The proliferation of computer-aided design and additive manufacturing enables on-demand fabrication of complex, three-dimensional structures. However, combining the versatility of cell-laden hydrogels within the 3D printing process remains a challenge. Herein, we describe a facile and versatile method that integrates polymer networks (including hydrogels) with 3D-printed mechanical supports to fabricate multicomponent (bio)materials. The approach exploits surface tension to coat fenestrated surfaces with suspended liquid films that can be transformed into solid films. The operating parameters for the process are determined using a physical model, and complex geometric structures are successfully fabricated. We engineer, by tailoring the win...
Recently, 3D printing has become popular in the field of tissue engineering, where materials and bio...
Hydrogel has been a promising candidate to recapitulate the chemical, physical and mechanical proper...
There is great hope in 3D printing techniques to create patient specific scaffolds for therapeutic a...
The proliferation of computer-aided design and additive manufacturing enables on-demand fabrication ...
Multimaterial additive manufacturing or three-dimensional (3D) printing of hydrogel structures provi...
Progress in biofabrication technologies is mainly hampered by the limited number of suitable hydroge...
Abstract: Additive manufacturing (aka 3D printing) has excellent potential for developing advanced m...
In the past three decades, microtissue models grown inside miniaturized fluidic systems fabricated u...
Progress within the field of biofabrication is hindered by a lack of suitable hydrogel formulations....
An unprecedented generic system allowing the 3D printing of peptide-functionalized hydrogels by soft...
Biofabrication is the process of transforming materials into systems that reproduce biological struc...
Major challenges in biofabrication revolve around capturing the complex, hierarchical composition of...
Increasing demand for customized implants and tissue scaffolds requires advanced biomaterials and fa...
Polymer hydrogel used as computer-aided, non-biological arsenal utilize as a drug delivery vehicle o...
Scaffolds with gradients of physico-chemical properties and controlled 3D architectures are crucial ...
Recently, 3D printing has become popular in the field of tissue engineering, where materials and bio...
Hydrogel has been a promising candidate to recapitulate the chemical, physical and mechanical proper...
There is great hope in 3D printing techniques to create patient specific scaffolds for therapeutic a...
The proliferation of computer-aided design and additive manufacturing enables on-demand fabrication ...
Multimaterial additive manufacturing or three-dimensional (3D) printing of hydrogel structures provi...
Progress in biofabrication technologies is mainly hampered by the limited number of suitable hydroge...
Abstract: Additive manufacturing (aka 3D printing) has excellent potential for developing advanced m...
In the past three decades, microtissue models grown inside miniaturized fluidic systems fabricated u...
Progress within the field of biofabrication is hindered by a lack of suitable hydrogel formulations....
An unprecedented generic system allowing the 3D printing of peptide-functionalized hydrogels by soft...
Biofabrication is the process of transforming materials into systems that reproduce biological struc...
Major challenges in biofabrication revolve around capturing the complex, hierarchical composition of...
Increasing demand for customized implants and tissue scaffolds requires advanced biomaterials and fa...
Polymer hydrogel used as computer-aided, non-biological arsenal utilize as a drug delivery vehicle o...
Scaffolds with gradients of physico-chemical properties and controlled 3D architectures are crucial ...
Recently, 3D printing has become popular in the field of tissue engineering, where materials and bio...
Hydrogel has been a promising candidate to recapitulate the chemical, physical and mechanical proper...
There is great hope in 3D printing techniques to create patient specific scaffolds for therapeutic a...