Designed three-dimensional biodegradable poly(ethylene glycol)/poly(D,L-lactide) hydrogel structures were prepared for the first time by stereolithography at high resolutions. A photopolymerisable aqueous resin comprising PDLLA-PEG-PDLLA-based macromer, visible light photo-initiator, dye and inhibitor in DMSO/water was used to build the structures. Porous and non-porous hydrogels with well-defined architectures and good mechanical properties were prepared. Porous hydrogel structures with a gyroid pore network architecture showed narrow pore size distributions, excellent pore interconnectivity and good mechanical properties. The structures showed good cell seeding characteristics, and human mesenchymal stem cells adhered and proliferated wel...
Porous polylactide constructs were prepared by stereolithography, for the first time without the use...
Rapid prototyping techniques have been in-vestigated for the production of biomedical devices that p...
Porous polylactide constructs were prepared by stereolithography, for the first time without the use...
Designed three-dimensional biodegradable poly(ethylene glycol)/poly(D,L-lactide) hydrogel structures...
Designed three-dimensional biodegradable poly(ethylene glycol)/poly(D,L-lactide) hydrogel structures...
Designed three-dimensional biodegradable poly(ethylene glycol)/poly(D,L-lactide) hydrogel structures...
Designed three-dimensional biodegradable poly(ethylene glycol)/poly(D,L-lactide) hydrogel structures...
Designed three-dimensional biodegradable poly(ethylene glycol)/poly(D,L-lactide) hydrogel structures...
Designed three-dimensional biodegradable poly(ethylene glycol)/poly(D,L-lactide) hydrogel structures...
Designed three-dimensional biodegradable poly(ethylene glycol)/poly(d,l-lactide) hydrogel structures...
The use of porous structures as tissue engineering scaffolds imposes high demands on the pore archit...
The use of stereolithography (SL) for fabricating complex three-dimensional (3D) tissue engineered ...
The use of stereolithography (SL) for fabricating complex three-dimensional (3D) tissue engineered ...
Mixed-macromer networks prepared by using biodegradable functionalized oligomers and a combinatorial...
Mixed-macromer networks prepared by using biodegradable functionalized oligomers and a combinatorial...
Porous polylactide constructs were prepared by stereolithography, for the first time without the use...
Rapid prototyping techniques have been in-vestigated for the production of biomedical devices that p...
Porous polylactide constructs were prepared by stereolithography, for the first time without the use...
Designed three-dimensional biodegradable poly(ethylene glycol)/poly(D,L-lactide) hydrogel structures...
Designed three-dimensional biodegradable poly(ethylene glycol)/poly(D,L-lactide) hydrogel structures...
Designed three-dimensional biodegradable poly(ethylene glycol)/poly(D,L-lactide) hydrogel structures...
Designed three-dimensional biodegradable poly(ethylene glycol)/poly(D,L-lactide) hydrogel structures...
Designed three-dimensional biodegradable poly(ethylene glycol)/poly(D,L-lactide) hydrogel structures...
Designed three-dimensional biodegradable poly(ethylene glycol)/poly(D,L-lactide) hydrogel structures...
Designed three-dimensional biodegradable poly(ethylene glycol)/poly(d,l-lactide) hydrogel structures...
The use of porous structures as tissue engineering scaffolds imposes high demands on the pore archit...
The use of stereolithography (SL) for fabricating complex three-dimensional (3D) tissue engineered ...
The use of stereolithography (SL) for fabricating complex three-dimensional (3D) tissue engineered ...
Mixed-macromer networks prepared by using biodegradable functionalized oligomers and a combinatorial...
Mixed-macromer networks prepared by using biodegradable functionalized oligomers and a combinatorial...
Porous polylactide constructs were prepared by stereolithography, for the first time without the use...
Rapid prototyping techniques have been in-vestigated for the production of biomedical devices that p...
Porous polylactide constructs were prepared by stereolithography, for the first time without the use...