Purpose: Photo-crosslinking is a technique that can accelerate the development of novel polymeric biomaterials.Methods: Here we show the development of a combinatorial platform to synthesize numerous synthetic biodegradable and biocompatible networks by photo-crosslinking mixtures of macromers.Results: Combinations of dimethacrylate-terminated macromers based on hydrophobic D, L-lactide (DLLA), trimethylene carbonate (TMC), epsilon-caprolactone (CL), and hydrophilic polyethylene glycol (PEG) were crosslinked into polymer networks with widely differing properties. The interaction of cells with the network surfaces was assessed by an in vitro cell seeding experiment in which cell proliferation was assessed using a DNA proliferation assay.Conc...
The general tissue engineering approach is to combine cells, scaffolding, and signaling molecules in...
A novel method for the simultaneous preparation of a large number of porous polymeric structures wit...
Resorbable and elastomeric poly(trimethylene carbonate) (PTMC) networks were efficiently prepared by...
Purpose: Photo-crosslinking is a technique that can accelerate the development of novel polymeric bi...
Regenerative medicine aims at replacing, engineering or regenerating human cells\ud and tissues. The...
Photo-crosslinked synthetic biodegradable polymer networks are highly interesting materials for util...
Major drawbacks of synthetic hydrogels are their poor mechanical properties and their limited abilit...
The preparation of polymeric networks that are both tough and biodegradable remains a challenge. Her...
New lactide-based poly(ethylene glycol) (PEG) polymer networks (GL−PEGs) have been prepared by UV ph...
Control of the network topology by selection of an appropriate cross-linking chemistry is introduced...
Biodegradable polymer networks were prepared from fumaric acid derivatives of oligomeric esters. Pho...
Poly(D,L-lactide) is a degradable polymer with a long\ud history of use in medical applications. It ...
The general tissue engineering approach is to combine cells, scaffolding, and signaling molecules in...
A novel method for the simultaneous preparation of a large number of porous polymeric structures wit...
Resorbable and elastomeric poly(trimethylene carbonate) (PTMC) networks were efficiently prepared by...
Purpose: Photo-crosslinking is a technique that can accelerate the development of novel polymeric bi...
Regenerative medicine aims at replacing, engineering or regenerating human cells\ud and tissues. The...
Photo-crosslinked synthetic biodegradable polymer networks are highly interesting materials for util...
Major drawbacks of synthetic hydrogels are their poor mechanical properties and their limited abilit...
The preparation of polymeric networks that are both tough and biodegradable remains a challenge. Her...
New lactide-based poly(ethylene glycol) (PEG) polymer networks (GL−PEGs) have been prepared by UV ph...
Control of the network topology by selection of an appropriate cross-linking chemistry is introduced...
Biodegradable polymer networks were prepared from fumaric acid derivatives of oligomeric esters. Pho...
Poly(D,L-lactide) is a degradable polymer with a long\ud history of use in medical applications. It ...
The general tissue engineering approach is to combine cells, scaffolding, and signaling molecules in...
A novel method for the simultaneous preparation of a large number of porous polymeric structures wit...
Resorbable and elastomeric poly(trimethylene carbonate) (PTMC) networks were efficiently prepared by...