Article ID | Journal | Published Year | Pages | File Type |
---|---|---|---|---|
7867918 | Materials Science and Engineering: C | 2016 | 8 Pages |
Abstract
The formation of protein/polymer nanoparticles with a core/shell structure was confirmed using PAGE, dynamic light scattering, and electron microscopy. Encapsulation of the BSA into nanoparticles was strongly dependent on the copolymer-to-protein mass ratio, PEG grafting ratio, and PLL molecular weight. A copolymer-to-protein mass ratio of 7:1 and higher was generally required for high levels of encapsulation, and under these conditions, no loss of protein activity was observed. Copolymer characteristics also influenced nanoparticle resistance to polyanions and protease degradation. The results indicate that a copolymer of 15-30Â kDa PLL, with a PEG grafting ratio of 10:1, is most promising for protein delivery.
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Authors
Nicholas Flynn, Ã. Ãzge Topal, Rangika S. Hikkaduwa Koralege, Steve Hartson, Ashish Ranjan, Jing Liu, Carey Pope, Joshua D. Ramsey,