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- W4230378833 abstract "The susceptibility of polyanhydrides to rapid hydrolytic degradation makes them uniquely suitable for biomedical devices and delivery systems with distinct degradation profiles. In addition to the typically used melt condensation polymerization, solution, ring-opening, dehydrative coupling, and microwave-assisted polymerizations are discussed as well. Poly(anhydride) bulk materials undergo surface erosion, which translates into well-controlled release kinetics for embedded bioactive agents. Degradation rates can be tailored by adjusting the ratio of aliphatic to aromatic building blocks in the polymer synthesis, or by blending poly(anhydride)s with other more slowly degrading biopolymers. Since poly(anhydride)s undergo rapid surface erosion, the characterization of these surfaces and overall stability are of particular interest when biomedical applications are considered and multi-method characterization approaches are described. Aside from using poly(anhydride)s in drug delivery their potential use in proton and gene delivery, tissue engineering, and immunomodulation are discussed." @default.
- W4230378833 created "2022-05-11" @default.
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- W4230378833 date "2017-06-30" @default.
- W4230378833 modified "2023-09-23" @default.
- W4230378833 title "Polyanhydrides" @default.
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- W4230378833 doi "https://doi.org/10.1002/9781118967904.ch5" @default.
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