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Core-Shell Nanoencapsulation of α-Tocopherol by Blending Sodium Oleate and Rebaudioside A: Preparation Characterization and Antioxidant Activity

机译:油酸钠和莱鲍迪甙A共混的α-生育酚核-壳纳米包封A:制备表征和抗氧化活性

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摘要

Nanoencapsulation of α-tocopherol (α-TOC) by blending sodium oleate (NaOl) and rebaudioside A (RebA) was successfully prepared by self-assembly method under mild conditions. The optimized nanoemulsion showed the loading capacity of α-TOC was 30 wt% of sodium oleate. FTIR analysis suggested that hydrogen bonds and hydrophobic interactions were the major forces in α-TOC-NaOl/RebA complexes that were spherical and possessed well-distinguishable core-shell structures. The freeze-dried α-TOC-NaOl/RebA complexes had great stability under ambient conditions. The release profile of α-TOC showed a first-order kinetics reaching around 67.9% after 90 h at 25 °C. Nanoencapsulation improved dispersibility and greatly increased the antioxidant activity of α-TOC. Therefore, the stable α-TOC-NaOl/RebA core-shell complexes prepared from “generally recognized as safe” (GRAS) ingredients have great potential to supplement α-TOC in food and cosmetic products.
机译:在温和的条件下,通过自组装方法成功制备了油酸钠(NaOl)和莱鲍迪甙A(RebA)混合而成的α-生育酚(α-TOC)纳米胶囊。优化的纳米乳液表明,α-TOC的负载量为油酸钠的30 wt%。 FTIR分析表明,氢键和疏水相互作用是球形的α-TOC-NaOl/ RebA配合物的主要作用力,并具有可分辨的核-壳结构。冷冻干燥的α-TOC-NaOl/ RebA复合物在环境条件下具有很大的稳定性。在25°C下90 h后,α-TOC的释放曲线显示一级动力学达到约67.9%。纳米封装改善了分散性,并大大提高了α-TOC的抗氧化活性。因此,由“通常被认为是安全的”(GRAS)成分制备的稳定的α-TOC-NaOl/ RebA核-壳复合物具有很大的潜力在食品和化妆品中补充α-TOC。

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