In this work, the influence of mechanical stiffness and geometrical confinement on the 3D culture of myoblast-laden gelatin methacryloyl (GelMA) photo-crosslinkable hydrogels was evaluated in terms of in vitro myogenesis. We formulated a set of cell-laden GelMA hydrogels with a compressive modulus in the range 1 ÷ 17 kPa, obtained by varying GelMA concentration and degree of cross-linking. C2C12 myoblasts were chosen as the cell model to investigate the supportiveness of different GelMA hydrogels toward myotube formation up to 2 weeks. Results showed that the hydrogels with a stiffness in the range 1 ÷ 3 kPa provided enhanced support to C2C12 differentiation in terms of myotube number, rate of formation, and space distribution. Finally, we ...
Gelatin hydrogels can mimic the microenvironments of natural tissues and encapsulate cells homogeneo...
New biocompatible materials have enabled the direct 3D printing of complex functional living tissues...
The reproduction of reliable in vitro models of human skeletal muscle is made harder by the intrinsi...
In this work, the influence of mechanical stiffness and geometrical confinement on the 3D culture of...
In this work, the influence of mechanical stiffness and geometrical confinement on the 3D culture of...
In this work, the influence of mechanical stiffness and geometrical confinement on the 3D culture of...
In this work, the influence of mechanical stiffness and geometrical confinement on the 3D culture of...
In this work, the influence of mechanical stiffness and geometrical confinement on the 3D culture of...
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...
Stiffness gradient hydrogels are a useful platform for studying mechanical interactions between cell...
Understanding the mechanisms of the fate of stem cells is one of the major cornerstones of regenerat...
Understanding the mechanisms of the fate of stem cells is one of the major cornerstones of regenerat...
The use of injectable hydrogel scaffolds for encapsulating stem cells has been studied as an effecti...
Gelatin hydrogels can mimic the microenvironments of natural tissues and encapsulate cells homogeneo...
Gelatin hydrogels can mimic the microenvironments of natural tissues and encapsulate cells homogeneo...
New biocompatible materials have enabled the direct 3D printing of complex functional living tissues...
The reproduction of reliable in vitro models of human skeletal muscle is made harder by the intrinsi...
In this work, the influence of mechanical stiffness and geometrical confinement on the 3D culture of...
In this work, the influence of mechanical stiffness and geometrical confinement on the 3D culture of...
In this work, the influence of mechanical stiffness and geometrical confinement on the 3D culture of...
In this work, the influence of mechanical stiffness and geometrical confinement on the 3D culture of...
In this work, the influence of mechanical stiffness and geometrical confinement on the 3D culture of...
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...
Stiffness gradient hydrogels are a useful platform for studying mechanical interactions between cell...
Understanding the mechanisms of the fate of stem cells is one of the major cornerstones of regenerat...
Understanding the mechanisms of the fate of stem cells is one of the major cornerstones of regenerat...
The use of injectable hydrogel scaffolds for encapsulating stem cells has been studied as an effecti...
Gelatin hydrogels can mimic the microenvironments of natural tissues and encapsulate cells homogeneo...
Gelatin hydrogels can mimic the microenvironments of natural tissues and encapsulate cells homogeneo...
New biocompatible materials have enabled the direct 3D printing of complex functional living tissues...
The reproduction of reliable in vitro models of human skeletal muscle is made harder by the intrinsi...