This study describes the developmental physicochemical properties of silk fibroin scaffolds derived from high concentration aqueous silk fibroin solutions. The silk fibroin scaffolds were prepared with different initial concentrations (8%, 10%, 12% and 16% (wt%)) and obtained by combining the salt-leaching and freeze-drying methodologies. The results indicated that the antiparallel β-pleated sheet (silk-II) conformation was present in the silk fibroin scaffolds. All the scaffolds possessed macro/micro porous structure. Homogeneous porosity distribution was achieved in all the groups of samples. As the silk fibroin concentration increased from 8% to 16%, the mean porosity decreased from 90.8±0.9% to 79.8±0.3%, and the mean interconnectivity ...
Controlling the degradation rate of silk fibroin-based biomaterial is an important capability for th...
This study evaluates the biological performance of salt-leached macro/microporous silk scaffolds (S1...
This study evaluates the biological performance of salt-leached macro/microporous silk scaffolds (S1...
This study describes the developmental physicochemical properties of silk fibroin scaffolds derived ...
This study proved that the salt leached silk fibroin scaffolds can be developed by using more than 1...
Several processing technologies and engineering strategies have been combined to create scaffolds wi...
INTRODUCTION: Silk fibroin scaffolds have been explored extensively for tissue engineering applicati...
Autologous transplantations, the gold standard, did not meet sufficient health tissue coverage area ...
Autologous transplantations, the gold standard, did not meet sufficient health tissue coverage area ...
Several processing technologies and engineering strategies have been combined to create scaffolds wi...
Silk fibroin (SF) gained attention in tissue engineering applications owing to its unique properties...
Development of biocompatible, biodegradable, and drug-eluting macroporous three-dimensional scaffold...
In order to use a simple and ecofriendly method to prepare porous silk scaffolds, aqueous silk fibro...
Macro/micro porous silk scaffolds with nano-sized calcium phosphate (CaP) particles were developed ...
Silk has recently been exploited as a potential scaffold biomaterial for cell culture and tissue eng...
Controlling the degradation rate of silk fibroin-based biomaterial is an important capability for th...
This study evaluates the biological performance of salt-leached macro/microporous silk scaffolds (S1...
This study evaluates the biological performance of salt-leached macro/microporous silk scaffolds (S1...
This study describes the developmental physicochemical properties of silk fibroin scaffolds derived ...
This study proved that the salt leached silk fibroin scaffolds can be developed by using more than 1...
Several processing technologies and engineering strategies have been combined to create scaffolds wi...
INTRODUCTION: Silk fibroin scaffolds have been explored extensively for tissue engineering applicati...
Autologous transplantations, the gold standard, did not meet sufficient health tissue coverage area ...
Autologous transplantations, the gold standard, did not meet sufficient health tissue coverage area ...
Several processing technologies and engineering strategies have been combined to create scaffolds wi...
Silk fibroin (SF) gained attention in tissue engineering applications owing to its unique properties...
Development of biocompatible, biodegradable, and drug-eluting macroporous three-dimensional scaffold...
In order to use a simple and ecofriendly method to prepare porous silk scaffolds, aqueous silk fibro...
Macro/micro porous silk scaffolds with nano-sized calcium phosphate (CaP) particles were developed ...
Silk has recently been exploited as a potential scaffold biomaterial for cell culture and tissue eng...
Controlling the degradation rate of silk fibroin-based biomaterial is an important capability for th...
This study evaluates the biological performance of salt-leached macro/microporous silk scaffolds (S1...
This study evaluates the biological performance of salt-leached macro/microporous silk scaffolds (S1...