Blends of chitosan and synthetic aliphatic polyesters (polybutylene succinate, polybutylene succinate adipate, polycaprolactone, and polybutylene terepthalate adipate) were compounded with and without hydroxyapatite, a bioactive mineral filler known to enhance osteoconduction. The blends and composites were compression molded with two different granulometric salt sizes (63–125 lm and 250–500 lm) having different levels of salt content (60, 70, and 80%) by weight. By leaching the salt particles, it was possible to produce porous scaffolds with distinct morphologies. The relationship between scaffold morphology and mechanical properties was evaluated using scanning electron microscopy, microcomputed tomography, compression testin...
Composite scaffolds based on biodegradable natural polymer and osteoconductive hydroxyapatite (HA) n...
Bone is a complex porous composite structure with specific characteristics such as viscoelasticity a...
In recent years, research on biomaterials has been directed towards the development and optimization...
Blends of chitosan and synthetic aliphatic polyesters (polybutylene succinate, polybutylene succina...
Hydroxyapatite, chitosan, and aliphatic polyester were compounded using a twin-screw extruder. The ...
An optimal carrier for bone tissue engineering should be both a controlled release system and a sca...
Scaffolds can be considered as one of the most promising treatments for bone tissue regeneration. He...
Three dimensional (3D) biodegradable porous scaffolds play a crucial role in bone tissue repair. In ...
Joint defects associated with a variety of etiologies often extend deep into the subchondral bone le...
Chitosan-based porous scaffolds are of great interest in biomedical applications because of their bi...
In tissue engineering, a scaffold helps determine 3-dimensional morphology, increases cell survival,...
In recent years, research on biomaterials has been directed towards the development and optimization...
In recent years, research on biomaterials has been directed towards the development and optimization...
In recent years, research on biomaterials has been directed towards the development and optimization...
The scaffold material and architecture of the scaffold can affect cell seeding and tissue growth bot...
Composite scaffolds based on biodegradable natural polymer and osteoconductive hydroxyapatite (HA) n...
Bone is a complex porous composite structure with specific characteristics such as viscoelasticity a...
In recent years, research on biomaterials has been directed towards the development and optimization...
Blends of chitosan and synthetic aliphatic polyesters (polybutylene succinate, polybutylene succina...
Hydroxyapatite, chitosan, and aliphatic polyester were compounded using a twin-screw extruder. The ...
An optimal carrier for bone tissue engineering should be both a controlled release system and a sca...
Scaffolds can be considered as one of the most promising treatments for bone tissue regeneration. He...
Three dimensional (3D) biodegradable porous scaffolds play a crucial role in bone tissue repair. In ...
Joint defects associated with a variety of etiologies often extend deep into the subchondral bone le...
Chitosan-based porous scaffolds are of great interest in biomedical applications because of their bi...
In tissue engineering, a scaffold helps determine 3-dimensional morphology, increases cell survival,...
In recent years, research on biomaterials has been directed towards the development and optimization...
In recent years, research on biomaterials has been directed towards the development and optimization...
In recent years, research on biomaterials has been directed towards the development and optimization...
The scaffold material and architecture of the scaffold can affect cell seeding and tissue growth bot...
Composite scaffolds based on biodegradable natural polymer and osteoconductive hydroxyapatite (HA) n...
Bone is a complex porous composite structure with specific characteristics such as viscoelasticity a...
In recent years, research on biomaterials has been directed towards the development and optimization...