Silk fibroin has attracted great interest in tissue engineering because of its outstanding biocompatibility, biodegradability and minimal inflammatory reaction. In this study, two kinds of biocomposites based on regenerated silk fibroin are fabricated by electrospinning and post-treatment processes, respectively. Firstly, regenerated silk fibroin/tetramethoxysilane (TMOS) hybrid nanofibers with high hydrophilicity are prepared, which is superior for fibroblast attachment. The electrospinning process causes adjacent fibers to \u27weld\u27 at contact points, which can be proved by scanning electron microscope (SEM). The water contact angle of silk/tetramethoxysilane (TMOS) composites shows a sharper decrease than pure regenerated silk fibroin...
Mineralized natural protein based materials are investigated as novel materials to be used in tissue...
Regeneration of diseased or damaged skeletal tissues is one of the challenge that needs to be solve...
20th International Conference on Composite Materials (ICCM) -- JUL 19-24, 2015 -- Copenhagen, DENMAR...
Silk fibroin has attracted great interest in tissue engineering because of its outstanding biocompat...
Silk fibroin is a protein with intrinsic characteristics that make it a good candidate as a scaffold...
Novel materials with promising properties can be used to achieve scaffold-based tissue engineering g...
Electrospinning of fibrous scaffolds containing nano-hydroxyapatite (nHAp) embedded in a matrix of f...
The present research focuses on the development of a novel silk fibroin based 3D artificial nanofibr...
Bone tissue engineering (BTE) represents a multidisciplinary research field involving many aspects o...
In this study new electrospun silk fibroin (SF) based scaffolds were developed and their material an...
Electrospun silk fibroin (SF) scaffolds provide large surface area, high porosity, and interconnecti...
The development of functional scaffolds with improved osteogenic potential is important for successf...
The astounding biomaterial features of silk for example its high mechanical strength, biocompatibili...
Electrospun silk fibroin (SF) scaffolds have drawn much attention because of their resemblance to na...
Zi Wang,1,* Ming Lin,1,* Qing Xie,1 Hao Sun,1 Yazhuo Huang,1 DanDan Zhang,1 Zhang Yu,1 Xiaoping Bi,1...
Mineralized natural protein based materials are investigated as novel materials to be used in tissue...
Regeneration of diseased or damaged skeletal tissues is one of the challenge that needs to be solve...
20th International Conference on Composite Materials (ICCM) -- JUL 19-24, 2015 -- Copenhagen, DENMAR...
Silk fibroin has attracted great interest in tissue engineering because of its outstanding biocompat...
Silk fibroin is a protein with intrinsic characteristics that make it a good candidate as a scaffold...
Novel materials with promising properties can be used to achieve scaffold-based tissue engineering g...
Electrospinning of fibrous scaffolds containing nano-hydroxyapatite (nHAp) embedded in a matrix of f...
The present research focuses on the development of a novel silk fibroin based 3D artificial nanofibr...
Bone tissue engineering (BTE) represents a multidisciplinary research field involving many aspects o...
In this study new electrospun silk fibroin (SF) based scaffolds were developed and their material an...
Electrospun silk fibroin (SF) scaffolds provide large surface area, high porosity, and interconnecti...
The development of functional scaffolds with improved osteogenic potential is important for successf...
The astounding biomaterial features of silk for example its high mechanical strength, biocompatibili...
Electrospun silk fibroin (SF) scaffolds have drawn much attention because of their resemblance to na...
Zi Wang,1,* Ming Lin,1,* Qing Xie,1 Hao Sun,1 Yazhuo Huang,1 DanDan Zhang,1 Zhang Yu,1 Xiaoping Bi,1...
Mineralized natural protein based materials are investigated as novel materials to be used in tissue...
Regeneration of diseased or damaged skeletal tissues is one of the challenge that needs to be solve...
20th International Conference on Composite Materials (ICCM) -- JUL 19-24, 2015 -- Copenhagen, DENMAR...