We present a new strategy for the fabrication of artificial skeletal muscle tissue with functional morphologies based on an innovative 3D bioprinting approach. The methodology is based on a microfluidic printing head coupled to a co-axial needle extruder for high-resolution 3D bioprinting of hydrogel fibers laden with muscle precursor cells (C2C12). To promote myogenic differentiation, we formulated a tailored bioink with a photocurable semi-synthetic biopolymer (PEG-Fibrinogen) encapsulating cells into 3D constructs composed of aligned hydrogel fibers. After 3-5 days of culture, the encapsulated myoblasts started migrating and fusing, forming multinucleated myotubes within the 3D bioprinted fibers. The obtained myotubes showed high degree ...
Skeletal muscle regeneration is one of the major areas of interest in sport medicine as well as trau...
The reproduction of reliable in vitro models of human skeletal muscle is made harder by the intrinsi...
Human skeletal muscles are characterized by a unique aligned microstructure of myotubes which is imp...
We present a new strategy for the fabrication of artificial skeletal muscle tissue with functional m...
We present a new strategy for the fabrication of artificial skeletal muscle tissue with functional m...
We present a new strategy for the fabrication of artificial skeletal muscle tissue with functional m...
We present a new strategy for the fabrication of artificial skeletal muscle tissue with functional m...
Skeletal muscles own a remarkable self-repair and regenerative capacity in response to acute injurie...
Skeletal muscles own a remarkable self-repair and regenerative capacity in response to acute injurie...
Three-dimensional (3D) bioprinting is an emerging technology, which turned out to be an optimal tool...
Three-dimensional (3D) bioprinting is an emerging technology, which turned out to be an optimal tool...
Three-dimensional (3D) bioprinting is an emerging technology, which turned out to be an optimal tool...
Three-dimensional (3D) bioprinting is an emerging technology, which turned out to be an optimal tool...
International audienceThree-dimensional (3D) bioprinting is an emerging technology, which turned out...
International audienceThree-dimensional (3D) bioprinting is an emerging technology, which turned out...
Skeletal muscle regeneration is one of the major areas of interest in sport medicine as well as trau...
The reproduction of reliable in vitro models of human skeletal muscle is made harder by the intrinsi...
Human skeletal muscles are characterized by a unique aligned microstructure of myotubes which is imp...
We present a new strategy for the fabrication of artificial skeletal muscle tissue with functional m...
We present a new strategy for the fabrication of artificial skeletal muscle tissue with functional m...
We present a new strategy for the fabrication of artificial skeletal muscle tissue with functional m...
We present a new strategy for the fabrication of artificial skeletal muscle tissue with functional m...
Skeletal muscles own a remarkable self-repair and regenerative capacity in response to acute injurie...
Skeletal muscles own a remarkable self-repair and regenerative capacity in response to acute injurie...
Three-dimensional (3D) bioprinting is an emerging technology, which turned out to be an optimal tool...
Three-dimensional (3D) bioprinting is an emerging technology, which turned out to be an optimal tool...
Three-dimensional (3D) bioprinting is an emerging technology, which turned out to be an optimal tool...
Three-dimensional (3D) bioprinting is an emerging technology, which turned out to be an optimal tool...
International audienceThree-dimensional (3D) bioprinting is an emerging technology, which turned out...
International audienceThree-dimensional (3D) bioprinting is an emerging technology, which turned out...
Skeletal muscle regeneration is one of the major areas of interest in sport medicine as well as trau...
The reproduction of reliable in vitro models of human skeletal muscle is made harder by the intrinsi...
Human skeletal muscles are characterized by a unique aligned microstructure of myotubes which is imp...