蛋白-多糖乳液凝胶作为活性物的包载体系,具有载量高、生物相容性高、稳定性好等优点。该文以螺旋藻分离蛋白(Spirulina protein isolate,SPI)和透明质酸(hyaluronic acid,HA)为乳化剂和凝胶基质,制备了不同油相体积分数的SPI乳液、SPI...蛋白-多糖乳液凝胶作为活性物的包载体系,具有载量高、生物相容性高、稳定性好等优点。该文以螺旋藻分离蛋白(Spirulina protein isolate,SPI)和透明质酸(hyaluronic acid,HA)为乳化剂和凝胶基质,制备了不同油相体积分数的SPI乳液、SPI-HA乳液和乳液凝胶,表征了乳液的微观结构和粒径,分析了不同油相体积分数对乳液凝胶形成的影响,并探究了乳液凝胶对β-胡萝卜素的高温保护效果。结果表明,SPI乳液随着HA的引入,乳液粒径明显降低;乳液凝胶结构则随着油相体积分数的增加越来越致密;当油相体积分数为60%时,乳液凝胶的屈服应力、储能模量以及表观黏度均高于SPI乳液和SPI-HA乳液;乳液凝胶对70℃,8 h下β-胡萝卜素的保留率高达(78.83±2.75)%。综上所述,SPI-HA乳液凝胶在食品领域中具有良好的应用前景。展开更多
The dispersion processes and methods of physical sun-screening agents in liquid medium were briefed.Several stabilizing mechanisms of ultrafine particle in liquid medium was introduced, and the stabilizing mechanisms ...The dispersion processes and methods of physical sun-screening agents in liquid medium were briefed.Several stabilizing mechanisms of ultrafine particle in liquid medium was introduced, and the stabilizing mechanisms of physical sunscreens were discussed. At last, the currently existing evaluation methods of physical sun-screening slurry stability were also illustrated.展开更多
文摘蛋白-多糖乳液凝胶作为活性物的包载体系,具有载量高、生物相容性高、稳定性好等优点。该文以螺旋藻分离蛋白(Spirulina protein isolate,SPI)和透明质酸(hyaluronic acid,HA)为乳化剂和凝胶基质,制备了不同油相体积分数的SPI乳液、SPI-HA乳液和乳液凝胶,表征了乳液的微观结构和粒径,分析了不同油相体积分数对乳液凝胶形成的影响,并探究了乳液凝胶对β-胡萝卜素的高温保护效果。结果表明,SPI乳液随着HA的引入,乳液粒径明显降低;乳液凝胶结构则随着油相体积分数的增加越来越致密;当油相体积分数为60%时,乳液凝胶的屈服应力、储能模量以及表观黏度均高于SPI乳液和SPI-HA乳液;乳液凝胶对70℃,8 h下β-胡萝卜素的保留率高达(78.83±2.75)%。综上所述,SPI-HA乳液凝胶在食品领域中具有良好的应用前景。
文摘The dispersion processes and methods of physical sun-screening agents in liquid medium were briefed.Several stabilizing mechanisms of ultrafine particle in liquid medium was introduced, and the stabilizing mechanisms of physical sunscreens were discussed. At last, the currently existing evaluation methods of physical sun-screening slurry stability were also illustrated.