The selection of an appropriate scaffold represents one major key to success in tissue engineering. In cardiovascular applications, where a load-bearing structure is required, scaffolds need to demonstrate sufficient mechanical properties and importantly, reliable retention of these properties during the developmental phase of the tissue engineered construct. The effect of in vitro culture conditions, time and mechanical loading on the retention of mechanical properties of two scaffold types was investigated. First candidate tested was a poly-glycolic acid non-woven fiber mesh, coated with poly-4-hydroxybutyrate (PGA/P4HB), the standard scaffold used successfully in cardiovascular tissue engineering applications. As an alternative, an elect...
Mechanical loading is a powerful regulator of tissue properties in engineered cardiovascular tissues...
Mechanical loading is a powerful regulator of tissue properties in engineered cardiovascular tissues...
Tissue engineering merges the disciplines of study like cell biology, materials science, engineering...
The selection of an appropriate scaffold represents one major key to success in tissue engineering. ...
The selection of an appropriate scaffold represents one major key to success in tissue engineering. ...
The selection of an appropriate scaffold represents one major key to success in tissue engineering. ...
The selection of an appropriate scaffold represents one major key to success in tissue engineering. ...
The selection of an appropriate scaffold represents one major key to success in tissue engineering. ...
Introduction The use of scaffolds in tissue engineering is becoming increasingly important as soluti...
Synthetic polymers are widely used to fabricate porous scaffolds for the regeneration of cardiovascu...
Regenerating or replacing bone, chondral and osteochondral defects, is an active field in tissue eng...
Regenerating or replacing bone, chondral and osteochondral defects, is an active field in tissue eng...
Regenerating or replacing bone, chondral and osteochondral defects, is an active field in tissue eng...
Mechanical loading is a powerful regulator of tissue properties in engineered cardiovascular tissues...
Mechanical loading is a powerful regulator of tissue properties in engineered cardiovascular tissues...
Mechanical loading is a powerful regulator of tissue properties in engineered cardiovascular tissues...
Mechanical loading is a powerful regulator of tissue properties in engineered cardiovascular tissues...
Tissue engineering merges the disciplines of study like cell biology, materials science, engineering...
The selection of an appropriate scaffold represents one major key to success in tissue engineering. ...
The selection of an appropriate scaffold represents one major key to success in tissue engineering. ...
The selection of an appropriate scaffold represents one major key to success in tissue engineering. ...
The selection of an appropriate scaffold represents one major key to success in tissue engineering. ...
The selection of an appropriate scaffold represents one major key to success in tissue engineering. ...
Introduction The use of scaffolds in tissue engineering is becoming increasingly important as soluti...
Synthetic polymers are widely used to fabricate porous scaffolds for the regeneration of cardiovascu...
Regenerating or replacing bone, chondral and osteochondral defects, is an active field in tissue eng...
Regenerating or replacing bone, chondral and osteochondral defects, is an active field in tissue eng...
Regenerating or replacing bone, chondral and osteochondral defects, is an active field in tissue eng...
Mechanical loading is a powerful regulator of tissue properties in engineered cardiovascular tissues...
Mechanical loading is a powerful regulator of tissue properties in engineered cardiovascular tissues...
Mechanical loading is a powerful regulator of tissue properties in engineered cardiovascular tissues...
Mechanical loading is a powerful regulator of tissue properties in engineered cardiovascular tissues...
Tissue engineering merges the disciplines of study like cell biology, materials science, engineering...