The extracellular matrix (ECM) of decellularized organs possesses the characteristics of the ideal tissue-engineering scaffold (i.e. histocompatibility, porosity, degradability, non-toxicity). We previously observed that the muscle acellular scaffold (MAS) is a pro-myogenic environment in vivo. In order to determine whether MAS, which is basically muscle ECM, behaves as a myogenic environment, regardless of its location, we analysed MAS interaction with both muscle and non-muscle cells and tissues, to assess the effects of MAS on cell differentiation. Bone morphogenetic protein treatment of C2C12 cells cultured within MAS induced osteogenic differentiation in vitro, thus suggesting that MAS does not irreversibly commit cells to myogenesis. ...
Tissue engineering is an innovative, multidisciplinary approach which combines (bio)materials, cell...
International audienceThe multipotency of scaffolds is a new concept. Skeletal muscle acellular scaf...
Skeletal muscle has a remarkable, yet limited capacity for regeneration. Severely damaged skeletal m...
International audienceThe extracellular matrix (ECM) of decellularized organs possesses the characte...
International audienceThe extracellular matrix (ECM) of decellularized organs possesses the characte...
International audienceThe extracellular matrix (ECM) of decellularized organs possesses the characte...
International audienceThe extracellular matrix (ECM) of decellularized organs possesses the characte...
The extracellular matrix (ECM) of decellularized organs possesses the characteristics of the ideal t...
International audienceThe extracellular matrix (ECM) of decellularized organs possesses the characte...
The extracellular matrix (ECM) of decellularized organs possesses the characteristics of the ideal t...
The extracellular matrix (ECM) of decellularized organs possesses the characteristics of the ideal t...
With the aim to generate tissue-engineered, implantable devices, we decellularized skeletal muscles ...
In the pursuit of a transplantable construct for the replacement of large skeletal muscle defects ar...
Background. Skeletal muscle defects arising from traumatic or pathological conditions may require su...
The multipotency of scaffolds is a new concept. Skeletal muscle acellular scaffolds (MAS) implanted ...
Tissue engineering is an innovative, multidisciplinary approach which combines (bio)materials, cell...
International audienceThe multipotency of scaffolds is a new concept. Skeletal muscle acellular scaf...
Skeletal muscle has a remarkable, yet limited capacity for regeneration. Severely damaged skeletal m...
International audienceThe extracellular matrix (ECM) of decellularized organs possesses the characte...
International audienceThe extracellular matrix (ECM) of decellularized organs possesses the characte...
International audienceThe extracellular matrix (ECM) of decellularized organs possesses the characte...
International audienceThe extracellular matrix (ECM) of decellularized organs possesses the characte...
The extracellular matrix (ECM) of decellularized organs possesses the characteristics of the ideal t...
International audienceThe extracellular matrix (ECM) of decellularized organs possesses the characte...
The extracellular matrix (ECM) of decellularized organs possesses the characteristics of the ideal t...
The extracellular matrix (ECM) of decellularized organs possesses the characteristics of the ideal t...
With the aim to generate tissue-engineered, implantable devices, we decellularized skeletal muscles ...
In the pursuit of a transplantable construct for the replacement of large skeletal muscle defects ar...
Background. Skeletal muscle defects arising from traumatic or pathological conditions may require su...
The multipotency of scaffolds is a new concept. Skeletal muscle acellular scaffolds (MAS) implanted ...
Tissue engineering is an innovative, multidisciplinary approach which combines (bio)materials, cell...
International audienceThe multipotency of scaffolds is a new concept. Skeletal muscle acellular scaf...
Skeletal muscle has a remarkable, yet limited capacity for regeneration. Severely damaged skeletal m...