Abstract The nanofibrous structure containing protein and polysaccharide has good potential in tissue engineering. The present work aims to study the role of chitosan in gelatin/chitosan nanofibrous scaffolds fabricated through electrospinning process under optimized condition. The performance of chitosan in gelatin/chitosan nanofibrous scaffolds was evaluated by mechanical tests, scanning electron microscopy (SEM), Fourier transform infrared (FTIR) and in vitro cell culture on scaffolds with different gelatin/chitosan blend ratios. To assay the influence of chitosan ratio on biocompatibility of the electrospun gelatin/chitosan scaffolds for skin tissue engineering, the culturing of the human dermal fibroblast cells (HDF) on nanofibers in t...
Biocompatible fibrous scaffolds based on highly deacetylated chitosan were fabricated using high-thr...
Design and fabrication of nanofibrous scaffolds should mimic the native extracellular matrix. This s...
The development of biomimetic highly-porous scaffolds is essential for successful tissue engineering...
In this study, a hierarchical nano/microfibrous chitosan/collagen scaffold that approximates structu...
In this study, a hierarchical nano/microfibrous chitosan/collagen scaffold that approximates structu...
Tissue engineering offers a promising approach for repair of defective tissues and organs. Developin...
The fabrication of biocompatible and biodegradable scaffolds which mimic the native extracellular ma...
The fabrication of biocompatible and biodegradable scaffolds which mimic the native extracellular ma...
Chitosan/collagen composite nanofibrous scaffold has been greatly concerned in recent years for its ...
The fabrication of biocompatible and biodegradable scaffolds which mimic the native extracellular ma...
Nowadays, blending of natural and synthetic polymers has attracted a considerable interest in tissue...
In the present study, pure chitosan and gelatin solutions are blended at four various ratios with th...
The final goal of the present study was the development of a 3-D chitosan dressing that would shorte...
Electrospinning is an interesting technique, which provides a facile and an effective mean in produc...
Fabrication of gelatin/polyvinyl alcohol/chondroitin sulfate (GEL/PVA/CS) hybrid nanofibrous scaffol...
Biocompatible fibrous scaffolds based on highly deacetylated chitosan were fabricated using high-thr...
Design and fabrication of nanofibrous scaffolds should mimic the native extracellular matrix. This s...
The development of biomimetic highly-porous scaffolds is essential for successful tissue engineering...
In this study, a hierarchical nano/microfibrous chitosan/collagen scaffold that approximates structu...
In this study, a hierarchical nano/microfibrous chitosan/collagen scaffold that approximates structu...
Tissue engineering offers a promising approach for repair of defective tissues and organs. Developin...
The fabrication of biocompatible and biodegradable scaffolds which mimic the native extracellular ma...
The fabrication of biocompatible and biodegradable scaffolds which mimic the native extracellular ma...
Chitosan/collagen composite nanofibrous scaffold has been greatly concerned in recent years for its ...
The fabrication of biocompatible and biodegradable scaffolds which mimic the native extracellular ma...
Nowadays, blending of natural and synthetic polymers has attracted a considerable interest in tissue...
In the present study, pure chitosan and gelatin solutions are blended at four various ratios with th...
The final goal of the present study was the development of a 3-D chitosan dressing that would shorte...
Electrospinning is an interesting technique, which provides a facile and an effective mean in produc...
Fabrication of gelatin/polyvinyl alcohol/chondroitin sulfate (GEL/PVA/CS) hybrid nanofibrous scaffol...
Biocompatible fibrous scaffolds based on highly deacetylated chitosan were fabricated using high-thr...
Design and fabrication of nanofibrous scaffolds should mimic the native extracellular matrix. This s...
The development of biomimetic highly-porous scaffolds is essential for successful tissue engineering...