Cell compatibility is one of the prominent requirements for the fabrication of tissue engineering materials. Silk fibroin (SF) is an excellent material for biomedical applications and shows desirable properties such as good compatibility, minimal tissue reaction, and tailorable degradability. Poly[(R)-3-hydroxybutyrate] (PHB) has a high percentage of crystallinity and a high melting temperature. In this study, PHB and SF were blended together to improve the mechanical properties of the SF fibrous structure and the crystallinity of PHB. Furthermore, the cell–biomaterial interaction on the PHB/SF composite scaffold was expected to be enhanced via the SF. For this purpose, PHB/SF composite scaffolds were prepared through the use of the el...
The objective of this study was to produce biocompatible plasma-treated and silk-fibroin (SF) modifi...
AbstractProcessing Silk Fibroin (SF) with electrospinning (ES) offers a very attractive opportunity ...
Electrospun silk fibroin nanofibrous scaffolds (ESFNSs) were successfully prepared by electrospinnin...
Processing Silk Fibroin (SF) with electrospinning (ES) offers a very attractive opportunity for prod...
Processing Silk Fibroin (SF) with electrospinning (ES) offers a very attractive opportunity for prod...
Processing Silk Fibroin (SF) with electrospinning (ES) offers a very attractive opportunity for prod...
Processing Silk Fibroin (SF) with electrospinning (ES) offers a very attractive opportunity for prod...
Electrospun silk fibroin (SF) scaffolds provide large surface area, high porosity, and interconnecti...
Here, we show the production of nanofibrous mats with controlled mechanical properties and excellent...
Silk fibroin has attracted great interest in tissue engineering because of its outstanding biocompat...
In this study, composite nanofibrous scaffolds were obtained by electrospinning a trifluoroacetic ac...
Electrospinning of fibrous scaffolds containing nano-hydroxyapatite (nHAp) embedded in a matrix of f...
An electrospinning method was used to fabricate silk fibroin (SF) nanofiber nonwovens for cell cultu...
In this study new electrospun silk fibroin (SF) based scaffolds were developed and their material an...
The objective of this study was to produce biocompatible plasma-treated and silk-fibroin (SF) modifi...
The objective of this study was to produce biocompatible plasma-treated and silk-fibroin (SF) modifi...
AbstractProcessing Silk Fibroin (SF) with electrospinning (ES) offers a very attractive opportunity ...
Electrospun silk fibroin nanofibrous scaffolds (ESFNSs) were successfully prepared by electrospinnin...
Processing Silk Fibroin (SF) with electrospinning (ES) offers a very attractive opportunity for prod...
Processing Silk Fibroin (SF) with electrospinning (ES) offers a very attractive opportunity for prod...
Processing Silk Fibroin (SF) with electrospinning (ES) offers a very attractive opportunity for prod...
Processing Silk Fibroin (SF) with electrospinning (ES) offers a very attractive opportunity for prod...
Electrospun silk fibroin (SF) scaffolds provide large surface area, high porosity, and interconnecti...
Here, we show the production of nanofibrous mats with controlled mechanical properties and excellent...
Silk fibroin has attracted great interest in tissue engineering because of its outstanding biocompat...
In this study, composite nanofibrous scaffolds were obtained by electrospinning a trifluoroacetic ac...
Electrospinning of fibrous scaffolds containing nano-hydroxyapatite (nHAp) embedded in a matrix of f...
An electrospinning method was used to fabricate silk fibroin (SF) nanofiber nonwovens for cell cultu...
In this study new electrospun silk fibroin (SF) based scaffolds were developed and their material an...
The objective of this study was to produce biocompatible plasma-treated and silk-fibroin (SF) modifi...
The objective of this study was to produce biocompatible plasma-treated and silk-fibroin (SF) modifi...
AbstractProcessing Silk Fibroin (SF) with electrospinning (ES) offers a very attractive opportunity ...
Electrospun silk fibroin nanofibrous scaffolds (ESFNSs) were successfully prepared by electrospinnin...