Alginate microspheres can provide a three-dimensional (3D) space for cell adhesion and proliferation for 3D bioprinting. Monodispersed microspheres can be patterned into complex 3D shapes with controllable features. In this project, the fabrication of monodispersed alginate microspheres through simple extrusion method were presented. The fabrication parameters include the height of droplet release, the concentration of alginate droplets, the concentration of the calcium chloride (CaCl2) bath, and the mechanical rotation speed to agitate the CaCl2 bath. The best combination of the parameters tested was found to be 1 mm height of droplet release, 3% (wt/v) of alginate, 50 mM of CaCl2 solution and 150 rpm mechanical agitation speed. Neverthele...
<p>Natural biopolymers such as alginate have become important materials for a variety of biotechnolo...
Three-dimensional (3D) bioprinting is an appealing and revolutionary manufacturing approach for the ...
Three-dimensional (3D) printing holds great potential for preparing sophisticated scaffolds for tiss...
Three-dimensional (3D)-bioprinting enables scientists to mimic in vivo micro-environments and to per...
Different bioprinting techniques have been used to produce cell-laden alginate hydrogel structures, ...
Microspheres have tremendous potential as a scaffold material for tissue engineering applications du...
Generally, 3D bioprinting is used as a layer-by-layer method to create tissue-like structures. Algin...
This paper describes a novel 3D bioprinting printhead that enables the fabrication of alginate const...
Cells 3D bio-printed directly into scaffolds are often delivered at low densities. Therefore, it is ...
Biofabrication has been receiving a great deal of attention in tissue engineering and regenerative m...
Tissue engineering is considered to be one of the most innovative approach for tackling many disease...
Ionotropic alginate microgels are commonly used as an encapsulation medium for biomedical, bioproces...
Extrusion-based 3D bioprinting is a direct deposition approach used to create three-dimensional (3D)...
International audienceAlginate is a biopolymer that has exceptional gelling properties, which allow ...
There is great hope in 3D printing techniques to create patient specific scaffolds for therapeutic a...
<p>Natural biopolymers such as alginate have become important materials for a variety of biotechnolo...
Three-dimensional (3D) bioprinting is an appealing and revolutionary manufacturing approach for the ...
Three-dimensional (3D) printing holds great potential for preparing sophisticated scaffolds for tiss...
Three-dimensional (3D)-bioprinting enables scientists to mimic in vivo micro-environments and to per...
Different bioprinting techniques have been used to produce cell-laden alginate hydrogel structures, ...
Microspheres have tremendous potential as a scaffold material for tissue engineering applications du...
Generally, 3D bioprinting is used as a layer-by-layer method to create tissue-like structures. Algin...
This paper describes a novel 3D bioprinting printhead that enables the fabrication of alginate const...
Cells 3D bio-printed directly into scaffolds are often delivered at low densities. Therefore, it is ...
Biofabrication has been receiving a great deal of attention in tissue engineering and regenerative m...
Tissue engineering is considered to be one of the most innovative approach for tackling many disease...
Ionotropic alginate microgels are commonly used as an encapsulation medium for biomedical, bioproces...
Extrusion-based 3D bioprinting is a direct deposition approach used to create three-dimensional (3D)...
International audienceAlginate is a biopolymer that has exceptional gelling properties, which allow ...
There is great hope in 3D printing techniques to create patient specific scaffolds for therapeutic a...
<p>Natural biopolymers such as alginate have become important materials for a variety of biotechnolo...
Three-dimensional (3D) bioprinting is an appealing and revolutionary manufacturing approach for the ...
Three-dimensional (3D) printing holds great potential for preparing sophisticated scaffolds for tiss...