Article ID | Journal | Published Year | Pages | File Type |
---|---|---|---|---|
5201011 | Polymer Degradation and Stability | 2016 | 12 Pages |
Abstract
The results obtained, show that copolymerization leads to better mechanical response with respect to poly(lactic) acid homopolymer. Moreover, the presence of the soft block in the main polymer chain facilitates the process of biodegradability. Nanoparticles of selected copolymers fabricated by using the nanoprecipitation method showed rounded morphology and average hydrodynamic diameters around 180 nm. Cellular behavior was assessed using human fibroblasts in vitro assays and results showed absence of cytotoxicity and a good cellular adhesion and proliferation on all the copolymer surfaces.
Keywords
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Chemistry
Organic Chemistry
Authors
M. Fabbri, M. Soccio, M. Costa, N. Lotti, M. Gazzano, V. Siracusa, R. Gamberini, B. Rimini, A. Munari, L. GarcÃa-Fernández, B. Vázquez-Lasa, J. San Román,