There are several three-dimensional (3D) skeletal muscle (SkM) tissue engineered models reported in the literature. 3D SkM tissue engineering (TE) aims to recapitulate the structure and function of native (in vivo) tissue, within an in vitro environment. This requires the differentiation of myoblasts into aligned multinucleated myotubes surrounded by a biologically representative extracellular matrix (ECM). In the present work, a new commercially available 3D SkM TE culture chamber manufactured from polyether ether ketone (PEEK) that facilitates suitable development of these myotubes is presented. To assess the outcomes of the myotubes within these constructs, morphological, gene expression, and ECM remodeling parameters were compared again...
Biophysical/biochemical cues from the environment contribute to regulation of the regenerative capac...
Biophysical/biochemical cues from the environment contribute to regulation of the regenerative capac...
Tissue engineered skeletal muscle has great utility in experimental studies of physiology, clinical ...
Traditionally in vitro 2D cultures were used for pre-clinical tests, followed by complex in vivo ass...
Three-dimensional tissue-engineered structures enable more representative determination of novel dru...
Three-dimensional tissue-engineered structures enable more representative determination of novel dru...
Classical approaches to engineer skeletal muscle tissue based on current regenerative and surgical p...
In native skeletal muscle, densely packed myofibers exist in close contact with surrounding motor ne...
Many congenital skeletal muscle disorders including muscular dystrophies are caused by genetic mutat...
The reproduction of reliable in vitro models of human skeletal muscle is made harder by the intrinsi...
Three‐dimensional (3D) tissue engineered structures enable more representative determination of nove...
Skeletal muscle is a complex tissue with a capacity to regenerate upon injury. However, when skeleta...
Myofibers, the basic structural elements of skeletal muscle tissue, are formed and regenerated after...
Skeletal muscle (SkM) is a tissue that responds to mechanical load following both physiological (exe...
Cells are traditionally grown on a flat, plastic surface that has been optimized for cell attachment...
Biophysical/biochemical cues from the environment contribute to regulation of the regenerative capac...
Biophysical/biochemical cues from the environment contribute to regulation of the regenerative capac...
Tissue engineered skeletal muscle has great utility in experimental studies of physiology, clinical ...
Traditionally in vitro 2D cultures were used for pre-clinical tests, followed by complex in vivo ass...
Three-dimensional tissue-engineered structures enable more representative determination of novel dru...
Three-dimensional tissue-engineered structures enable more representative determination of novel dru...
Classical approaches to engineer skeletal muscle tissue based on current regenerative and surgical p...
In native skeletal muscle, densely packed myofibers exist in close contact with surrounding motor ne...
Many congenital skeletal muscle disorders including muscular dystrophies are caused by genetic mutat...
The reproduction of reliable in vitro models of human skeletal muscle is made harder by the intrinsi...
Three‐dimensional (3D) tissue engineered structures enable more representative determination of nove...
Skeletal muscle is a complex tissue with a capacity to regenerate upon injury. However, when skeleta...
Myofibers, the basic structural elements of skeletal muscle tissue, are formed and regenerated after...
Skeletal muscle (SkM) is a tissue that responds to mechanical load following both physiological (exe...
Cells are traditionally grown on a flat, plastic surface that has been optimized for cell attachment...
Biophysical/biochemical cues from the environment contribute to regulation of the regenerative capac...
Biophysical/biochemical cues from the environment contribute to regulation of the regenerative capac...
Tissue engineered skeletal muscle has great utility in experimental studies of physiology, clinical ...