Summary: Development of biological tissues in vitro is not a trivial task and requires the correct maturation of the selected cell line. To this aim, many attempts were done mainly by mimicking the biological environment using micro/nanopatterned or stimulated scaffolds. However, the obtainment of functional tissues in vitro is still far from being achieved. In contrast with the standard methods, we here present an easy approach for the maturation of myotubes toward the reproduction of muscular tissue. By using liquid crystalline networks with different stiffness and molecular alignment, we demonstrate how the material itself can give favorable interactions with myoblasts helping a correct differentiation. Electrophysiological studies demon...
Compared to two-dimensional cell cultures, three-dimensional ones potentially allow recreating natur...
Compared to two-dimensional cell cultures, three-dimensional ones potentially allow recreating natur...
Compared to two-dimensional cell cultures, three-dimensional ones potentially allow recreating natur...
Development of biological tissues in vitro is not a trivial task and requires the correct maturation...
Proliferation and fusion of myoblasts are needed for the generation and repair of multinucleated ske...
The C2C12 cell line is frequently used as a model of skeletal muscle differentiation. In our serum-f...
The C2C12 cell line is frequently used as a model of skeletal muscle differentiation. In our serum-f...
The C2C12 cell line is frequently used as a model of skeletal muscle differentiation. In our serum-f...
The in vitro development of human myotubes carrying genetic diseases, such as Duchenne Muscular Dyst...
The engineering of skeletal muscle requires platforms that facilitate the proliferation and maintena...
Skeletal muscle consists of parallel bundles of myotubes formed by the fusion of myoblasts. We fabri...
The C2C12 cell line is frequently used as a model of skeletal muscle differentiation. In our serum-f...
An in vitro muscle-like structure with parallel-oriented contractile myotubes is needed as a model o...
Compared to two-dimensional cell cultures, three-dimensional ones potentially allow recreating natur...
Compared to two-dimensional cell cultures, three-dimensional ones potentially allow recreating natur...
Compared to two-dimensional cell cultures, three-dimensional ones potentially allow recreating natur...
Compared to two-dimensional cell cultures, three-dimensional ones potentially allow recreating natur...
Compared to two-dimensional cell cultures, three-dimensional ones potentially allow recreating natur...
Development of biological tissues in vitro is not a trivial task and requires the correct maturation...
Proliferation and fusion of myoblasts are needed for the generation and repair of multinucleated ske...
The C2C12 cell line is frequently used as a model of skeletal muscle differentiation. In our serum-f...
The C2C12 cell line is frequently used as a model of skeletal muscle differentiation. In our serum-f...
The C2C12 cell line is frequently used as a model of skeletal muscle differentiation. In our serum-f...
The in vitro development of human myotubes carrying genetic diseases, such as Duchenne Muscular Dyst...
The engineering of skeletal muscle requires platforms that facilitate the proliferation and maintena...
Skeletal muscle consists of parallel bundles of myotubes formed by the fusion of myoblasts. We fabri...
The C2C12 cell line is frequently used as a model of skeletal muscle differentiation. In our serum-f...
An in vitro muscle-like structure with parallel-oriented contractile myotubes is needed as a model o...
Compared to two-dimensional cell cultures, three-dimensional ones potentially allow recreating natur...
Compared to two-dimensional cell cultures, three-dimensional ones potentially allow recreating natur...
Compared to two-dimensional cell cultures, three-dimensional ones potentially allow recreating natur...
Compared to two-dimensional cell cultures, three-dimensional ones potentially allow recreating natur...
Compared to two-dimensional cell cultures, three-dimensional ones potentially allow recreating natur...