Three-dimensional (3D) engineered tissue constructs are a novel and promising approach to tissue repair and regeneration. 3D tissue constructs have the ability to restore form and function to damaged soft tissue unlike previous methods, such as plastic surgery, which are able to restore only form, leaving the function of the soft tissue often compromised. In this study, we seeded murine myoblasts (C2C12) into a collagen composite scaffold and cultured the scaffold in a roller bottle cell culture system in order to create a 3D tissue graft in vitro. The 3D graft created in vitro was then utilized to investigate muscle tissue repair in vivo. The 3D muscle grafts were implanted into defect sites created in the skeletal muscles in mice. We dete...
In native skeletal muscle, densely packed myofibers exist in close contact with surrounding motor ne...
Tissue engineering represents a possible approach to replace the lost or defective muscle. The purp...
Summary: Generating human skeletal muscle models is instrumental for investigating muscle pathology ...
Kroehne V, Heschel I, Schuegner F, Lasrich D, Bartsch JW, Jockusch H. Use of a novel collagen matrix...
Myofibers, the basic structural elements of skeletal muscle tissue, are formed and regenerated after...
Skeletal muscle tissue exhibits endogenous ability to regenerate. However, the self-repair mechanism...
Duchenne muscular dystrophy (DMD) is caused by the lack of dystrophin; affected muscles are characte...
The production of skeletal muscle engineered grafts holds promising implications for treatment of a ...
Collagens may be used as biomaterials for soft tissue reconstruction, e.g., the abdominal wall. We p...
Skeletal muscle is a complex tissue with a capacity to regenerate upon injury. However, when skeleta...
Skeletal muscle has a high regenerative capacity, injuries trigger a regenerative program that resto...
Engineered muscle tissues can be used for several different purposes, which include the production o...
Purpose of reviewRegardless of the underlying cause, skeletal muscle wasting is detrimental for a pe...
For decades, the study of tissue-engineered skeletal muscle has been driven by a clinical need to tr...
Three-dimensional tissue-engineered structures enable more representative determination of novel dru...
In native skeletal muscle, densely packed myofibers exist in close contact with surrounding motor ne...
Tissue engineering represents a possible approach to replace the lost or defective muscle. The purp...
Summary: Generating human skeletal muscle models is instrumental for investigating muscle pathology ...
Kroehne V, Heschel I, Schuegner F, Lasrich D, Bartsch JW, Jockusch H. Use of a novel collagen matrix...
Myofibers, the basic structural elements of skeletal muscle tissue, are formed and regenerated after...
Skeletal muscle tissue exhibits endogenous ability to regenerate. However, the self-repair mechanism...
Duchenne muscular dystrophy (DMD) is caused by the lack of dystrophin; affected muscles are characte...
The production of skeletal muscle engineered grafts holds promising implications for treatment of a ...
Collagens may be used as biomaterials for soft tissue reconstruction, e.g., the abdominal wall. We p...
Skeletal muscle is a complex tissue with a capacity to regenerate upon injury. However, when skeleta...
Skeletal muscle has a high regenerative capacity, injuries trigger a regenerative program that resto...
Engineered muscle tissues can be used for several different purposes, which include the production o...
Purpose of reviewRegardless of the underlying cause, skeletal muscle wasting is detrimental for a pe...
For decades, the study of tissue-engineered skeletal muscle has been driven by a clinical need to tr...
Three-dimensional tissue-engineered structures enable more representative determination of novel dru...
In native skeletal muscle, densely packed myofibers exist in close contact with surrounding motor ne...
Tissue engineering represents a possible approach to replace the lost or defective muscle. The purp...
Summary: Generating human skeletal muscle models is instrumental for investigating muscle pathology ...