Different bioprinting techniques have been used to produce cell-laden alginate hydrogel structures, however these approaches have been limited to 2D or simple three-dimension (3D) structures. In this study, a new extrusion based bioprinting technique was developed to produce more complex alginate hydrogel structures. This was achieved by dividing the alginate hydrogel cross-linking process into three stages: primary calcium ion cross-linking for printability of the gel, secondary calcium cross-linking for rigidity of the alginate hydrogel immediately after printing and tertiary barium ion cross-linking for long-term stability of the alginate hydrogel in culture medium. Simple 3D structures including tubes were first printed to ensure the fe...
3D printed hydrogels have emerged as a novel tissue engineering and regeneration platform due to the...
Development of a simple, straight-forward 3D fabrication method to culture cells in 3D, without rely...
Three-dimensional (3D) bioprinting is an appealing and revolutionary manufacturing approach for the ...
Different bioprinting techniques have been used to produce cell-laden alginate hydrogel structures, ...
Biofabrication has been receiving a great deal of attention in tissue engineering and regenerative m...
Three-dimensional bioprinting is a tissue engineering and regenerative medicine technique that utili...
Three-dimensional (3D)-bioprinting enables scientists to mimic in vivo micro-environments and to per...
Cells 3D bio-printed directly into scaffolds are often delivered at low densities. Therefore, it is ...
Bioprinting is a rapidly expanding technology with the ability to fabricate in vitro 3D tissues in a...
In recent years, 3D bioprinting has caught the attention of the medical community for its potential ...
Three-dimensional (3D) bioprinting is a promising technique used to fabricate scaffolds from hydroge...
The extrusion-based bioprinting of hydrogels such as gelatin methacrylate (GelMA) into structures wi...
Alginates are the most commonly used bioink in biofabrication, but their rheological profiles make i...
Extrusion-based 3D bioprinting is a direct deposition approach used to create three-dimensional (3D)...
Three-dimensional (3D) bio-printing is a revolutionary technology to reproduce a 3D functional livin...
3D printed hydrogels have emerged as a novel tissue engineering and regeneration platform due to the...
Development of a simple, straight-forward 3D fabrication method to culture cells in 3D, without rely...
Three-dimensional (3D) bioprinting is an appealing and revolutionary manufacturing approach for the ...
Different bioprinting techniques have been used to produce cell-laden alginate hydrogel structures, ...
Biofabrication has been receiving a great deal of attention in tissue engineering and regenerative m...
Three-dimensional bioprinting is a tissue engineering and regenerative medicine technique that utili...
Three-dimensional (3D)-bioprinting enables scientists to mimic in vivo micro-environments and to per...
Cells 3D bio-printed directly into scaffolds are often delivered at low densities. Therefore, it is ...
Bioprinting is a rapidly expanding technology with the ability to fabricate in vitro 3D tissues in a...
In recent years, 3D bioprinting has caught the attention of the medical community for its potential ...
Three-dimensional (3D) bioprinting is a promising technique used to fabricate scaffolds from hydroge...
The extrusion-based bioprinting of hydrogels such as gelatin methacrylate (GelMA) into structures wi...
Alginates are the most commonly used bioink in biofabrication, but their rheological profiles make i...
Extrusion-based 3D bioprinting is a direct deposition approach used to create three-dimensional (3D)...
Three-dimensional (3D) bio-printing is a revolutionary technology to reproduce a 3D functional livin...
3D printed hydrogels have emerged as a novel tissue engineering and regeneration platform due to the...
Development of a simple, straight-forward 3D fabrication method to culture cells in 3D, without rely...
Three-dimensional (3D) bioprinting is an appealing and revolutionary manufacturing approach for the ...