Engineering three-dimensional (3D) scaffolds with in vivo like architecture and function has shown great potential for tissue regeneration. Here we developed a facile microfluidic-based strategy for the continuous fabrication of cell-laden microfibers with hierarchically organized architecture. We show that photolithographically fabricated microfluidic devices offer a simple and reliable way to create anatomically inspired complex structures. Furthermore, the use of photo-cross-linkable methacrylated alginate allows modulation of both the mechanical properties and biological activity of the hydrogels for targeted applications. Via this approach, multilayered hollow microfibers were continuously fabricated, which can be easily assembled in s...
3D hydrogel microstructures that encapsulate cells have been used in broad applications in microscal...
Osteochondral tissue is a biphasic material comprised of articular cartilage integrated atop subch...
Fibrous hydrogel scaffolds have recently attracted increasing attention for tissue engineering appli...
Engineering three-dimensional (3D) scaffolds with in vivo like architecture and function has shown g...
Engineering three-dimensional (3D) scaffolds with in vivo like architecture and function has shown g...
The development of three-dimensional (3D) fibrous networks as platforms for tissue engineering appli...
\u3cp\u3eFabrication of biomimetic tissues holds much promise for the regeneration of cells or organ...
Fibrous hydrogel scaffolds have recently attracted increasing attention for tissue engineering appli...
Fabrication of biomimetic tissues holds much promise for the regeneration of cells or organs that ar...
Microfabrication technologies have been proposed as methods to create vascularized tissues. However,...
Osteochondral defects are prone to induce osteoarthritic degenerative changes. Many tissue-engineeri...
Microfabrication technologies have been proposed as methods to create vascularized tissues. However,...
Microfabrication technologies have been proposed as methods to create vascularized tissues. However...
Successful tissue engineering requires the generation of human scale implants that mimic the structu...
We present a new strategy for the fabrication of artificial skeletal muscle tissue with functional m...
3D hydrogel microstructures that encapsulate cells have been used in broad applications in microscal...
Osteochondral tissue is a biphasic material comprised of articular cartilage integrated atop subch...
Fibrous hydrogel scaffolds have recently attracted increasing attention for tissue engineering appli...
Engineering three-dimensional (3D) scaffolds with in vivo like architecture and function has shown g...
Engineering three-dimensional (3D) scaffolds with in vivo like architecture and function has shown g...
The development of three-dimensional (3D) fibrous networks as platforms for tissue engineering appli...
\u3cp\u3eFabrication of biomimetic tissues holds much promise for the regeneration of cells or organ...
Fibrous hydrogel scaffolds have recently attracted increasing attention for tissue engineering appli...
Fabrication of biomimetic tissues holds much promise for the regeneration of cells or organs that ar...
Microfabrication technologies have been proposed as methods to create vascularized tissues. However,...
Osteochondral defects are prone to induce osteoarthritic degenerative changes. Many tissue-engineeri...
Microfabrication technologies have been proposed as methods to create vascularized tissues. However,...
Microfabrication technologies have been proposed as methods to create vascularized tissues. However...
Successful tissue engineering requires the generation of human scale implants that mimic the structu...
We present a new strategy for the fabrication of artificial skeletal muscle tissue with functional m...
3D hydrogel microstructures that encapsulate cells have been used in broad applications in microscal...
Osteochondral tissue is a biphasic material comprised of articular cartilage integrated atop subch...
Fibrous hydrogel scaffolds have recently attracted increasing attention for tissue engineering appli...