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Characteristics of synbiotic spray dried powder of litchi juice with Lactobacillus plantarum and different carrier materials

机译:荔枝液和不同载体材料的荔枝汁合作喷雾干燥粉末的特点

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Spray drying of probiotic Lactobacillus plantarum in litchi juice with varied proportion of maltodextrin, fructooligosaccharide (FOS) and pectin was performed to determine the effect on cell viability. The spray dried powders were investigated for physical, physicochemical and toxicological properties and survivability of cells in simulated gastric and intestinal digestion. The results showed that coating material comprising of maltodextrin 10% (w/v) and 5% (w/v) FOS gave highest yield and survivability of the encapsulated bacteria. This composition of the coating material also showed good solubility, low water activity, satisfactory colour, uniform particle size with smooth surface. Powder coated with 10% (w/v) maltodextrin and 5% (w/v) pectin showed reduced powder properties and cell viability even though had the highest glass transition temperature. Maltodextrin at 10% (w/v) and FOS at 5% (w/v) levels in the coating material can be considered as the optimal carrier material composition for protection of the bacterial cells from damage by adverse environmental conditions of spray drying and for possessing desirable powder characteristics. This combination also provided protection to bacterial cells in gastric environment and also enhanced their growth in simulated digestive system. (C) 2017 Elsevier Ltd. All rights reserved.
机译:进行尿液液在荔枝汁中的益生菌乳酸杆菌的喷雾干燥,进行了多种麦芽糖糊精,果寡糖(FOS)和果胶,以确定对细胞活力的影响。研究喷雾干燥的粉末用于物理,物理化学和毒理学性质,并在模拟胃和肠消解中的细胞生存能力。结果表明,包含麦芽糖糊精10%(w / v)和5%(w / v)fos的涂层材料具有最高的产率和包封细菌的活力。该涂料的该组合物还显示出良好的溶解度,低水活性,令人满意的颜色,具有光滑表面的粒度均匀。涂有10%(w / v)麦芽糖糊精和5%(w / v)果胶的粉末表明,即使具有最高的玻璃化转变温度,也表现出粉末性能和细胞活力。涂层材料中的10%(w / v)和5%(w / v)水平的麦芽糖糊精可以被认为是最佳载体材料组合物,用于保护细菌细胞免受喷雾干燥的不利环境条件的损伤。具有理想的粉末特征。这种组合还提供了对胃环境中的细菌细胞的保护,并且还提高了模拟消化系统的生长。 (c)2017 Elsevier Ltd.保留所有权利。

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