The object of this study was to develop an in vitro bioengineered three-dimensional vascularized skeletal muscle tissue, named eX-vivo Muscle Engineered Tissue (X-MET). This new tissue contains cells that exhibit the characteristics of differentiated myotubes, with organized contractile machinery, undifferentiated cells, and vascular cells capable of forming "vessel-like" networks. X-MET showed biomechanical properties comparable with that of adult skeletal muscles; thus it more closely mimics the cellular complexity typical of in vivo muscle tissue than myogenic cells cultured in standard monolayer conditions. Transplanted X-MET was able to mimic the activity of the excided EDL muscle, restoring the functionality of the damaged muscle. Our...
Summary: Generating human skeletal muscle models is instrumental for investigating muscle pathology ...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Mechanical Engineering, 2019Cat...
Myofibers, the basic structural elements of skeletal muscle tissue, are formed and regenerated after...
International audienceThe object of this study was to develop an in vitro bioengineered three-dimens...
Skeletal muscle is a complex tissue with a capacity to regenerate upon injury. However, when skeleta...
Engineered muscle tissues can be used for several different purposes, which include the production o...
For decades, the study of tissue-engineered skeletal muscle has been driven by a clinical need to tr...
For decades, the study of tissue-engineered skeletal muscle has been driven by a clinical need to tr...
Constructing engineered human skeletal muscle tissues that resemble the function and microstructure ...
Tissue-engineered skeletal muscle can serve as a physiological model of natural muscle and a potenti...
One of the major obstacles in engineering thick, complex tissues such as muscle is the need to vascu...
Three-dimensional (3D) engineered tissue constructs are a novel and promising approach to tissue rep...
Abstract The adult heart displays poor reparative capacities after injury. Cell transplantation and ...
In native skeletal muscle, densely packed myofibers exist in close contact with surrounding motor ne...
Skeletal muscle tissue exhibits endogenous ability to regenerate. However, the self-repair mechanism...
Summary: Generating human skeletal muscle models is instrumental for investigating muscle pathology ...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Mechanical Engineering, 2019Cat...
Myofibers, the basic structural elements of skeletal muscle tissue, are formed and regenerated after...
International audienceThe object of this study was to develop an in vitro bioengineered three-dimens...
Skeletal muscle is a complex tissue with a capacity to regenerate upon injury. However, when skeleta...
Engineered muscle tissues can be used for several different purposes, which include the production o...
For decades, the study of tissue-engineered skeletal muscle has been driven by a clinical need to tr...
For decades, the study of tissue-engineered skeletal muscle has been driven by a clinical need to tr...
Constructing engineered human skeletal muscle tissues that resemble the function and microstructure ...
Tissue-engineered skeletal muscle can serve as a physiological model of natural muscle and a potenti...
One of the major obstacles in engineering thick, complex tissues such as muscle is the need to vascu...
Three-dimensional (3D) engineered tissue constructs are a novel and promising approach to tissue rep...
Abstract The adult heart displays poor reparative capacities after injury. Cell transplantation and ...
In native skeletal muscle, densely packed myofibers exist in close contact with surrounding motor ne...
Skeletal muscle tissue exhibits endogenous ability to regenerate. However, the self-repair mechanism...
Summary: Generating human skeletal muscle models is instrumental for investigating muscle pathology ...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Mechanical Engineering, 2019Cat...
Myofibers, the basic structural elements of skeletal muscle tissue, are formed and regenerated after...