Novel freeze-dried porous composite scaffolds were prepared from natural polymer of silk fibroin (SF) as a matrix and from diopside nanoceramic as a bioactive reinforcing agent through a freeze-drying method. Considering the superiority of both diopside and SF in terms of mechanical and biochemical properties (in comparison to similar ceramics and polymers, especially in maxillofacial specific applications), we investigated the effect of diopside nanoparticle contents. Microstructure studies illustrated that the bioactive diopside nanoparticles were distributed throughout the fibroin matrix. Enough porosity, desired surface properties, high mechanical strength and excellent in vitro biocompatibility were achieved during the fabrication of t...
Electrospun silk fibroin (SF) scaffolds have drawn much attention because of their resemblance to na...
Electrospun silk fibroin (SF) scaffolds provide large surface area, high porosity, and interconnecti...
Bone tissue engineering has been emerged as an alternative tool to induce bone regeneration through ...
Silk fibroin is a protein with intrinsic characteristics that make it a good candidate as a scaffold...
The incorporation of a bioactive inorganic phase in polymeric scaffolds is a good strategy for the i...
Novel materials with promising properties can be used to achieve scaffold-based tissue engineering g...
Silk fibroin has attracted great interest in tissue engineering because of its outstanding biocompat...
Aim: The development of novel silk/nano-sized calcium phosphate (silk/nano-CaP) scaffolds with highl...
In recent years the potential application of nanocomposite biomaterials in tissue engineering field ...
The treatment and regeneration of bone defects caused by traumatism or diseases have not been comple...
Macro/micro porous silk scaffolds with nano-sized calcium phosphate (CaP) particles were developed ...
Regeneration of diseased or damaged skeletal tissues is one of the challenge that needs to be solve...
Biocompatible and biodegradable three-dimensional scaffolds are commonly porous which serve to provi...
In recent years remarkable efforts have been made to produce artificial bone through tissue engineer...
The advantages of bioceramics, such as biocompatibility and osteoconduction, have been widely used f...
Electrospun silk fibroin (SF) scaffolds have drawn much attention because of their resemblance to na...
Electrospun silk fibroin (SF) scaffolds provide large surface area, high porosity, and interconnecti...
Bone tissue engineering has been emerged as an alternative tool to induce bone regeneration through ...
Silk fibroin is a protein with intrinsic characteristics that make it a good candidate as a scaffold...
The incorporation of a bioactive inorganic phase in polymeric scaffolds is a good strategy for the i...
Novel materials with promising properties can be used to achieve scaffold-based tissue engineering g...
Silk fibroin has attracted great interest in tissue engineering because of its outstanding biocompat...
Aim: The development of novel silk/nano-sized calcium phosphate (silk/nano-CaP) scaffolds with highl...
In recent years the potential application of nanocomposite biomaterials in tissue engineering field ...
The treatment and regeneration of bone defects caused by traumatism or diseases have not been comple...
Macro/micro porous silk scaffolds with nano-sized calcium phosphate (CaP) particles were developed ...
Regeneration of diseased or damaged skeletal tissues is one of the challenge that needs to be solve...
Biocompatible and biodegradable three-dimensional scaffolds are commonly porous which serve to provi...
In recent years remarkable efforts have been made to produce artificial bone through tissue engineer...
The advantages of bioceramics, such as biocompatibility and osteoconduction, have been widely used f...
Electrospun silk fibroin (SF) scaffolds have drawn much attention because of their resemblance to na...
Electrospun silk fibroin (SF) scaffolds provide large surface area, high porosity, and interconnecti...
Bone tissue engineering has been emerged as an alternative tool to induce bone regeneration through ...