AbstractZebrafish reproduce in large quantities, grow rapidly, and are transparent early in development. For these reasons, zebrafish have been used extensively to model vertebrate development and disease. Like mammals, zebrafish express dystrophin and many of its associated proteins early in development and these proteins have been shown to be vital for zebrafish muscle stability. In dystrophin-null zebrafish, muscle degeneration becomes apparent as early as 3 days post-fertilization (dpf) making the zebrafish an excellent organism for large-scale screens to identify other genes involved in the disease process or drugs capable of correcting the disease phenotype. Being transparent, developing zebrafish are also an ideal experimental model ...
Peer Reviewedhttp://deepblue.lib.umich.edu/bitstream/2027.42/99682/1/febs12412.pd
Sapje zebrafish lack the protein dystrophin and are the smallest vertebrate model of Duchenne muscul...
Skeletal muscle is highly conserved among vertebrates and is essential for strength and locomotion. ...
AbstractZebrafish reproduce in large quantities, grow rapidly, and are transparent early in developm...
Abstract Background Human muscular dystrophies are a ...
The muscular dystrophies and congenital myopathies are inherited diseases of the skeletal muscle, wh...
Muscular dystrophies (MD) are a heterogeneous group of genetic disorders that cause muscle weakness,...
Many cases of muscular dystrophy in humans are caused by mutations in members of the dystrophin asso...
A better understanding of muscle regeneration would allow us to devise therapies that are more effec...
The congenital myopathies are a diverse group of inherited neuromuscular disorders that manifest as ...
Large-scale mutagenic screens of the zebrafish genome have identified a number of different classes ...
Dystrophin forms an essential link between sarcolemma and cytoskeleton, perturbation of which cause...
Dystrophin forms an essential link between sarcolemma and cytoskeleton, perturbation of which causes...
AbstractMyofibrillar myopathies (MFM) are progressive diseases of human heart and skeletal muscle wi...
The function of skeletal muscle is an essential component of animal physiology and daily life. Here...
Peer Reviewedhttp://deepblue.lib.umich.edu/bitstream/2027.42/99682/1/febs12412.pd
Sapje zebrafish lack the protein dystrophin and are the smallest vertebrate model of Duchenne muscul...
Skeletal muscle is highly conserved among vertebrates and is essential for strength and locomotion. ...
AbstractZebrafish reproduce in large quantities, grow rapidly, and are transparent early in developm...
Abstract Background Human muscular dystrophies are a ...
The muscular dystrophies and congenital myopathies are inherited diseases of the skeletal muscle, wh...
Muscular dystrophies (MD) are a heterogeneous group of genetic disorders that cause muscle weakness,...
Many cases of muscular dystrophy in humans are caused by mutations in members of the dystrophin asso...
A better understanding of muscle regeneration would allow us to devise therapies that are more effec...
The congenital myopathies are a diverse group of inherited neuromuscular disorders that manifest as ...
Large-scale mutagenic screens of the zebrafish genome have identified a number of different classes ...
Dystrophin forms an essential link between sarcolemma and cytoskeleton, perturbation of which cause...
Dystrophin forms an essential link between sarcolemma and cytoskeleton, perturbation of which causes...
AbstractMyofibrillar myopathies (MFM) are progressive diseases of human heart and skeletal muscle wi...
The function of skeletal muscle is an essential component of animal physiology and daily life. Here...
Peer Reviewedhttp://deepblue.lib.umich.edu/bitstream/2027.42/99682/1/febs12412.pd
Sapje zebrafish lack the protein dystrophin and are the smallest vertebrate model of Duchenne muscul...
Skeletal muscle is highly conserved among vertebrates and is essential for strength and locomotion. ...