AbstractIn some parts of native tissues, the orientation of cells and/or extracellular matrixes is well organized. We know that because anisotropy produces important tissue functions, an appropriate anisotropy needs to be designed to biomimetically construct complex tissue. Here, we show the unique features of anisotropic myoblast sheets for organizing the three-dimensional (3D) orientation of myoblasts and myotubes. Utilizing a micropatterned thermoresponsive surface, human skeletal muscle myoblasts were aligned on the surface, and manipulated as a single anisotropic cell sheet by reducing the culture temperature. Consequently, layering of anisotropic myoblast sheets using gelatin gel allowed 3D myotube constructs to be built up with the d...
This thesis focuses on using microtechnology to advance the field of tissue engineering by using wav...
Directed collective cell migration governs cell orientation during tissue morphogenesis, wound heali...
Techniques developed for the in vitro reproduction of three-dimensional (3D) biomimetic tissue will ...
In vivo tissues, including the cardiac, skeletal muscles, tendon and ligaments display characteristi...
Reconstitution of tissue morphology with inherent left–right (LR) asymmetry is essential for tissue/...
© 2021 Wiley-VCH GmbHTissue engineering of skeletal muscle has been proposed as a potential regenera...
Proliferation and fusion of myoblasts are needed for the generation and repair of multinucleated ske...
Well-organized orientation of cells and anisotropic extracellular matrix (ECM) are crucial in engine...
To engineer tissue-like structures, cells must organize themselves into three-dimensional (3D) netwo...
Tissue engineering of skeletal muscle aims to replicate the parallel alignment of myotubes on the na...
AbstractMicropatterned poly(dimethylsiloxane) substrates fabricated by soft lithography led to large...
Thesis (Ph.D.)--University of Washington, 2016-12Most tissues in the human body demonstrate multisca...
Cellular alignment 3D engineered tissue a b s t r a c t Organized cellular alignment is critical to ...
Tissue engineering has offered unique opportunities for disease modeling and regenerative medicine; ...
Tissue engineering methods that aim to mimic the hierarchical structure of skeletal muscle tissue ha...
This thesis focuses on using microtechnology to advance the field of tissue engineering by using wav...
Directed collective cell migration governs cell orientation during tissue morphogenesis, wound heali...
Techniques developed for the in vitro reproduction of three-dimensional (3D) biomimetic tissue will ...
In vivo tissues, including the cardiac, skeletal muscles, tendon and ligaments display characteristi...
Reconstitution of tissue morphology with inherent left–right (LR) asymmetry is essential for tissue/...
© 2021 Wiley-VCH GmbHTissue engineering of skeletal muscle has been proposed as a potential regenera...
Proliferation and fusion of myoblasts are needed for the generation and repair of multinucleated ske...
Well-organized orientation of cells and anisotropic extracellular matrix (ECM) are crucial in engine...
To engineer tissue-like structures, cells must organize themselves into three-dimensional (3D) netwo...
Tissue engineering of skeletal muscle aims to replicate the parallel alignment of myotubes on the na...
AbstractMicropatterned poly(dimethylsiloxane) substrates fabricated by soft lithography led to large...
Thesis (Ph.D.)--University of Washington, 2016-12Most tissues in the human body demonstrate multisca...
Cellular alignment 3D engineered tissue a b s t r a c t Organized cellular alignment is critical to ...
Tissue engineering has offered unique opportunities for disease modeling and regenerative medicine; ...
Tissue engineering methods that aim to mimic the hierarchical structure of skeletal muscle tissue ha...
This thesis focuses on using microtechnology to advance the field of tissue engineering by using wav...
Directed collective cell migration governs cell orientation during tissue morphogenesis, wound heali...
Techniques developed for the in vitro reproduction of three-dimensional (3D) biomimetic tissue will ...