, is the cause of DBMD in approximately 10-15% of boys with the disease. Ataluren is an orally delivered, investigational drug that has the potential to overcome the effects of the nonsense mutation. This study comprises a Phase 3, open-label study of ataluren in participants with nmDBMD who previously received ataluren at an Investigator site in a prior PTC-sponsored clinical study. A separate open-label study (PTC124-GD-016-DMD; NCT01247207) is being conducted for nmDBMD participants who previously received ataluren at an Investigator site in the United States (US).