The majority of muscles, nerves, and tendons are composed of fiber-like fascicle morphology. Each fascicle has a) elongated cells highly aligned with the length of the construct, b) a high volumetric cell density, and c) a high length-to-width ratio with a diameter small enough to facilitate perfusion. Fiber-like fascicles are important building blocks for forming tissues of various sizes and cross-sectional shapes, yet no effective technology is currently available for producing long and thin fascicle-like constructs with aligned, high-density cells. Here we present a method for molding cell-laden hydrogels that generate cylindrical tissue structures that are ~100 μm in diameter with an extremely high length to diameter ratio (>100[thin sp...
<p>Transplantation of a functional engineered skeletal muscle substitute is a promising therapeutic ...
Skeletal muscles own a remarkable self-repair and regenerative capacity in response to acute injurie...
Micropatterned biomaterial-based hydrogel platforms allow the recapitulation of in vivo-like microst...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Mechanical Engineering, 2014.Ca...
Muscle tissues can be fabricated in vitro by culturing myoblast-populated hydrogels. To counter the ...
The proper functioning of many organs and tissues containing smooth muscles greatly depends on the i...
Tissue-engineered constructs have great potential in many intervention strategies. In order for thes...
Many tissues (e.g. nervous system, cardiac and musculoskeletal) have anisotropic structures and cell...
Engineered tissues featuring aligned ECM possess superior regenerative capabilities for the healing ...
Tissue engineering of skeletal muscle has been proposed as a potential regenerative treatment for ex...
Many mammalian tissues have a specific cellular arrangement that enables their unique function. For ...
The reproduction of reliable in vitro models of human skeletal muscle is made harder by the intrinsi...
Vascular smooth muscle cells align circumferentially around the vessel lumen, which allows these cel...
Techniques developed for the in vitro reproduction of three-dimensional (3D) biomimetic tissue will ...
Cellular alignment 3D engineered tissue a b s t r a c t Organized cellular alignment is critical to ...
<p>Transplantation of a functional engineered skeletal muscle substitute is a promising therapeutic ...
Skeletal muscles own a remarkable self-repair and regenerative capacity in response to acute injurie...
Micropatterned biomaterial-based hydrogel platforms allow the recapitulation of in vivo-like microst...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Mechanical Engineering, 2014.Ca...
Muscle tissues can be fabricated in vitro by culturing myoblast-populated hydrogels. To counter the ...
The proper functioning of many organs and tissues containing smooth muscles greatly depends on the i...
Tissue-engineered constructs have great potential in many intervention strategies. In order for thes...
Many tissues (e.g. nervous system, cardiac and musculoskeletal) have anisotropic structures and cell...
Engineered tissues featuring aligned ECM possess superior regenerative capabilities for the healing ...
Tissue engineering of skeletal muscle has been proposed as a potential regenerative treatment for ex...
Many mammalian tissues have a specific cellular arrangement that enables their unique function. For ...
The reproduction of reliable in vitro models of human skeletal muscle is made harder by the intrinsi...
Vascular smooth muscle cells align circumferentially around the vessel lumen, which allows these cel...
Techniques developed for the in vitro reproduction of three-dimensional (3D) biomimetic tissue will ...
Cellular alignment 3D engineered tissue a b s t r a c t Organized cellular alignment is critical to ...
<p>Transplantation of a functional engineered skeletal muscle substitute is a promising therapeutic ...
Skeletal muscles own a remarkable self-repair and regenerative capacity in response to acute injurie...
Micropatterned biomaterial-based hydrogel platforms allow the recapitulation of in vivo-like microst...