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Synthesis of narrow‐polydispersity degradable dendronized aliphatic polyesters — Cameron Lee (2004) | RDL Network
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Synthesis of narrow‐polydispersity degradable dendronized aliphatic polyesters
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Jean Mj Frechet
University of California, Berkeley
Synthesis of narrow‐polydispersity degradable dendronized aliphatic polyesters
Article
2004
en
Authors
CL
Cameron Lee
SG
Scott M. Grayson
Jean Mj Frechet
University of California, Berkeley
Abstract
1 min read
Abstract The divergent dendronization of an ϵ‐caprolactone‐based polymer has been performed to provide access to dendronized polymers with sufficient biocompatibility and degradability for use as drug‐delivery scaffolds. The synthesis was performed through the tin(II) 2‐ethylhexanoate‐catalyzed polymerization of a γ‐functionalized ϵ‐caprolactone monomer, followed by the divergent growth of pendant polyester dendrons at each repeat unit. The resulting dendronized polymers were obtained up to the fourth generation with molecular weights as high as 80,000 Da and with polydispersities between 1.11 and 1.22. The fourth‐generation hydroxyl‐terminated dendronized polymer was degradable under a variety of aqueous conditions. A comparison of the dendronization approach with a procedure involving the ring‐opening polymerization of a second‐generation dendritic macromonomer reveals that the former procedure is best suited for the preparation of this family of dendronized polyesters because it requires shorter reaction times and affords materials with higher degrees of polymerization. © 2004 Wiley Periodicals, Inc. J Polym Sci Part A: Polym Chem 42: 3563–3578, 2004
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