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Cellulose-nanofiber/polygalacturonic acid coatings with high oxygen barrier and targeted release properties

机译:纤维素纳米纤维/聚半乳糖醛酸涂层具有高氧气阻隔和目标释放特性

摘要

A bio-inspired coating consisting of pectin (polygalacturonic acid) and cationic cellulose nanofibers were successfully produced by the layer-by-layer method. The build-up and the morphology of the resulting coatings were studied with spectroscopic ellipsometry and atomic force microscopy, respectively. The coating was able to survive the exposure of a simulated gastric fluid, but was partially degraded upon exposure to pectinase enzyme, which simulate the action of the microbial symbionts present in the human colon. Prior to exposure, the oxygen permeability coefficient of the coating (0.033 ml (STP) mm m−2 day−1 atm−1 at 23 °C and 20% RH) was in the same order of magnitude as for ethylene vinyl alcohol films (0.001–0.01 ml (STP) mm m−2 day−1 atm−1). However, after exposure to the mimicked gastrointestinal (GI) tract conditions, the contribution of coating to the overall barrier properties was not measurable.
机译:由果胶(聚半乳糖醛酸)和阳离子纤维素纳米纤维组成的生物启发性涂层通过逐层方法成功制备。分别用椭圆偏振光谱法和原子力显微镜研究了所得涂层的形成和形态。该涂层能够在暴露的模拟胃液中幸存下来,但是在暴露于果胶酶中会部分降解,果胶酶可以模拟人结肠中存在的微生物共生体的作用。在暴露之前,涂层的透氧系数(0.033 ml(STP)mm m-2 day-1 atm-1在23°C和20%RH下)与乙烯乙烯醇薄膜的数量级相同( 0.001-0.01 ml(STP)毫米m-2天-1 atm-1)。然而,在暴露于模拟胃肠道(GI)条件后,无法测量涂层对整体阻隔性能的贡献。

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