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Hydrogels, microgels and nanogels have emerged as versatile and viable platforms for sustained protein release, targeted drug delivery, and tissue engineering due to excellent biocompatibility, a microporous structure with tunable porosity and pore size, and dimensions spanning from human organs, cells to viruses. In the past decade, remarkable advances in hydrogels, microgels and nanogels have been...
Previous studies have shown that stereocomplexed hydrogels are rapidly formed in situ by mixing aqueous solutions of eight-arm poly(ethylene glycol)-poly(L-lactide) and poly(ethylene glycol)–poly(D-lactide) star block copolymers (denoted as PEG–(PLLA) 8 and PEG–(PDLA) 8 , respectively). In this study, in vitro and in vivo protein release from stereocomplexed hydrogels was investigated...
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