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首页> 外文期刊>Journal of Applied Polymer Science >Surface modification of PHBV films with different functional groups: Thermal properties and in vitro degradation
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Surface modification of PHBV films with different functional groups: Thermal properties and in vitro degradation

机译:具有不同官能团的PHBV膜的表面改性:热性能和体外降解

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摘要

Polyacrylamide was photografted on solutioncast poly(3-hydroxybutyric acid-co-3-hydroxyvaleric acid) (PHBV) films (amide-PHBV), on which amide groups were transformed into amine groups through Hofmann degradation reaction (amine-PHBV), followed by collagen coupling reaction to prepare collagen-modified PHBV (collagen-PHBV). Amide-, amine-, and collagen-PHBV had higher water absorption and d-spacing values than PHBV, and melting temperatures and enthalpies decreased in the order of collagen-PHBV < amine-PHBV < amide-PHBV < PHBV. Thermal decomposition kinetics of PHBV component in the films has been investigated by means of nonisothermal thermogravimetric and derivative thermogravimetric studies. Applying the Avrami-Erofeev equation with index of 2/5 as the probable kinetic function, the suitable activation energy was calculated by the Friedman method through linear fitting (correlation coefficient > 0.98). The activation energy of PHBV was lower than that of amide-PHBV but higher than that of amine-and collagen-PHBV. Being incubated in phosphatebuffered saline at 37°C, the modified PHBV films showed more weight loss than PHBV during 360 days; however, pH of degradation fluids was nearly neutral as the initial pH was recorded at 7.2. The modified PHBV films with different functional groups may provide an improved biodegradation rate for various cytocompatible biomaterials constructs.
机译:将聚丙烯酰胺光接枝在溶液浇铸的聚(3-羟基丁酸-co-3-羟基戊酸)(PHBV)膜(酰胺-PHBV)上,然后通过霍夫曼降解反应(amine-PHBV)将酰胺基转化为胺基胶原偶联反应以制备胶原修饰的PHBV(胶原-PHBV)。酰胺,胺和胶原PHBV的吸水率和d间距值均高于PHBV,熔融温度和焓按胶原PHBV <胺-PHBV <酰胺-PHBV 0.98),通过Friedman方法计算出合适的活化能。 PHBV的活化能低于酰胺-PHBV,但高于胺-和胶原-PHBV。经过修饰的PHBV膜在37°C的磷酸盐缓冲盐水中孵育,在360天内显示出比PHBV更大的重量损失;但是,降解液的pH值接近中性,因为记录的初始pH为7.2。具有不同官能团的改性PHBV膜可以为各种细胞相容性生物材料构建体提供改善的生物降解速率。

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