Sodium alginate and gelatin are biocompatible & biodegradable natural polymer hydrogels, which are widely investigated for application in tissue engineering using 3D printing and 3D bioprinting fabrication techniques. The major challenge of using hydrogels for tissue fabrication is their lack of regeneration ability, uncontrolled swelling, degradation and inability to hold 3D structure on their own. Free hydroxyl groups on the surface of SiO2 nanoparticles have the ability to chemically interact with alginate–gelatin polymer network, which can be explored to achieve the above parameters. Hence validating the incorporation of SiO2 nanoparticles in a 3D printable hydrogel polymer network, according to the patient's critical defects has immens...
International audienceThe three-dimensional (3D) printed scaffolds were prepared by partial cross-li...
Bioprinting aims to provide new avenues for regenerating damaged human tissues through the controlle...
To design a hydrogel material containing nano hydroxyapatite particles for three-dimensional (3D) bi...
Sodium alginate/gelatin hydrogels are promising materials for 3D bio-printing due to its good biocom...
3D printing enables a better control over the microstructure of bone restoring constructs, addresses...
Novel bioactive organic–inorganic hybrid materials that can serve as injectable hydrogel systems for...
This study states the preparation of novel ink with potential use for bone and cartilage tissue rest...
A novel biomaterial comprising alginate dialdehyde-gelatine (ADA-GEL) hydrogel augmented by lysozyme...
3D bioprinting utilises a 3D printing technique with the addition of cells within the printed constr...
A novel hydrogel based on 2-hydroxyethylmethacrilate and SiO2 nanoparticles was prepared. The filler...
The bone is a very complex organ that participates in multiple critical functions for the human body...
Biocompatibility, biodegradability, shear tinning behavior, quick gelation and an easy crosslinking ...
Màster en Nanociència i Nanotecnologia, Facultat de Física, Universitat de Barcelona, Curs: 2018-201...
This study reports on the development of a scaffold with a gradient of bioactive solid signal embedd...
The development of 3D printing technologies has allowed us to fabricate complex novel scaffolds for ...
International audienceThe three-dimensional (3D) printed scaffolds were prepared by partial cross-li...
Bioprinting aims to provide new avenues for regenerating damaged human tissues through the controlle...
To design a hydrogel material containing nano hydroxyapatite particles for three-dimensional (3D) bi...
Sodium alginate/gelatin hydrogels are promising materials for 3D bio-printing due to its good biocom...
3D printing enables a better control over the microstructure of bone restoring constructs, addresses...
Novel bioactive organic–inorganic hybrid materials that can serve as injectable hydrogel systems for...
This study states the preparation of novel ink with potential use for bone and cartilage tissue rest...
A novel biomaterial comprising alginate dialdehyde-gelatine (ADA-GEL) hydrogel augmented by lysozyme...
3D bioprinting utilises a 3D printing technique with the addition of cells within the printed constr...
A novel hydrogel based on 2-hydroxyethylmethacrilate and SiO2 nanoparticles was prepared. The filler...
The bone is a very complex organ that participates in multiple critical functions for the human body...
Biocompatibility, biodegradability, shear tinning behavior, quick gelation and an easy crosslinking ...
Màster en Nanociència i Nanotecnologia, Facultat de Física, Universitat de Barcelona, Curs: 2018-201...
This study reports on the development of a scaffold with a gradient of bioactive solid signal embedd...
The development of 3D printing technologies has allowed us to fabricate complex novel scaffolds for ...
International audienceThe three-dimensional (3D) printed scaffolds were prepared by partial cross-li...
Bioprinting aims to provide new avenues for regenerating damaged human tissues through the controlle...
To design a hydrogel material containing nano hydroxyapatite particles for three-dimensional (3D) bi...