The aim of this work is the production of fibers from biodegradable polymers to obtain 3D scaffolds for tissue engineering of hard tissues. The scaffolds required for this highly demanding application need to have, as well as the biological and mechanical characteristics, a high degree of porosity with suitable dimensions for cell seeding and proliferation. Furthermore, the open cell porosity should have adequate interconnectivity for a continuous flow of nutrients and outflow of cell metabolic residues as well as to allow cell growth into confluent layers. Blends of corn starch, a natural biodegradable polymer, with other synthetic polymers (poly- (ethylene vinyl alcohol), poly(e-caprolactone), poly(lactic acid)) were selected ...
This study investigates the influence of the porosity of fiber mesh scaffolds obtained from a blend ...
In the last decades 3D cell culture systems within a polymeric matrix (scaffolds) have gained increa...
The fabrication, characterization, and bio-assessment of two types of perspective tissue engineering...
The aim of this work is the production of fibers from biodegradable polymers to obtain 3D scaffolds...
http://www.sciencedirect.com/science/journal/09284931An ideal tissue engineering scaffold must be de...
One important parameter in the tissue engineering of hard tissues is the scaffold. A scaffold is a s...
This study proposes a new route for producing fiber mesh scaffolds from a starch-polycaprolactone (S...
[Excerpt] Tissue engineering scaffolds must provide cell anchorage sites, mechanical stability and ...
The design and processing of appropriate porous 3-D scaffolds is one of the most important steps tow...
In scaffold-based tissue engineering strategies, the successful regeneration of tissues from matrixp...
http://www.sciencedirect.com/science/journal/01429612One of the present challenges in polymer sca!ol...
The fabrication of a biomaterial scaffold, with adequate physical and structural properties for tiss...
Tissue engineering offers a promising new approach to create biological alternatives to repair or re...
Tissue Engineering (TE) applications range from the treatment of hard tissues like bone, cartilage, ...
A convenient and straightforward process for preparation of highly porous and interconnected !ber me...
This study investigates the influence of the porosity of fiber mesh scaffolds obtained from a blend ...
In the last decades 3D cell culture systems within a polymeric matrix (scaffolds) have gained increa...
The fabrication, characterization, and bio-assessment of two types of perspective tissue engineering...
The aim of this work is the production of fibers from biodegradable polymers to obtain 3D scaffolds...
http://www.sciencedirect.com/science/journal/09284931An ideal tissue engineering scaffold must be de...
One important parameter in the tissue engineering of hard tissues is the scaffold. A scaffold is a s...
This study proposes a new route for producing fiber mesh scaffolds from a starch-polycaprolactone (S...
[Excerpt] Tissue engineering scaffolds must provide cell anchorage sites, mechanical stability and ...
The design and processing of appropriate porous 3-D scaffolds is one of the most important steps tow...
In scaffold-based tissue engineering strategies, the successful regeneration of tissues from matrixp...
http://www.sciencedirect.com/science/journal/01429612One of the present challenges in polymer sca!ol...
The fabrication of a biomaterial scaffold, with adequate physical and structural properties for tiss...
Tissue engineering offers a promising new approach to create biological alternatives to repair or re...
Tissue Engineering (TE) applications range from the treatment of hard tissues like bone, cartilage, ...
A convenient and straightforward process for preparation of highly porous and interconnected !ber me...
This study investigates the influence of the porosity of fiber mesh scaffolds obtained from a blend ...
In the last decades 3D cell culture systems within a polymeric matrix (scaffolds) have gained increa...
The fabrication, characterization, and bio-assessment of two types of perspective tissue engineering...