One of the challenges of bioprinting is to identify bioinks which support cell growth, tissue maturation, and ultimately the formation of functional grafts for use in regenerative medicine. The influence of this new biofabrication technology on biology of living cells, however, is still being evaluated. Recently we have identified a mitogenic hydrogel system based on alginate sulfate which potently supports chondrocyte phenotype, but is not printable due to its rheological properties (no yield point). To convert alginate sulfate to a printable bioink, it was combined with nanocellulose, which has been shown to possess very good printability. The alginate sulfate/nanocellulose ink showed good printing properties and the non-printed bioink ma...
Three-dimensional (3D) bioprinting is on the cusp of permitting the direct fabrication of artificial...
Three-dimensional (3D) bioprinting is on the cusp of permitting the direct fabrication of artificial...
\ua9 2016 Elsevier B.V.Auricular cartilage tissue engineering (TE) aims to provide an effective trea...
One of the challenges of bioprinting is to identify bioinks which support cell growth, tissue matura...
The introduction of 3D bioprinting is expected to revolutionize the field of tissue engineering and ...
Cartilage is a connective tissue which a limited capacity for healing and repairing. In this context...
Cartilage is a connective tissue which a limited capacity for healing and repairing. In this context...
Negative foreign body responses following the in vivo implantation of bioprinted implants motivate t...
Additive biofabrication (3D bioprinting) makes it possible to create scaffolds with precise geometri...
© 2018 American Chemical Society. Hydrogels are useful materials as scaffolds for tissue engineering...
Three-dimensional (3D) bioprinting is on the cusp of permitting the direct fabrication of artificial...
Three-dimensional (3D) bioprinting is an appealing and revolutionary manufacturing approach for the ...
Bioprinting is a promising tool to fabricate well-organized cell-laden constructs for repair and reg...
To realize the promise of three-dimensional (3D) bioprinting, it is imperative to develop bioinks th...
Hydrogels are useful materials as scaffolds for tissue engineering applications. Using hydrogels wit...
Three-dimensional (3D) bioprinting is on the cusp of permitting the direct fabrication of artificial...
Three-dimensional (3D) bioprinting is on the cusp of permitting the direct fabrication of artificial...
\ua9 2016 Elsevier B.V.Auricular cartilage tissue engineering (TE) aims to provide an effective trea...
One of the challenges of bioprinting is to identify bioinks which support cell growth, tissue matura...
The introduction of 3D bioprinting is expected to revolutionize the field of tissue engineering and ...
Cartilage is a connective tissue which a limited capacity for healing and repairing. In this context...
Cartilage is a connective tissue which a limited capacity for healing and repairing. In this context...
Negative foreign body responses following the in vivo implantation of bioprinted implants motivate t...
Additive biofabrication (3D bioprinting) makes it possible to create scaffolds with precise geometri...
© 2018 American Chemical Society. Hydrogels are useful materials as scaffolds for tissue engineering...
Three-dimensional (3D) bioprinting is on the cusp of permitting the direct fabrication of artificial...
Three-dimensional (3D) bioprinting is an appealing and revolutionary manufacturing approach for the ...
Bioprinting is a promising tool to fabricate well-organized cell-laden constructs for repair and reg...
To realize the promise of three-dimensional (3D) bioprinting, it is imperative to develop bioinks th...
Hydrogels are useful materials as scaffolds for tissue engineering applications. Using hydrogels wit...
Three-dimensional (3D) bioprinting is on the cusp of permitting the direct fabrication of artificial...
Three-dimensional (3D) bioprinting is on the cusp of permitting the direct fabrication of artificial...
\ua9 2016 Elsevier B.V.Auricular cartilage tissue engineering (TE) aims to provide an effective trea...