In this study, we present and characterize a fiber deposition technique for producing three-dimensional poly(ethylene glycol)-terephthalate—poly(butylene terephthalate) (PEGT/PBT) block co-polymer scaffolds with a 100% interconnecting pore network for engineering of articular cartilage. The technique allowed us to “design-in” desired scaffold characteristics layer by layer by accurately controlling the deposition of molten co-polymer fibers from a pressure-driven syringe onto a computer controlled x–y–z table. By varying PEGT/PBT composition, porosity and pore geometry, 3D-deposited scaffolds were produced with a range of mechanical properties. The equilibrium modulus and dynamic stiffness ranged between 0.05–2.5 and 0.16–4.33 MPa, respecti...
Damage to cartilage, caused either by disease or injury, affects a large number of people worldwide,...
Cartilage has a poor regenerative capacity. Tissue-engineering approaches using porous scaffolds see...
Regenerating the load-bearing tissues requires 3D scaffolds that balance the temporary mechanical fu...
In this study, we present and characterize a fiber deposition technique for producing three-dimensio...
A highly interconnecting and accessible pore network has been suggested as one of a number of prereq...
This report describes a novel system to create rapid prototyped 3-dimensional (3D) fibrous scaffolds...
This report describes a novel system to create rapid prototyped 3-dimensional (3D) fibrous scaffolds...
The zonal organization of cells and extracellular matrix (ECM) constituents within articular cartila...
The zonal organization of cells and extracellular matrix (ECM) constituents within articular cartila...
The potential of porous poly(ether ester) scaffolds made from poly(ethylene glycol) terephthalate: p...
The potential of porous poly(ether ester) scaffolds made from poly(ethylene glycol) terephthalate: p...
Porous poly(ethylene glycol) terephthalate:poly (butylene terephthalate) (PEGT:PBT) scaffolds with h...
Engineered scaffolds for tissue-engineering should be designed to match the stiffness and strength o...
Engineered scaffolds for tissue-engineering should be designed to match the stiffness and strength o...
Articular cartilage is an anisotropic tissue composed of compositional and functional layers. One cl...
Damage to cartilage, caused either by disease or injury, affects a large number of people worldwide,...
Cartilage has a poor regenerative capacity. Tissue-engineering approaches using porous scaffolds see...
Regenerating the load-bearing tissues requires 3D scaffolds that balance the temporary mechanical fu...
In this study, we present and characterize a fiber deposition technique for producing three-dimensio...
A highly interconnecting and accessible pore network has been suggested as one of a number of prereq...
This report describes a novel system to create rapid prototyped 3-dimensional (3D) fibrous scaffolds...
This report describes a novel system to create rapid prototyped 3-dimensional (3D) fibrous scaffolds...
The zonal organization of cells and extracellular matrix (ECM) constituents within articular cartila...
The zonal organization of cells and extracellular matrix (ECM) constituents within articular cartila...
The potential of porous poly(ether ester) scaffolds made from poly(ethylene glycol) terephthalate: p...
The potential of porous poly(ether ester) scaffolds made from poly(ethylene glycol) terephthalate: p...
Porous poly(ethylene glycol) terephthalate:poly (butylene terephthalate) (PEGT:PBT) scaffolds with h...
Engineered scaffolds for tissue-engineering should be designed to match the stiffness and strength o...
Engineered scaffolds for tissue-engineering should be designed to match the stiffness and strength o...
Articular cartilage is an anisotropic tissue composed of compositional and functional layers. One cl...
Damage to cartilage, caused either by disease or injury, affects a large number of people worldwide,...
Cartilage has a poor regenerative capacity. Tissue-engineering approaches using porous scaffolds see...
Regenerating the load-bearing tissues requires 3D scaffolds that balance the temporary mechanical fu...