The aim of this study was the preparation and characterization of bioactive glass–ceramic scaffolds for bone tissue engineering. For this purpose, a glass belonging to the system SiO2–P2O5–CaO–MgO–Na2O–K2O (CEL2) was used. The sponge-replication method was adopted to prepare the scaffolds; specifically, a polymeric skeleton was impregnated with a slurry containing CEL2 powder, polyvinyl alcohol (PVA) as a binding agent and distilled water. The impregnated sponge was then thermally treated to remove the polymeric phase and to sinter the inorganic one. The obtained scaffolds possessed an open and interconnected porosity, analogous to cancellous bone texture, and with a mechanical strength above 2 MPa. Moreover, the scaffolds underwent partial...
Bioceramics are clinically used as implantable materials to alleviate pain and restore function to d...
A three dimensional (3D), interconnected, porous structure is essential for bone tissue engineering ...
A numerous techniques have been applied to fabricate three-dimensional scaffolds of high porosity an...
The aim of this study was the preparation and characterization of bioactive glass–ceramic scaffolds ...
The aim of this study was the preparation and characterization of bioactive glass–ceramic scaffolds ...
The aim of this study was the preparation and characterization of bioactive glass–ceramic scaffolds ...
The aim of this study was the preparation and characterization of bioactive glass–ceramic scaffolds ...
One of the key purposes of bone tissue engineering is the development of new biomaterials that can s...
Glass–ceramic macroporous scaffolds for tissue engineering have been developed using a polyurethane ...
Three-dimensional 45S5 bioactive glass (BG)-based scaffolds are being investigated for bone regenera...
Three-dimensional 45S5 bioactive glass (BG)-based scaffolds are being investigated for bone regenera...
Three-dimensional 45S5 bioactive glass (BG)-based scaffolds are being investigated for bone regenera...
One of the key purposes of bone tissue engineering is the development of new biomaterials that can s...
One of the key purposes of bone tissue engineering is the development of new biomaterials that can s...
Bioceramics are clinically used as implantable materials to alleviate pain and restore function to d...
Bioceramics are clinically used as implantable materials to alleviate pain and restore function to d...
A three dimensional (3D), interconnected, porous structure is essential for bone tissue engineering ...
A numerous techniques have been applied to fabricate three-dimensional scaffolds of high porosity an...
The aim of this study was the preparation and characterization of bioactive glass–ceramic scaffolds ...
The aim of this study was the preparation and characterization of bioactive glass–ceramic scaffolds ...
The aim of this study was the preparation and characterization of bioactive glass–ceramic scaffolds ...
The aim of this study was the preparation and characterization of bioactive glass–ceramic scaffolds ...
One of the key purposes of bone tissue engineering is the development of new biomaterials that can s...
Glass–ceramic macroporous scaffolds for tissue engineering have been developed using a polyurethane ...
Three-dimensional 45S5 bioactive glass (BG)-based scaffolds are being investigated for bone regenera...
Three-dimensional 45S5 bioactive glass (BG)-based scaffolds are being investigated for bone regenera...
Three-dimensional 45S5 bioactive glass (BG)-based scaffolds are being investigated for bone regenera...
One of the key purposes of bone tissue engineering is the development of new biomaterials that can s...
One of the key purposes of bone tissue engineering is the development of new biomaterials that can s...
Bioceramics are clinically used as implantable materials to alleviate pain and restore function to d...
Bioceramics are clinically used as implantable materials to alleviate pain and restore function to d...
A three dimensional (3D), interconnected, porous structure is essential for bone tissue engineering ...
A numerous techniques have been applied to fabricate three-dimensional scaffolds of high porosity an...