Feng Xumei, Tan Xiangyun, Li Lijia, Liu Chunjie, Teng Fei, Li Yang
College of Food Science, Northeast Agricultural University, Harbin, Heilongjiang 150030, China.
College of Food Science, Northeast Agricultural University, Harbin, Heilongjiang 150030, China.
Int J Biol Macromol. 2025 Apr;303:140650. doi: 10.1016/j.ijbiomac.2025.140650. Epub 2025 Feb 3.
This study investigated the effects of carboxymethyl cellulose (CMC) adsorption on the interfacial properties of soy protein isolate (SPI) and its correlation with emulsion stability. The findings revealed that SPI-CMC emulsions exhibited reduced zeta potential and particle size compared with SPI emulsion alone. Molecular docking analysis suggested that the enhanced stability of SPI-CMC emulsions was primarily due to hydrogen bonding and electrostatic interactions between SPI and CMC. Notably, the encapsulation efficiency of β-carotene in SPI-CMC emulsions increased by 47.74 % at pH 4.0 with 0.4 % CMC and by 39.55 % at pH 5.0 with 0.5 % CMC compared to SPI emulsion. Stability analyses demonstrated that at pH 4.0, the SPI-CMC interfacial layer formed by hydrogen bonding and electrostatic interactions effectively protected β-carotene from external degradation factors. At pH 5.0, steric hindrance facilitated the formation of a SPI-CMC network structure, increasing the path length for oxidants to reach the oil droplet interface. These distinct binding mechanisms in SPI-CMC emulsions effectively prolonged oil droplet digestion and regulated the release of free fatty acids. The resulting emulsion exhibited slow and sustained lipid release and digestion kinetics, making it a suitable model for designing sustained-release nutritional supplements.
本研究考察了羧甲基纤维素(CMC)吸附对大豆分离蛋白(SPI)界面性质的影响及其与乳液稳定性的相关性。研究结果表明,与单独的SPI乳液相比,SPI-CMC乳液的ζ电位和粒径降低。分子对接分析表明,SPI-CMC乳液稳定性增强主要归因于SPI与CMC之间的氢键和静电相互作用。值得注意的是,与SPI乳液相比,在pH 4.0添加0.4% CMC时,SPI-CMC乳液中β-胡萝卜素的包封率提高了47.74%,在pH 5.0添加0.5% CMC时提高了39.55%。稳定性分析表明,在pH 4.0时,通过氢键和静电相互作用形成的SPI-CMC界面层有效地保护了β-胡萝卜素免受外部降解因素的影响。在pH 5.0时,空间位阻促进了SPI-CMC网络结构的形成,增加了氧化剂到达油滴界面的路径长度。SPI-CMC乳液中这些独特的结合机制有效地延长了油滴消化时间并调节了游离脂肪酸的释放。所得乳液呈现出缓慢且持续的脂质释放和消化动力学,使其成为设计缓释营养补充剂的合适模型。