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Development and optimization of spray‐dried functional oil microcapsules: Oxidation stability and release kinetics

机译:喷雾干燥功能油微胶囊的开发和优化:氧化稳定性和释放动力学

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This study aimed to optimize the microencapsulation method for a functional oil using high amylose corn starch (HACS) and assessed its structure and antioxidant capacity. The results showed that the optimal microencapsulation condition is achieved by using 28.5% of functional oil, 15.75% of HACS, and 57.86% of proportion of monoglyceride in emulsifier with 94.86% microencapsulation efficiency. Scanning electron microscopy and particle size measurement showed that the functional oil microcapsules were uniform size, smooth surface, spherical shape, and without cracks in the wall of the capsules. In vitro oil release of microencapsulates results showed that microencapsulated functional oil containing HACS has a better sustained release effect. The microcapsules containing HACS exhibited a lower lipid oxidation rate during storage. In conclusion, microencapsulation of HACS as wall material improved the stability of functional oil and this formulation of microcapsules was satisfactorily applied in powdered food for diabetic patients.
机译:本研究旨在利用高淀粉糖淀粉(HACS)优化用于功能油的微胶囊化方法,并评估其结构和抗氧化能力。结果表明,通过使用28.5%的HACS,15.75%的乳化剂中的纯甘油酯,7.86%的微胶囊效率为57.86%的纯甘油酯,57.86%,实现了最佳的微囊化病症。扫描电子显微镜和粒度测量表明,功能油片微胶囊均匀,表面,球形,球形,胶囊壁中没有裂缝。微胶囊化合物的体外油释放结果表明,含有HACS的微胶囊化功能油具有更好的缓释效果。含有HACS的微胶囊在储存期间表现出较低的脂质氧化速率。总之,HACS作为壁材料的微观含量改善了功能油的稳定性,并且这种微胶囊的制剂令人满意地应用于糖尿病患者的粉末食品中。

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