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Self-Assembled Modified Soy Protein/Dextran Nanogel Induced by Ultrasonication as a Delivery Vehicle for Riboflavin

机译:超声波诱导的自组装修饰大豆蛋白/葡聚糖纳米凝胶作为核黄素的传递载体

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A simple and green approach was developed to produce a novel nanogel via self-assembly of modified soy protein and dextran, to efficiently deliver riboflavin. First, modified soy protein was prepared by heating denaturation at 60 °C for 30 min or Alcalase hydrolysis for 40 min. Second, modified soy protein was mixed with dextran and ultrasonicated for 70 min so as to assemble nanogels. The modified soy protein-dextran nanogels were characterized by Fourier-transform infrared spectroscopy (FTIR) and X-ray photoelectron spectroscopy (XPS) and ζ-potential studies to confirm the formation of NGs. Transmission electron microscopy (TEM) revealed the NGs to be spherical with core-shell structures, in the range of 32–40 nm size. The nanogels were stable against various environmental conditions. Furthermore, the particle size of the nanogels hardly changed with the incorporation of riboflavin. The encapsulation efficiency of nanogels was found to be up to 65.9% at a riboflavin concentration of 250 μg/mL. The nanogels exhibited a faster release in simulated intestine fluid (SIF) compared with simulated gastric fluid (SGF). From the results obtained it can be concluded that modified soy protein-dextran nanogels can be considered a promising carrier for drugs and other bioactive molecule delivery purposes. View Full-Text
机译:开发了一种简单而绿色的方法,通过修饰大豆蛋白和右旋糖酐的自组装来生产新型纳米凝胶,从而有效地输送核黄素。首先,通过在60°C下加热变性30分钟或Alcalase水解40分钟来制备改性大豆蛋白。其次,将修饰的大豆蛋白与葡聚糖混合并超声处理70分钟,以组装纳米凝胶。通过傅立叶变换红外光谱(FTIR)和X射线光电子能谱(XPS)以及ζ电位研究对改性的大豆蛋白-葡聚糖纳米凝胶进行表征,以确认NG的形成。透射电子显微镜(TEM)显示NG为球形,具有核壳结构,尺寸在32–40 nm之间。纳米凝胶在各种环境条件下都是稳定的。此外,纳米凝胶的粒径几乎不会随着核黄素的掺入而改变。发现在250μg/ mL的核黄素浓度下,纳米凝胶的包封效率高达65.9%。与模拟胃液(SGF)相比,纳米凝胶在模拟肠液(SIF)中显示出更快的释放。从获得的结果可以得出结论,改性大豆蛋白-葡聚糖纳米凝胶可以被认为是用于药物和其他生物活性分子递送目的的有前途的载体。查看全文

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