Electrospinning of collagen (COL)/silk fibroin (SF) blend solutions in 1,1,1,3,3,3-hexafluoro-2-propanol was investigated for fabrication of a biocompatible and biomimetic nanostructured scaffold for tissue engineering. The morphology of the electrospun COL/SF blend nanofibers was observed by scanning electron microscopy. The average diameters of COL/SF blend fibers ranged from 320 to 360 nm, irrespective of SF content in the blends. Both COL and SF components in the as-spun COL/SF blend matrices were stabilized by glutaraldehyde and water vapor, respectively, under the saturated glutaraldehyde aqueous solution at 25 degrees C. The glutaraldehyde vapor chemically stabilized the COL component via. cross-linking, whereas the water vapor physi...
Collagen electrospun scaffolds potentially couple high biomimetism of the biological material with t...
The aim of this research is to develop biocompatible nanofibrous mats using hydroxyethyl cellulose w...
The aim of this research is to develop biocompatible nanofibrous mats using hydroxyethyl cellulose w...
Electrospinning of chitin/silk fibroin (SF) blend solutions in 1,1,1,3,3,3-hexafluoro-2-propanol (HF...
Electrospinning of type I collagen in 1,1,1,3,3,3-hexafluoro-2-propanol (HFIP) to fabricate a biomim...
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...
Skin tissue engineering is a developing technology to heal severe wounds. Combining polyvinyl alcoho...
Skin tissue engineering is a developing technology to heal severe wounds. Combining polyvinyl alcoho...
Skin tissue engineering is a developing technology to heal severe wounds. Combining polyvinyl alcoho...
Electrospinning of poly(glycolic acid) (PGA)/chitin blend solutions in 1,1,1,3,3,3-hexafluoro-2-prop...
To fabricate a biomimetic nanostructured bicomponent scaffolds, two types of chitin/silk fibroin (SF...
The discipline of tissue engineering opens up the ways for repair and regenerate damaged organs and ...
The vast domain of regenerative medicine comprises complex interactions between specific cells&rsquo...
The vast domain of regenerative medicine comprises complex interactions between specific cells&rsquo...
Collagen electrospun scaffolds potentially couple high biomimetism of the biological material with t...
The aim of this research is to develop biocompatible nanofibrous mats using hydroxyethyl cellulose w...
The aim of this research is to develop biocompatible nanofibrous mats using hydroxyethyl cellulose w...
Electrospinning of chitin/silk fibroin (SF) blend solutions in 1,1,1,3,3,3-hexafluoro-2-propanol (HF...
Electrospinning of type I collagen in 1,1,1,3,3,3-hexafluoro-2-propanol (HFIP) to fabricate a biomim...
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...
Skin tissue engineering is a developing technology to heal severe wounds. Combining polyvinyl alcoho...
Skin tissue engineering is a developing technology to heal severe wounds. Combining polyvinyl alcoho...
Skin tissue engineering is a developing technology to heal severe wounds. Combining polyvinyl alcoho...
Electrospinning of poly(glycolic acid) (PGA)/chitin blend solutions in 1,1,1,3,3,3-hexafluoro-2-prop...
To fabricate a biomimetic nanostructured bicomponent scaffolds, two types of chitin/silk fibroin (SF...
The discipline of tissue engineering opens up the ways for repair and regenerate damaged organs and ...
The vast domain of regenerative medicine comprises complex interactions between specific cells&rsquo...
The vast domain of regenerative medicine comprises complex interactions between specific cells&rsquo...
Collagen electrospun scaffolds potentially couple high biomimetism of the biological material with t...
The aim of this research is to develop biocompatible nanofibrous mats using hydroxyethyl cellulose w...
The aim of this research is to develop biocompatible nanofibrous mats using hydroxyethyl cellulose w...