Hydrogel materials and forming processes have a significant impact on the performance of tissue engineering scaffolds and cell 3D printing. Scaffolds supports cell adhesion as a temporary extracellular matrix, which plays a key role in tissue engineering and regenerative medicine. Hydrogel 3D structure bio-fabrication was an important step towards cell 3D printing. A precision extrusion nozzle based on ball screw transmission was developed for porous hydrogel fabrication. The whole bio-fabrication temperature was controlled between 4-14 degrees C which eliminates ice exactly. Three-dimensional structure was formed based on the temperature-sensitive gelling properties of gelatin. Hereby, the influence of hydrogel concentration, extrusion spe...
In three-dimensional (3D) bioprinting, the accuracy, stability, and mechanical properties of the for...
Three-dimensional (3D) printing technologies have become an attractive manufacturing process to fabr...
© 2020 Published by Faculty of Engineering. This paper presented extrusion-based 3D bioprinting of g...
Hydrogel materials and forming processes have a significant impact on the performance of tissue engi...
Extrusion-based 3D bioprinting is a direct deposition approach used to create three-dimensional (3D)...
There is great hope in 3D printing techniques to create patient specific scaffolds for therapeutic a...
In recent years, 3D bioprinting has caught the attention of the medical community for its potential ...
3D biofabrication allowed the construction of bio materials, tissues, cells, drugs and others to tak...
Microextrusion-based bioprinting within a support bath material is an emerging additive manufacturin...
Three-dimensional (3D) bio-printing is a revolutionary technology to reproduce a 3D functional livin...
Different bioprinting techniques have been used to produce cell-laden alginate hydrogel structures, ...
Three-dimensional (3-D) bioprinting is the layer-by-layer deposition of biological material with the...
Alginate hydrogels have shown an enormous potential for tissue engineering due to its non-toxicity, ...
The extrusion-based bioprinting of hydrogels such as gelatin methacrylate (GelMA) into structures wi...
The field of regenerative medicine and tissue engineering is continuously advancing and utilizing ne...
In three-dimensional (3D) bioprinting, the accuracy, stability, and mechanical properties of the for...
Three-dimensional (3D) printing technologies have become an attractive manufacturing process to fabr...
© 2020 Published by Faculty of Engineering. This paper presented extrusion-based 3D bioprinting of g...
Hydrogel materials and forming processes have a significant impact on the performance of tissue engi...
Extrusion-based 3D bioprinting is a direct deposition approach used to create three-dimensional (3D)...
There is great hope in 3D printing techniques to create patient specific scaffolds for therapeutic a...
In recent years, 3D bioprinting has caught the attention of the medical community for its potential ...
3D biofabrication allowed the construction of bio materials, tissues, cells, drugs and others to tak...
Microextrusion-based bioprinting within a support bath material is an emerging additive manufacturin...
Three-dimensional (3D) bio-printing is a revolutionary technology to reproduce a 3D functional livin...
Different bioprinting techniques have been used to produce cell-laden alginate hydrogel structures, ...
Three-dimensional (3-D) bioprinting is the layer-by-layer deposition of biological material with the...
Alginate hydrogels have shown an enormous potential for tissue engineering due to its non-toxicity, ...
The extrusion-based bioprinting of hydrogels such as gelatin methacrylate (GelMA) into structures wi...
The field of regenerative medicine and tissue engineering is continuously advancing and utilizing ne...
In three-dimensional (3D) bioprinting, the accuracy, stability, and mechanical properties of the for...
Three-dimensional (3D) printing technologies have become an attractive manufacturing process to fabr...
© 2020 Published by Faculty of Engineering. This paper presented extrusion-based 3D bioprinting of g...