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静电喷雾干燥:复杂共凝聚物干燥的新选择。

Electrostatic spray drying: A new alternative for drying of complex coacervates.

机构信息

Teagasc Food Research Centre, Moorepark, Fermoy, Co. Cork, P25YN63, Ireland.

Fluid Air Europe, Division of Spraying Systems Co., Treillieres, France.

出版信息

Food Res Int. 2024 May;183:114189. doi: 10.1016/j.foodres.2024.114189. Epub 2024 Mar 4.

Abstract

Complex coacervation can be used for controlled delivery of bioactive compounds (i.e., flaxseed oil and quercetin). This study investigated the co-encapsulation of flaxseed oil and quercetin by complex coacervation using soluble pea protein (SPP) and gum arabic (GA) as shell materials, followed by innovative electrostatic spray drying (ES). The dried system was analyzed through encapsulation efficiency (EE) and yield (EY), morphological and physicochemical properties, and stability for 60 days. Small droplet size emulsions were produced by GA (in the first step of complex coacervation) due to its greater emulsifying activity than SPP. Oil EY and EE, moisture, and water activity in dried compositions ranged from 75.7 to 75.6, 76.0-73.4 %, 3.4-4.1 %, and 0.1-0.2, respectively. Spherical microcapsules were created with small and aggregated particle size but stable for 60 days. An amount of 8 % of quercetin remained in the dried coacervates after 60 days, with low hydroperoxide production. In summary, when GA is used as the emulsifier and SPP as the second biopolymer in the coacervation process, suitable coacervates for food applications are obtained, with ES being a novel alternative to obtain coacervates in powder, with improved stability for encapsulated compounds. As a result, this study helps provide a new delivery system option and sheds light on how the characteristics of biopolymers and the drying process affect coacervate formation.

摘要

复杂凝聚作用可用于生物活性化合物(例如亚麻籽油和槲皮素)的控制释放。本研究使用可溶性豌豆蛋白(SPP)和阿拉伯胶(GA)作为壳材料,通过复杂凝聚作用共包封亚麻籽油和槲皮素,然后采用创新的静电喷雾干燥(ES)。通过包封效率(EE)和产率(EY)、形态和物理化学性质以及 60 天的稳定性对干燥系统进行了分析。GA(在复杂凝聚的第一步)由于其比 SPP 更高的乳化活性,产生了小的液滴乳液。油 EY 和 EE、水分和干燥成分中的水活度分别为 75.7-75.6%、76.0-73.4%、3.4-4.1%和 0.1-0.2%。球形微胶囊具有小而聚集的粒径,但在 60 天内稳定。在 60 天后,干燥凝聚物中仍有 8%的槲皮素残留,且过氧化物产量低。总之,当 GA 用作乳化剂,SPP 用作凝聚过程中的第二种生物聚合物时,可获得适用于食品应用的凝聚物,ES 是一种获得粉末状凝聚物的新型替代方法,可提高封装化合物的稳定性。因此,本研究有助于提供一种新的递送系统选择,并阐明生物聚合物的特性和干燥过程如何影响凝聚体的形成。

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