School of Chemistry and Chemical Engineering, Guangxi University, Nanning 530004, PR China.
School of Chemistry and Chemical Engineering, Guangxi University, Nanning 530004, PR China.
Food Res Int. 2023 Apr;166:112625. doi: 10.1016/j.foodres.2023.112625. Epub 2023 Feb 21.
Starch-fatty acid complexes used as emulsifiers have caught great attention because of their renewability and excellent emulsifying property, the development of a simple and efficient synthesis method for the fabrication of starch-fatty acid complexes is still greatly challenging. Herein, the rice starch-fatty acid complexes (NRS-FA) were successfully prepared by mechanical activation method using different long chain fatty acids (myristic acid, palmitic acid, and stearic acid) and native rice starch (NRS) as the raw materials. The results showed that the prepared NRS-FA with a V-shaped crystalline structure exhibited a higher digestion resistance than NRS. Moreover, when the chain length of fatty acids increased from 14 to 18 carbons, the contact angle of the complexes was much closer to 90°, and the average particle size was smaller, deriving the better emulsifying property of NRS-FA18 complexes, which were suitable to be used as an emulsifier to stabilize curcumin-loaded Pickering emulsions. The results of storage stability and in vitro digestion showed that the curcumin retention could reach 79.4 % after 28 days of storage and 80.8 % of curcumin was retained in the system after simulated gastric digestion, showing good encapsulation and delivery performance of prepared Pickering emulsions, which attributed to the enhancement of the coverage of particles at the oil-water interface.
淀粉-脂肪酸复合物作为乳化剂因其可再生性和优异的乳化性能而受到广泛关注,然而开发一种简单高效的制备淀粉-脂肪酸复合物的方法仍然具有很大的挑战性。本文以不同长链脂肪酸(月桂酸、棕榈酸和硬脂酸)和天然大米淀粉(NRS)为原料,通过机械活化法成功制备了大米淀粉-脂肪酸复合物(NRS-FA)。结果表明,具有 V 型晶体结构的 NRS-FA 表现出比 NRS 更高的消化抗性。此外,当脂肪酸的链长从 14 个增加到 18 个碳原子时,复合物的接触角更接近 90°,平均粒径更小,这使得 NRS-FA18 复合物具有更好的乳化性能,适合用作乳化剂来稳定姜黄素负载的 Pickering 乳液。储存稳定性和体外消化结果表明,在储存 28 天后,姜黄素的保留率可达 79.4%,在模拟胃消化后,体系中保留了 80.8%的姜黄素,表明所制备的 Pickering 乳液具有良好的包封和递送性能,这归因于颗粒在油水界面的覆盖增强。