This study aimed to explore the correlation between mechanical and structural properties of chitosan-agarose blend (Ch-Agrs) scaffolds. Porosity of Ch-Agrs scaffolds was constant at 93%, whilst pore sizes varied between 150 and 550 μm. Pore sizes of the blend scaffolds (150 - 300 μm) were significantly smaller than for either agarose or chitosan scaffolds alone (ca. 500 μm). Ch50-Agrs50 blend scaffold showed the highest compressive modulus and strength values (4.5 ± 0.4 and 0.35 ± 0.03 MPa) due to reduction in the pore size. The presence of agarose improved the stability of the blends in aqueous media. The increase in compressive properties and residual weight after the TGA test, combined with the reduction in the swelling percentage of th...
This study aimed to determine film characteristics of chitosan/collagen scaffold for tissue engineer...
Gelatin, chitosan and hyaluronic acid are natural components used to prepare polymeric scaffold in t...
Tissue engineering approaches have been adapted to reconstruct and restore functionality of impaired...
This study aimed to explore the correlation between mechanical and structural properties of chitosan...
One of the most effective approaches for treatment of cartilage involves the use of porous three-dim...
Blends of chitosan and synthetic aliphatic polyesters (polybutylene succinate, polybutylene succina...
Current methods reporting preparation of chitosan and chitosan blend scaffolds are ambiguous, contra...
The aim of this study was to evaluate the possibility of preparing chitosan porous matrixes using su...
Chitosan-based porous scaffolds are of great interest in biomedical applications because of their bi...
In this study, synergistic effects of crosslinking and chitosan molecular weight on the microstructu...
Chitosan is widely used to prepare films, hydro-gels, cryogels, sponges, fibers and other various bi...
Three dimensional (3D) biodegradable porous scaffolds play a crucial role in bone tissue repair. In ...
Scaffolds are porous three-dimensional supports, designed to mimic the extracellular environment and...
This study reports on the production of chitosan fibers and 3-D fiber meshes for the use as tissue e...
<p>With increasing gap in the demand and supply of vital organs for transplantation there is a press...
This study aimed to determine film characteristics of chitosan/collagen scaffold for tissue engineer...
Gelatin, chitosan and hyaluronic acid are natural components used to prepare polymeric scaffold in t...
Tissue engineering approaches have been adapted to reconstruct and restore functionality of impaired...
This study aimed to explore the correlation between mechanical and structural properties of chitosan...
One of the most effective approaches for treatment of cartilage involves the use of porous three-dim...
Blends of chitosan and synthetic aliphatic polyesters (polybutylene succinate, polybutylene succina...
Current methods reporting preparation of chitosan and chitosan blend scaffolds are ambiguous, contra...
The aim of this study was to evaluate the possibility of preparing chitosan porous matrixes using su...
Chitosan-based porous scaffolds are of great interest in biomedical applications because of their bi...
In this study, synergistic effects of crosslinking and chitosan molecular weight on the microstructu...
Chitosan is widely used to prepare films, hydro-gels, cryogels, sponges, fibers and other various bi...
Three dimensional (3D) biodegradable porous scaffolds play a crucial role in bone tissue repair. In ...
Scaffolds are porous three-dimensional supports, designed to mimic the extracellular environment and...
This study reports on the production of chitosan fibers and 3-D fiber meshes for the use as tissue e...
<p>With increasing gap in the demand and supply of vital organs for transplantation there is a press...
This study aimed to determine film characteristics of chitosan/collagen scaffold for tissue engineer...
Gelatin, chitosan and hyaluronic acid are natural components used to prepare polymeric scaffold in t...
Tissue engineering approaches have been adapted to reconstruct and restore functionality of impaired...