Type I collagen and gelatin, a derivative of Type I collagen that has been denatured, can each be electrospun into tissue engineering scaffolds composed of nano- to micron-scale diameter fibers. We characterize the biological activity of these materials in a variety of tissue engineering applications, including endothelial cell-scaffold interactions, the onset of bone mineralization, dermal reconstruction, and the fabrication of skeletal muscle prosthetics. Electrospun collgen (esC) consistently exhibited unique biological properties in these functional assays. Even though gelatin can be spun into fibrillar scaffolds that resemble scaffolds of esC, our assays reveal that electrospun gelatin (esG) lacks intact chains and is composed of proin...
Collagen, gelatin and their derived polypeptides can act as multifunctional natural polymers with ex...
Collagen electrospun scaffolds well reproduce the structure of the extracellular matrix (ECM) of nat...
Collagen electrospun scaffolds well reproduce the structure of the extracellular matrix (ECM) of nat...
Type I collagen and gelatin, a derivative of Type I collagen that has been denatured, can each be el...
Type I collagen and gelatin, a derivative of Type I collagen that has been denatured, can each be el...
Type I collagen and gelatin, a derivative of Type I collagen that has been denatured, can each be el...
Type I collagen and gelatin, a derivative of Type I collagen that has been denatured, can each be el...
Type I collagen and gelatin, a derivative of Type I collagen that has been denatured, can each be el...
The goal of this project is to research the properties and fabrication process of gelatin and collag...
The goal of this project is to research the properties and fabrication process of gelatin and collag...
Electrospinning can be used to selectively process a variety of natural and synthetic polymers into ...
Engineered scaffolds function to supplement or replace injured, missing, or compromised tissue or or...
Engineered scaffolds function to supplement or replace injured, missing, or compromised tissue or or...
The development of biomimetic highly-porous scaffolds is essential for successful tissue engineering...
Collagen electrospun scaffolds well reproduce the structure of the extracellular matrix (ECM) of nat...
Collagen, gelatin and their derived polypeptides can act as multifunctional natural polymers with ex...
Collagen electrospun scaffolds well reproduce the structure of the extracellular matrix (ECM) of nat...
Collagen electrospun scaffolds well reproduce the structure of the extracellular matrix (ECM) of nat...
Type I collagen and gelatin, a derivative of Type I collagen that has been denatured, can each be el...
Type I collagen and gelatin, a derivative of Type I collagen that has been denatured, can each be el...
Type I collagen and gelatin, a derivative of Type I collagen that has been denatured, can each be el...
Type I collagen and gelatin, a derivative of Type I collagen that has been denatured, can each be el...
Type I collagen and gelatin, a derivative of Type I collagen that has been denatured, can each be el...
The goal of this project is to research the properties and fabrication process of gelatin and collag...
The goal of this project is to research the properties and fabrication process of gelatin and collag...
Electrospinning can be used to selectively process a variety of natural and synthetic polymers into ...
Engineered scaffolds function to supplement or replace injured, missing, or compromised tissue or or...
Engineered scaffolds function to supplement or replace injured, missing, or compromised tissue or or...
The development of biomimetic highly-porous scaffolds is essential for successful tissue engineering...
Collagen electrospun scaffolds well reproduce the structure of the extracellular matrix (ECM) of nat...
Collagen, gelatin and their derived polypeptides can act as multifunctional natural polymers with ex...
Collagen electrospun scaffolds well reproduce the structure of the extracellular matrix (ECM) of nat...
Collagen electrospun scaffolds well reproduce the structure of the extracellular matrix (ECM) of nat...