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Impact of Wall Materials on Physicochemical Properties of Microencapsulated Fish Oil by Spray Drying

机译:壁材料对喷雾干燥微胶囊鱼油理化性质的影响

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The aim of the present study was to investigate the effect of wall materials composition on physicochemical characteristics of fish oil microcapsules produced by spray drying (180 A degrees C). Four different combination of coating materials (fish gelatin, chitosan, combination of gelatin and chitosan, and a mixture of microbial transglutaminase (MTGase) with maltodextrin) were applied to two different fish oils to produce 40 % solid emulsions. Scanning electron microscopy and extraction of surface and encapsulated oils revealed that fish gelatin provided the highest preserving effect on the covering fish oil. Meantime, addition of MTGase to gelatin could also increase this ability and reveled less surface oil than chitosan treatment (2.63 and 2.80 % versus 4.66 and 5.23 %, respectively; P < 0.05). Mixture of gelatin and maltodextrin with MTGase as wall material led to the highest encapsulation efficiency, being selected as the best microencapsulation condition; meantime, application of chitosan with maltodextrin provided the worse encapsulation efficiency (P < 0.05). All indices of powders (encapsulation efficiency, surface morphology, and particle size) showed that powders prepared from gelatin and gelatin with MTGase increased the encapsulation efficiency and would increase the stability of microcapsule powders.
机译:本研究的目的是研究壁材料组成对喷雾干燥(180 A摄氏度)生产的鱼油微胶囊的理化特性的影响。将四种不同的包衣材料组合(鱼明胶,壳聚糖,明胶和壳聚糖的组合以及微生物转谷氨酰胺酶(MTGase)与麦芽糊精的混合物)应用于两种不同的鱼油,以产生40%的固体乳剂。扫描电子显微镜和提取表面和包囊油的结果表明,鱼明胶对覆盖的鱼油具有最高的保存效果。同时,与壳聚糖处理相比,向明胶中添加MTGase也可以提高这种能力,并减少了表面油的使用(分别为2.63%和2.80%,对4.66%和5.23%; P <0.05)。明胶和麦芽糖糊精与MTGase作为壁材料的混合物导致最高的包封效率,被选为最佳微囊包封条件;同时,将壳聚糖与麦芽糖糊精一起使用会使包封效率降低(P <0.05)。粉末的所有指标(包封效率,表面形态和粒径)均表明,由明胶和明胶与MTGase制备的粉末可提高包封效率,并提高微胶囊粉末的稳定性。

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