This work explored 3D printing to mimic the intrinsic hierarchical structure of natural articular cartilage. Alginate di-aldehyde- gelatine (ADA-GEL) hydrogel was used as ink to create hierarchically ordered scaffolds. In comparison to previously reported ADA-GEL compositions, we introduce a modified formulation featuring increased amounts of thermally modified gelatine. Gelatine was degraded by hydrolysis which resulted in tailorable printability characteristics further substantiated by rheological analysis. ADA (3.75 %w/v)-GEL (7.5 %w/v) with gelatine modified at 80 °C for 3 h could be printed in hierarchical complex structures reaching scaffold heights of over 1 cm. The hierarchical structure of the scaffolds was confirmed via µCT analys...
Bioprinting of chondrocyte-laden hydrogels facilitates the fabrication of constructs with controlled...
Bioprinting of chondrocyte-laden hydrogels facilitates the fabrication of constructs with controlled...
Gelatin-methacrylamide (gelMA) hydrogels are shown to support chondrocyte viability and differentiat...
In recent years, 3D bioprinting has caught the attention of the medical community for its potential ...
The application of hydrogels coupled with 3-dimensional (3D) printing technologies represents a mode...
Introduction: Gelatin, derived from native collagen, is a very promising matrix material for tissue ...
Gelatin-methacrylamide (gelMA) hydrogels are shown to support chondrocyte viability and differentiat...
Gelatin-methacrylamide (gelMA) hydrogels are shown to support chondrocyte viability and differentiat...
Gelatin-methacrylamide (gelMA) hydrogels are shown to support chondrocyte viability and differentiat...
Gelatin-methacrylamide (gelMA) hydrogels are shown to support chondrocyte viability and differentiat...
Gelatin-methacrylamide (gelMA) hydrogels are shown to support chondrocyte viability and differentiat...
Gelatin-methacrylamide (gelMA) hydrogels are shown to support chondrocyte viability and differentiat...
The limited self-healing ability of cartilage necessitates the application of alternative tissue eng...
Bioprinting of chondrocyte-laden hydrogels facilitates the fabrication of constructs with controlled...
Alginate hydrogels have shown an enormous potential for tissue engineering due to its non-toxicity, ...
Bioprinting of chondrocyte-laden hydrogels facilitates the fabrication of constructs with controlled...
Bioprinting of chondrocyte-laden hydrogels facilitates the fabrication of constructs with controlled...
Gelatin-methacrylamide (gelMA) hydrogels are shown to support chondrocyte viability and differentiat...
In recent years, 3D bioprinting has caught the attention of the medical community for its potential ...
The application of hydrogels coupled with 3-dimensional (3D) printing technologies represents a mode...
Introduction: Gelatin, derived from native collagen, is a very promising matrix material for tissue ...
Gelatin-methacrylamide (gelMA) hydrogels are shown to support chondrocyte viability and differentiat...
Gelatin-methacrylamide (gelMA) hydrogels are shown to support chondrocyte viability and differentiat...
Gelatin-methacrylamide (gelMA) hydrogels are shown to support chondrocyte viability and differentiat...
Gelatin-methacrylamide (gelMA) hydrogels are shown to support chondrocyte viability and differentiat...
Gelatin-methacrylamide (gelMA) hydrogels are shown to support chondrocyte viability and differentiat...
Gelatin-methacrylamide (gelMA) hydrogels are shown to support chondrocyte viability and differentiat...
The limited self-healing ability of cartilage necessitates the application of alternative tissue eng...
Bioprinting of chondrocyte-laden hydrogels facilitates the fabrication of constructs with controlled...
Alginate hydrogels have shown an enormous potential for tissue engineering due to its non-toxicity, ...
Bioprinting of chondrocyte-laden hydrogels facilitates the fabrication of constructs with controlled...
Bioprinting of chondrocyte-laden hydrogels facilitates the fabrication of constructs with controlled...
Gelatin-methacrylamide (gelMA) hydrogels are shown to support chondrocyte viability and differentiat...