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维生素 A 和 E 的包封作为喷雾干燥添加剂用于饲料工业。

Encapsulation of Vitamins A and E as Spray-Dried Additives for the Feed Industry.

机构信息

Departamento de Ciencia y Tecnología de Alimentos, Facultad Tecnológica, Universidad de Santiago de Chile, Obispo Umaña 050, Estación Central, 9170201 Santiago, Chile.

Departamento de Ingeniería Química, Facultad de Ingeniería, Universidad de Santiago de Chile, Av. Libertador Bernardo O'Higgins 3363, Estación Central, 9170002 Santiago, Chile.

出版信息

Molecules. 2020 Mar 17;25(6):1357. doi: 10.3390/molecules25061357.

Abstract

Encapsulated fat-soluble powders containing vitamin A (VA) and E (VE) were prepared as a feasible additive for extruded feed products. The effect of the encapsulating agents (Capsul-CAP, sodium caseinate-SC) in combination with Tween 80 (TW) as an emulsifier and maltodextrin (MD) as a wall material on the physicochemical properties of emulsions and powders was evaluated. First, nanoemulsions containing MD:CAP:TW:VA/VE and MD:SC:TW:VA/VE were prepared and characterized. Then, powders were obtained by means of spray-drying and analyzed in terms of the product yield, encapsulation efficiency, moisture content, porosity, surface morphology, chemical structure, and thermal properties and thermo-oxidative/thermal stability. Results showed that although nanoemulsions were obtained for all the compositions, homogeneous microcapsules were found after the drying process. High product yield and encapsulation efficiency were obtained, and the presence of the vitamins was corroborated. The characteristics of the powders were mainly influenced by the encapsulating agent used and also by the type of vitamin. In general, the microcapsules remained thermally stable up to 170 °C and, therefore, the proposed encapsulation systems for vitamins A and E were suitable for the preparation of additives for the feed manufacturing through the extrusion process.

摘要

将含有维生素 A(VA)和维生素 E(VE)的包埋脂溶性粉末制备为挤出饲料产品的可行添加剂。评估了包埋剂(Capsul-CAP、酪蛋白酸钠-SC)与 Tween 80(TW)作为乳化剂和麦芽糊精(MD)作为壁材的组合对乳液和粉末的物理化学性质的影响。首先,制备并表征了含有 MD:CAP:TW:VA/VE 和 MD:SC:TW:VA/VE 的纳米乳液。然后,通过喷雾干燥获得粉末,并从产品收率、包封效率、水分含量、孔隙率、表面形态、化学结构以及热性质和热氧化/热稳定性方面进行分析。结果表明,尽管所有组合物都获得了纳米乳液,但干燥后发现了均匀的微胶囊。获得了高的产品收率和包封效率,并且证实了维生素的存在。粉末的特性主要受所用包埋剂的影响,也受维生素类型的影响。一般来说,微胶囊在 170°C 以下保持热稳定性,因此,所提出的维生素 A 和 E 的包埋系统适用于通过挤出工艺制备饲料添加剂。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/93c8/7144125/558c6190423f/molecules-25-01357-g001.jpg

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