Hydrogel scaffolding biomaterials are one of the most attractive polymeric biomaterials for regenerative engineering and can be engineered into tissue mimetic scaffolds to support cell growth due to their similarity to the native extracellular matrix. The novel, versatile hydrogel scaffolds based on alginate, gelatin, 2-hydroxyethyl methacrylate, and inorganic agent hydroxyapatite were prepared by modified cryogelation. The chemical composition, morphology, porosity, mechanical properties, effects on cell viability, in vitro degradation, in vitro and in vivo biocompatibility were tested to correlate the material's composition with the corresponding properties. Scaffolds showed an interconnected porous microstructure, satisfactory mechanical...
New composite 3D scaffolds were developed as a combination of synthetic polymer, poly(2-hydroxyethyl...
Biopolymers are an attractive class of compounds for being used in biomedical applications as they a...
Bone tissue engineering is employed to help enhance regeneration of bone tissue that may have diffic...
Hydrogel scaffolding biomaterials are one of the most attractive polymeric biomaterials for regenera...
Our goal was to create bioimitated scaffolding materials for biomedical purposes. The guiding idea w...
The design of bioactive scaffolding materials with favorable properties is paramount for successful ...
Scaffold hydrogel biomaterials designed to have advantageous biofunctional properties, which can be ...
This work aimed to manufacture scaffolds from a hydrogel composed of a sodium alginate matrix with h...
The design and evaluation of novel 2-hydroxyethyl methacrylate/gelatin/alginate/graphene oxide hydro...
New composite 3D scaffolds were developed as a combination of synthetic polymer, poly(2- hydroxyeth...
Tissue engineering is an emerging technology whose efforts are aimed towards repairing and regenerat...
New composite 3D scaffolds were developed as a combination of synthetic polymer, poly(2-hydroxyethyl...
Biopolymers are an attractive class of compounds for being used in biomedical applications as they a...
Bone tissue engineering is employed to help enhance regeneration of bone tissue that may have diffic...
Hydrogel scaffolding biomaterials are one of the most attractive polymeric biomaterials for regenera...
Our goal was to create bioimitated scaffolding materials for biomedical purposes. The guiding idea w...
The design of bioactive scaffolding materials with favorable properties is paramount for successful ...
Scaffold hydrogel biomaterials designed to have advantageous biofunctional properties, which can be ...
This work aimed to manufacture scaffolds from a hydrogel composed of a sodium alginate matrix with h...
The design and evaluation of novel 2-hydroxyethyl methacrylate/gelatin/alginate/graphene oxide hydro...
New composite 3D scaffolds were developed as a combination of synthetic polymer, poly(2- hydroxyeth...
Tissue engineering is an emerging technology whose efforts are aimed towards repairing and regenerat...
New composite 3D scaffolds were developed as a combination of synthetic polymer, poly(2-hydroxyethyl...
Biopolymers are an attractive class of compounds for being used in biomedical applications as they a...
Bone tissue engineering is employed to help enhance regeneration of bone tissue that may have diffic...