The reproduction of reliable in vitro models of human skeletal muscle is made harder by the intrinsic 3D structural complexity of this tissue. Here we coupled engineered hydrogel with 3D structural cues and specific mechanical properties to derive human 3D muscle constructs ("myobundles") at the scale of single fibers, by using primary myoblasts or myoblasts derived from embryonic stem cells. To this aim, cell culture was performed in confined, laminin-coated micrometric channels obtained inside a 3D hydrogel characterized by the optimal stiffness for skeletal muscle myogenesis. Primary myoblasts cultured in our 3D culture system were able to undergo myotube differentiation and maturation, as demonstrated by the proper expression and locali...
In native skeletal muscle, densely packed myofibers exist in close contact with surrounding motor ne...
A bioengineered skeletal muscle tissue as an alternative for autologous tissue flaps, which mimics ...
<p>Skeletal and cardiac muscles are crucial biological actuators with limited capacity to repair the...
The reproduction of reliable in vitro models of human skeletal muscle is made harder by the intrinsi...
The reproduction of reliable in vitro models of human skeletal muscle is made harder by the intrinsi...
The reproduction of reliable in vitro models of human skeletal muscle is made harder by the intrinsi...
Myofibers, the basic structural elements of skeletal muscle tissue, are formed and regenerated after...
The skeletal muscle is the largest tissue of the human body. Its main function is to generate contra...
Advancing 2D and 3D in vitro human skeletal muscle model designs that are simple and reproducible wo...
Generating human skeletal muscle models is instrumental for investigating muscle pathology and thera...
We present a new strategy for the fabrication of artificial skeletal muscle tissue with functional m...
Advanced in vitro models of human skeletal muscle tissue are increasingly needed to model complex de...
Skeletal muscle disease modeling offers the unique opportunity to investigate devastating muscle dis...
Tissue engineered skeletal muscle allows investigation of the cellular and molecular mechanisms that...
Tissue engineered skeletal muscle allows investigation of the cellular and molecular mechanisms that...
In native skeletal muscle, densely packed myofibers exist in close contact with surrounding motor ne...
A bioengineered skeletal muscle tissue as an alternative for autologous tissue flaps, which mimics ...
<p>Skeletal and cardiac muscles are crucial biological actuators with limited capacity to repair the...
The reproduction of reliable in vitro models of human skeletal muscle is made harder by the intrinsi...
The reproduction of reliable in vitro models of human skeletal muscle is made harder by the intrinsi...
The reproduction of reliable in vitro models of human skeletal muscle is made harder by the intrinsi...
Myofibers, the basic structural elements of skeletal muscle tissue, are formed and regenerated after...
The skeletal muscle is the largest tissue of the human body. Its main function is to generate contra...
Advancing 2D and 3D in vitro human skeletal muscle model designs that are simple and reproducible wo...
Generating human skeletal muscle models is instrumental for investigating muscle pathology and thera...
We present a new strategy for the fabrication of artificial skeletal muscle tissue with functional m...
Advanced in vitro models of human skeletal muscle tissue are increasingly needed to model complex de...
Skeletal muscle disease modeling offers the unique opportunity to investigate devastating muscle dis...
Tissue engineered skeletal muscle allows investigation of the cellular and molecular mechanisms that...
Tissue engineered skeletal muscle allows investigation of the cellular and molecular mechanisms that...
In native skeletal muscle, densely packed myofibers exist in close contact with surrounding motor ne...
A bioengineered skeletal muscle tissue as an alternative for autologous tissue flaps, which mimics ...
<p>Skeletal and cardiac muscles are crucial biological actuators with limited capacity to repair the...