This study aims at investigating the behavior in terms of the proliferation and skeletal muscle differentiation capability of two myoblastic cell lines, C2C12 and H9c2, on both isotropic and anisotropic electrospun nanofibrous poly(hydroxybutyrate) (PHB) scaffolds, as well as on PHB films and polystyrene controls. After a careful characterization of the matrices in terms of surface morphology, surface roughness and mechanical properties, the proliferation rate and the capability of the two cell lines to form skeletal myotubes were evaluated. Genetic analyses were also performed in order to assess the differentiation level of the cells on the different substrates. We demonstrated that the aligned nanofibrous mesh decreases the proliferation ...
The influence of novel nanostructured anisotropically electrospun poly(hydroxy butyrate) matrices on...
Microenvironmental cues, such as surface topography and substrate stiffness, may affect stem cells a...
Microenvironmental cues, such as surface topography and substrate stiffness, may affect stem cells a...
This study aims at investigating the behavior in terms of the proliferation and skeletal muscle diff...
This study aims at investigating the behavior in terms of the proliferation and skeletal muscle diff...
This study aims at investigating the behavior in terms of the proliferation and skeletal muscle diff...
This study aims at investigating the behavior in terms of the proliferation and skeletal muscle diff...
This study aims at investigating the behavior in terms of the proliferation and skeletal muscle diff...
This study aims at investigating the behavior in terms of the proliferation and skeletal muscle diff...
The influence of novel nanostructured anisotropically electrospun poly(hydroxy butyrate) matrices on...
The influence of novel nanostructured anisotropically electrospun poly(hydroxy butyrate) matrices on...
The influence of novel nanostructured anisotropically electrospun poly(hydroxy butyrate) matrices on...
The influence of novel nanostructured anisotropically electrospun poly(hydroxy butyrate) matrices on...
The influence of novel nanostructured anisotropically electrospun poly(hydroxy butyrate) matrices on...
Skeletal muscle consists of parallel bundles of myotubes formed by the fusion of myoblasts. We fabri...
The influence of novel nanostructured anisotropically electrospun poly(hydroxy butyrate) matrices on...
Microenvironmental cues, such as surface topography and substrate stiffness, may affect stem cells a...
Microenvironmental cues, such as surface topography and substrate stiffness, may affect stem cells a...
This study aims at investigating the behavior in terms of the proliferation and skeletal muscle diff...
This study aims at investigating the behavior in terms of the proliferation and skeletal muscle diff...
This study aims at investigating the behavior in terms of the proliferation and skeletal muscle diff...
This study aims at investigating the behavior in terms of the proliferation and skeletal muscle diff...
This study aims at investigating the behavior in terms of the proliferation and skeletal muscle diff...
This study aims at investigating the behavior in terms of the proliferation and skeletal muscle diff...
The influence of novel nanostructured anisotropically electrospun poly(hydroxy butyrate) matrices on...
The influence of novel nanostructured anisotropically electrospun poly(hydroxy butyrate) matrices on...
The influence of novel nanostructured anisotropically electrospun poly(hydroxy butyrate) matrices on...
The influence of novel nanostructured anisotropically electrospun poly(hydroxy butyrate) matrices on...
The influence of novel nanostructured anisotropically electrospun poly(hydroxy butyrate) matrices on...
Skeletal muscle consists of parallel bundles of myotubes formed by the fusion of myoblasts. We fabri...
The influence of novel nanostructured anisotropically electrospun poly(hydroxy butyrate) matrices on...
Microenvironmental cues, such as surface topography and substrate stiffness, may affect stem cells a...
Microenvironmental cues, such as surface topography and substrate stiffness, may affect stem cells a...