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Influences of different carbohydrates as wall material on powder characteristics, encapsulation efficiency, stability and degradation kinetics of microencapsulated lutein by spray drying

机译:喷雾干燥时,不同碳水化合物在粉末特性,封装效率,稳定性和降解动力学的粉末特性,封装效率,稳定性和降解动力学

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摘要

In the present study, seven carbohydrates were selected as encapsulant for preparing lutein microencapsulated powders (LMPs). The surface morphology, physical properties, encapsulation efficiency, and thermo-and storage stability of LMPs were studied to determine the protective effects of different carbohydrates on microencapsulated lutein during spray drying and storage. Results on powder characteristics indicated that the crystal inhibition of wall material in spray drying was necessary for decent encapsulation efficiency, and higher glass transition temperature of wall material could cause high product yield. In stability assessment, degradation kinetics of different LMPs at two different temperature conditions were analysed, revealing that inulin could provide more effective protection compared with the other carbohydrate. Our results suggested that the different carbohydrates had great influence on the quality of LMPs, and inulin could be considered as an alternative for the generation of LMPs to enhance storage stability and extend shelf life of this bioactive product.
机译:在本研究中,选择七种碳水化合物作为用于制备叶黄素微胶囊化粉末(LMP)的密封剂。研究了LMP的表面形态,物理性质,封装效率和热量和储存稳定性,以确定不同碳水化合物对喷雾干燥和储存过程中微囊化叶黄素的保护作用。粉末特性的结果表明,对喷雾干燥中的壁材料的晶体抑制对于体面的包封效率是必需的,并且壁材料的较高玻璃化转变温度可能导致产量高。在稳定性评估中,分析了不同LMP的降解动力学在两个不同的温度条件下进行了分析,揭示菊粉与其他碳水化合物相比提供更有效的保护。我们的研究结果表明,不同的碳水化合物对LMP的质量产生了很大影响,并且菊粉可以被认为是生成LMP的替代方案,以增强储存稳定性并延长这种生物活性产物的保质期。

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