Three-dimensional (3D) printing holds great potential for preparing sophisticated scaffolds for tissue engineering. As a result of the shear thinning properties of an alginate solution, it is often used as 3D printing ink. However, it is difficult to prepare scaffolds with complexity structure and high fidelity, because the alginate solution has a low viscosity and alginate hydrogels prepared with Ca2+ crosslinking are mechanically weak. In this work, chitosan powders were dispersed and swelled in an alginate solution, which could effectively improve the viscosity of an alginate solution by 1.5–4 times. With the increase of chitosan content, the shape fidelity of the 3D printed alginate–chitosan polyion complex (AlCh PIC) hydrogels were imp...
In recent years, 3D bioprinting has caught the attention of the medical community for its potential ...
Calcium Alginate hydrogel possesses a great potential as three-dimensional culture platform, exhibit...
Recently, hydrogels have been utilized as important biomaterials for 3D printing of three dimensiona...
Three-dimensional (3D) printing holds great potential for preparing sophisticated scaffolds for tiss...
In tissue engineering, additive manufacturing (AM) technologies have brought considerable progress a...
In tissue engineering, additive manufacturing (AM) technologies have brought considerable progress a...
Tissue-engineering (TE) is one of the most innovative approaches for tackling many diseases and body...
Three-dimensional (3D) printing technologies have become an attractive manufacturing process to fabr...
Different bioprinting techniques have been used to produce cell-laden alginate hydrogel structures, ...
The field of regenerative medicine and tissue engineering is continuously advancing and utilizing ne...
Alginate hydrogels have shown an enormous potential for tissue engineering due to its non-toxicity, ...
3D biofabrication allowed the construction of bio materials, tissues, cells, drugs and others to tak...
Three-dimensional (3D) bio-printing is a revolutionary technology to reproduce a 3D functional livin...
Three-dimensional (3D) bio-printing is a revolutionary technology to reproduce a 3D functional livin...
Calcium Alginate hydrogel possesses a great potential as three-dimensional culture platform, exhibit...
In recent years, 3D bioprinting has caught the attention of the medical community for its potential ...
Calcium Alginate hydrogel possesses a great potential as three-dimensional culture platform, exhibit...
Recently, hydrogels have been utilized as important biomaterials for 3D printing of three dimensiona...
Three-dimensional (3D) printing holds great potential for preparing sophisticated scaffolds for tiss...
In tissue engineering, additive manufacturing (AM) technologies have brought considerable progress a...
In tissue engineering, additive manufacturing (AM) technologies have brought considerable progress a...
Tissue-engineering (TE) is one of the most innovative approaches for tackling many diseases and body...
Three-dimensional (3D) printing technologies have become an attractive manufacturing process to fabr...
Different bioprinting techniques have been used to produce cell-laden alginate hydrogel structures, ...
The field of regenerative medicine and tissue engineering is continuously advancing and utilizing ne...
Alginate hydrogels have shown an enormous potential for tissue engineering due to its non-toxicity, ...
3D biofabrication allowed the construction of bio materials, tissues, cells, drugs and others to tak...
Three-dimensional (3D) bio-printing is a revolutionary technology to reproduce a 3D functional livin...
Three-dimensional (3D) bio-printing is a revolutionary technology to reproduce a 3D functional livin...
Calcium Alginate hydrogel possesses a great potential as three-dimensional culture platform, exhibit...
In recent years, 3D bioprinting has caught the attention of the medical community for its potential ...
Calcium Alginate hydrogel possesses a great potential as three-dimensional culture platform, exhibit...
Recently, hydrogels have been utilized as important biomaterials for 3D printing of three dimensiona...