College of Food Science and Engineering, Bohai University, Jinzhou 121000, China.
College of Food Science and Engineering, Bohai University, Jinzhou 121000, China.
Food Res Int. 2024 Jul;188:114532. doi: 10.1016/j.foodres.2024.114532. Epub 2024 May 18.
Luteolin has anti-inflammatory, antioxidant, and anti-tumor functions, but its poor water solubility and stability limit its applications in foods as a functional component. In this study, the nanocomposites loading luteolin (Lut) with soybean protein isolate (SPI), soluble soybean polysaccharide (SSPS) and/or rhamnolipid (Rha) were prepared by layer-by-layer shelf assembly method, and their properties were also evaluated. The results showed that Rha/SPI/Lut had the smallest particle size (206.24 nm) and highest loading ratio (8.03 μg/mg) while Rha/SSPS/SPI/Lut had the highest encapsulation efficiency (82.45 %). Rha interacted with SPI through hydrophobic interactions as the main driving force, while SSPS attached to SPI with only hydrogen bonding. Furthermore, the synergistic effect between Rha and SSPS was observed in Rha/SSPS/SPI/Lut complex, in consequence, it had the best thermal and storage stability, and the slowest release in gastrointestinal digestion. Thus, this approach provided an alternative way for the application of luteolin in functional foods.
木樨草素具有抗炎、抗氧化和抗肿瘤功能,但由于其水溶性和稳定性差,限制了其作为功能成分在食品中的应用。本研究采用层层自组装法制备了负载木樨草素(Lut)的大豆分离蛋白(SPI)、可溶性大豆多糖(SSPS)和/或鼠李糖脂(Rha)纳米复合材料,并对其性能进行了评价。结果表明,Rha/SPI/Lut 的粒径最小(206.24nm),载药量最高(8.03μg/mg),而 Rha/SSPS/SPI/Lut 的包封效率最高(82.45%)。Rha 与 SPI 之间主要通过疏水相互作用相互作用,而 SSPS 仅通过氢键与 SPI 结合。此外,在 Rha/SSPS/SPI/Lut 复合物中观察到了 Rha 和 SSPS 的协同作用,因此,它具有最好的热稳定性和储存稳定性,以及在胃肠道消化中最慢的释放速度。因此,该方法为木樨草素在功能性食品中的应用提供了一种替代方法。