Our goal was to create bioimitated scaffolding materials for biomedical purposes. The guiding idea was that we used an interpenetrating structural hierarchy of natural extracellular matrix as a “pattern” to design hydrogel scaffolds that show favorable properties for tissue regeneration. Polymeric hydrogel scaffolds are made in a simple, environmentally friendly way without additional functionalization. Gelatin and 2-hydroxyethyl methacrylate were selected to prepare interpenetrating polymeric networks and linear alginate chains were added as an interpenetrant to study their influence on the scaffold’s functionalities. Cryogelation and porogenation methods were used to obtain the designed scaffolding biomaterials. The scaffold’s structural,...
Current bone tissue engineering strategies aim to grow a tissue similar to native bone by combining ...
Bone tissue engineering is employed to help enhance regeneration of bone tissue that may have diffic...
The design and evaluation of novel 2-hydroxyethyl methacrylate/gelatin/alginate/graphene oxide hydro...
Our goal was to create bioimitated scaffolding materials for biomedical purposes. The guiding idea w...
Hydrogel scaffolding biomaterials are one of the most attractive polymeric biomaterials for regenera...
New composite 3D scaffolds were developed as a combination of synthetic polymer, poly(2- hydroxyeth...
The design of bioactive scaffolding materials with favorable properties is paramount for successful ...
New composite 3D scaffolds were developed as a combination of synthetic polymer, poly(2-hydroxyethyl...
This work aimed to manufacture scaffolds from a hydrogel composed of a sodium alginate matrix with h...
Scaffold hydrogel biomaterials designed to have advantageous biofunctional properties, which can be ...
New composite 3D scaffolds were developed as a combination of synthetic polymer, poly(2-hydroxyethyl...
A tissue-engineered polymeric scaffold should provide suitable macroporous structure similar to that...
Current bone tissue engineering strategies aim to grow a tissue similar to native bone by combining ...
Bone tissue engineering is employed to help enhance regeneration of bone tissue that may have diffic...
The design and evaluation of novel 2-hydroxyethyl methacrylate/gelatin/alginate/graphene oxide hydro...
Our goal was to create bioimitated scaffolding materials for biomedical purposes. The guiding idea w...
Hydrogel scaffolding biomaterials are one of the most attractive polymeric biomaterials for regenera...
New composite 3D scaffolds were developed as a combination of synthetic polymer, poly(2- hydroxyeth...
The design of bioactive scaffolding materials with favorable properties is paramount for successful ...
New composite 3D scaffolds were developed as a combination of synthetic polymer, poly(2-hydroxyethyl...
This work aimed to manufacture scaffolds from a hydrogel composed of a sodium alginate matrix with h...
Scaffold hydrogel biomaterials designed to have advantageous biofunctional properties, which can be ...
New composite 3D scaffolds were developed as a combination of synthetic polymer, poly(2-hydroxyethyl...
A tissue-engineered polymeric scaffold should provide suitable macroporous structure similar to that...
Current bone tissue engineering strategies aim to grow a tissue similar to native bone by combining ...
Bone tissue engineering is employed to help enhance regeneration of bone tissue that may have diffic...
The design and evaluation of novel 2-hydroxyethyl methacrylate/gelatin/alginate/graphene oxide hydro...