The development of new, viable, and functional engineered tissue is a complex and challenging task. Skeletal muscle constructs have specific requirements as cells are sensitive to the stiffness, geometry of the materials, and biological micro-environment. The aim of this study was thus to design and characterize a multi-scale scaffold and to evaluate it regarding the differentiation process of C2C12 skeletal myoblasts. The significance of the work lies in the microfabrication of lines of polyethylene glycol, on poly(ε-caprolactone) nanofiber sheets obtained using the electrospinning process, coated or not with gold nanoparticles to act as a potential substrate for electrical stimulation. The differentiation of C2C12 cells was studied over a...
The engineering of skeletal muscle requires platforms that facilitate the proliferation and maintena...
Designing scaffolds that can mimic native skeletal muscle tissue and induce 3D cellular alignment an...
Designing scaffolds that can mimic native skeletal muscle tissue and induce 3D cellular alignment an...
The development of new, viable, and functional engineered tissue is a complex and challenging task. ...
Tissue engineering combines a scaffold, cells and regulatory signals, reproducing a biomimetic extra...
Tissue engineering combines a scaffold, cells and regulatory signals, reproducing a biomimetic extra...
Proliferation and fusion of myoblasts are needed for the generation and repair of multinucleated ske...
To engineer tissue-like structures, cells must organize themselves into three-dimensional (3D) netwo...
To engineer tissue-like structures, cells must organize themselves into three-dimensional (3D) netwo...
The engineering of skeletal muscle requires platforms that facilitate the proliferation and maintena...
Skeletal muscle tissue damage costs the US government hundreds of billions of dollars annually. Mean...
Skeletal muscle consists of parallel bundles of myotubes formed by the fusion of myoblasts. We fabri...
Skeletal muscles own a remarkable self-repair and regenerative capacity in response to acute injurie...
Alignment of skeletal myoblasts is considered a critical step during myotube formation. The C2C12 ce...
Designing scaffolds that can mimic native skeletal muscle tissue and induce 3D cellular alignment an...
The engineering of skeletal muscle requires platforms that facilitate the proliferation and maintena...
Designing scaffolds that can mimic native skeletal muscle tissue and induce 3D cellular alignment an...
Designing scaffolds that can mimic native skeletal muscle tissue and induce 3D cellular alignment an...
The development of new, viable, and functional engineered tissue is a complex and challenging task. ...
Tissue engineering combines a scaffold, cells and regulatory signals, reproducing a biomimetic extra...
Tissue engineering combines a scaffold, cells and regulatory signals, reproducing a biomimetic extra...
Proliferation and fusion of myoblasts are needed for the generation and repair of multinucleated ske...
To engineer tissue-like structures, cells must organize themselves into three-dimensional (3D) netwo...
To engineer tissue-like structures, cells must organize themselves into three-dimensional (3D) netwo...
The engineering of skeletal muscle requires platforms that facilitate the proliferation and maintena...
Skeletal muscle tissue damage costs the US government hundreds of billions of dollars annually. Mean...
Skeletal muscle consists of parallel bundles of myotubes formed by the fusion of myoblasts. We fabri...
Skeletal muscles own a remarkable self-repair and regenerative capacity in response to acute injurie...
Alignment of skeletal myoblasts is considered a critical step during myotube formation. The C2C12 ce...
Designing scaffolds that can mimic native skeletal muscle tissue and induce 3D cellular alignment an...
The engineering of skeletal muscle requires platforms that facilitate the proliferation and maintena...
Designing scaffolds that can mimic native skeletal muscle tissue and induce 3D cellular alignment an...
Designing scaffolds that can mimic native skeletal muscle tissue and induce 3D cellular alignment an...