Electrospun silk fibroin (SF) scaffolds provide large surface area, high porosity, and interconnection for cell adhesion and proliferation and they may replace collagen for many tissue engineering applications. Despite such advantages, electrospun SF scaffolds are still limited as bone tissue replacement due to their low mechanical strengths. While enhancement of mechanical strengths by incorporating inorganic ceramics into polymers has been demonstrated, electrospinning of a mixture of SF and inorganic ceramics such as hydroxyapatite is challenging and less studied due to the aggregation of ceramic particles within SF. In this study, we aimed to enhance the mechanical properties of electrospun SF scaffolds by uniformly dispersing hydroxyap...
The interest in biodegradable polymer nanofibres with tissue cell regeneration potential has increas...
Silk fibroin has attracted great interest in tissue engineering because of its outstanding biocompat...
We fabricated composite fibrous scaffolds from blends of poly (lactide-co-glycolide) (PLGA) and nano...
Electrospinning of fibrous scaffolds containing nano-hydroxyapatite (nHAp) embedded in a matrix of f...
Electrospun silk fibroin (SF) scaffolds have drawn much attention because of their resemblance to na...
Silk fibroin has attracted great interest in tissue engineering because of its outstanding biocompat...
The development of functional scaffolds with improved osteogenic potential is important for successf...
Silk fibroin (SF) is a natural fibrous polymer with strong potential for many biomedical application...
Cell compatibility is one of the prominent requirements for the fabrication of tissue engineering ma...
Biodegradable cell-incorporated scaffolds can guide the regeneration process of bone defects such as...
Nanocomposites are recently known to be among the most successful materials in biomedical applicatio...
This work aims to design a synthetic construct that mimics the natural bone extracellular matrix thr...
This work aims to design a synthetic construct that mimics the natural bone extracellular matrix thr...
This work aims to design a synthetic construct that mimics the natural bone extracellular matrix thr...
In recent years remarkable efforts have been made to produce artificial bone through tissue engineer...
The interest in biodegradable polymer nanofibres with tissue cell regeneration potential has increas...
Silk fibroin has attracted great interest in tissue engineering because of its outstanding biocompat...
We fabricated composite fibrous scaffolds from blends of poly (lactide-co-glycolide) (PLGA) and nano...
Electrospinning of fibrous scaffolds containing nano-hydroxyapatite (nHAp) embedded in a matrix of f...
Electrospun silk fibroin (SF) scaffolds have drawn much attention because of their resemblance to na...
Silk fibroin has attracted great interest in tissue engineering because of its outstanding biocompat...
The development of functional scaffolds with improved osteogenic potential is important for successf...
Silk fibroin (SF) is a natural fibrous polymer with strong potential for many biomedical application...
Cell compatibility is one of the prominent requirements for the fabrication of tissue engineering ma...
Biodegradable cell-incorporated scaffolds can guide the regeneration process of bone defects such as...
Nanocomposites are recently known to be among the most successful materials in biomedical applicatio...
This work aims to design a synthetic construct that mimics the natural bone extracellular matrix thr...
This work aims to design a synthetic construct that mimics the natural bone extracellular matrix thr...
This work aims to design a synthetic construct that mimics the natural bone extracellular matrix thr...
In recent years remarkable efforts have been made to produce artificial bone through tissue engineer...
The interest in biodegradable polymer nanofibres with tissue cell regeneration potential has increas...
Silk fibroin has attracted great interest in tissue engineering because of its outstanding biocompat...
We fabricated composite fibrous scaffolds from blends of poly (lactide-co-glycolide) (PLGA) and nano...