In tissue engineering, additive manufacturing (AM) technologies have brought considerable progress as they allow the fabrication of three-dimensional (3D) structures with defined architecture. 3D plotting is a versatile, extrusion-based AM technology suitable for processing a wide range of biomaterials including hydrogels. In this study, composites of highly concentrated alginate and gellan gum were prepared in order to combine the excellent printing properties of alginate with the favorable gelling characteristics of gellan gum. Mixtures of 16.7 wt % alginate and 2 or 3 wt % gellan gum were found applicable for 3D plotting. Characterization of the resulting composite scaffolds revealed an increased stiffness in the wet state (15%–20% highe...
Three-dimensional (3D) printing technologies have become an attractive manufacturing process to fabr...
3D printing is an emerging and powerful technique to create shape-defined three-dimensional structur...
© 2018 American Chemical Society. Hydrogels are useful materials as scaffolds for tissue engineering...
In tissue engineering, additive manufacturing (AM) technologies have brought considerable progress a...
Three-dimensional (3D) printing holds great potential for preparing sophisticated scaffolds for tiss...
Three-dimensional (3D) printing holds great potential for preparing sophisticated scaffolds for tiss...
Long-term stability of gellan gum (GG) at physiological conditions is expected, as very low concentr...
Tissue engineering has gained extensive interest as a great potential for regeneration and repair of...
Biocompatibility, biodegradability, shear tinning behavior, quick gelation and an easy crosslinking ...
Alginate hydrogels have shown an enormous potential for tissue engineering due to its non-toxicity, ...
Bone tissue engineering is employed to help enhance regeneration of bone tissue that may have diffic...
The biological scaffolds of tissue engineering are required to have good biocompatibility, matched m...
Bone tissue engineering is employed to help enhance regeneration of bone tissue that may have diffic...
The field of regenerative medicine and tissue engineering is continuously advancing and utilizing ne...
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...
3D printing is an emerging and powerful technique to create shape-defined three-dimensional structur...
© 2018 American Chemical Society. Hydrogels are useful materials as scaffolds for tissue engineering...
In tissue engineering, additive manufacturing (AM) technologies have brought considerable progress a...
Three-dimensional (3D) printing holds great potential for preparing sophisticated scaffolds for tiss...
Three-dimensional (3D) printing holds great potential for preparing sophisticated scaffolds for tiss...
Long-term stability of gellan gum (GG) at physiological conditions is expected, as very low concentr...
Tissue engineering has gained extensive interest as a great potential for regeneration and repair of...
Biocompatibility, biodegradability, shear tinning behavior, quick gelation and an easy crosslinking ...
Alginate hydrogels have shown an enormous potential for tissue engineering due to its non-toxicity, ...
Bone tissue engineering is employed to help enhance regeneration of bone tissue that may have diffic...
The biological scaffolds of tissue engineering are required to have good biocompatibility, matched m...
Bone tissue engineering is employed to help enhance regeneration of bone tissue that may have diffic...
The field of regenerative medicine and tissue engineering is continuously advancing and utilizing ne...
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...
3D printing is an emerging and powerful technique to create shape-defined three-dimensional structur...
© 2018 American Chemical Society. Hydrogels are useful materials as scaffolds for tissue engineering...