2006 AIChE Annual Meeting
(17g) Photopolymerizable Tough Elastomeric Biomaterials
Authors
In our polymerization scheme, wherein thiol functionalized ester-containing monomers are reacted with vinyl functionalized monomers, the network properties like elastic modulus and degradation were easily controlled by changing the average functionality of monomers (crosslinking density) and chemistry of thiol and vinyl macromers. The elastic modulus of these materials was varied from 10 Kpa to 11.5 MPa and the degradation was controlled on the order of months to years. Elongations of these materials were as high as 3000% and these elastomers displayed complete recovery after tensile and compressive deformation. These materials also present inherent surface affinity for various cell types. Further, due to the advantageous aspects of photopolymerization scheme, these materials can be formed rapidly (on the order of seconds) under physiological conditions.
The ability of this technique to rapidly form elastomeric degradable materials with wide range of mechanical properties will expand the gamut of currently available biodegradable elastomers and potentially open up new tissue engineering applications.