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Photo-protection and controlled release of folic acid using edible alginate/chitosan nanolaminates

机译:使用食用藻酸盐/壳聚糖纳米层压材料对叶酸进行光保护和控释

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The formation, characterization, photo-protective properties and release profiles of folic acid-loaded nanolaminated films were investigated by UV-visible spectroscopy, FTIR, Raman and SEM microscopy. Food-grade alginate/chitosan nanolaminates were obtained by the layer-by-layer technique and folic acid (FA) was incorporated by post-diffusion. The FA concentration of loading solutions and immersion time significantly affected the FA content in nanolaminates. The maximum FA loading was reached using FA solutions at 10 mg/mL for 30 min (54.4 mu g/cm(2)), or 12.5 mg/mL for 120 min (approximate to 70 mu g/cm(2)). Nanolaminates containing FA were more stable under ultraviolet light exposure than non-encapsulated FA. The rate and concentration of FA released from nanolaminates were greater at buffer pH 7 than at pH 3, which might play a key role in the delivery and bioavailability of nutraceuticals. These results provide important information for the design of nanolaminates containing hydrophilic active compounds for food applications. (C) 2017 Elsevier Ltd. All rights reserved.
机译:通过紫外-可见光谱,FTIR,拉曼和SEM显微镜研究了负载叶酸的纳米层合膜的形成,表征,光防护性能和释放曲线。食品级藻酸盐/壳聚糖纳米层压板通过逐层技术获得,叶酸(FA)通过后扩散法引入。加载溶液中FA的浓度和浸入时间显着影响纳米层压板中FA的含量。使用FA溶液以10 mg / mL进行30分钟(54.4μg / cm(2))或12.5 mg / mL进行120分钟(约70μg/ cm(2))达到最大FA负载量。含有FA的纳米层压板在紫外线照射下比未封装的FA更稳定。在pH 7的缓冲液中,纳米层压板释放的FA的速率和浓度要比在pH 3的缓冲液中高,这可能对营养食品的传递和生物利用度起关键作用。这些结果为设计用于食品的含有亲水活性化合物的纳米层压板提供了重要的信息。 (C)2017 Elsevier Ltd.保留所有权利。

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