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Encapsulation of Bifidobacterium longum in alginate-dairy matrices and survival in simulated gastrointestinal conditions, refrigeration, cow milk and goat milk

机译:藻酸盐乳制品基质中的双歧杆菌延长,并在模拟胃肠条件下存活,制冷,牛奶和山羊牛奶

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摘要

The aim of this study was to microencapsulate Bifidobacterium longum subsp. infantis CCUG 52486 using the extrusion method in a variety of matrices, namely sodium alginate (SA), sodium alginate-cow milk (SACM), sodium alginate-goat milk (SAGM) and sodium alginate-casein hydrolysate (SACH), and to evaluate the survival of free and encapsulated bacterial cells under different conditions. The encapsulation yield, size and surface morphology of the microcapsules were evaluated. The survival of microencapsulated bacterial cells and free bacterial cells were evaluated under simulated gastrointestinal conditions as well as in refrigeration, cow milk and goat milk during storage at 4 oC for 28 days. The average size of SACM capsules and SAGM capsules was 2.8±0.3 mm and 3.1±0.2 mm respectively. Goat milk and cow milk based matrices resulted in dense microcapsules which led to better performances in simulated gastrointestinal conditions than SA and SACH microcapsules. The bacterial cells encapsulated in SAGM showed the highest survival rate in cow milk (7.61 log cfu g-1) and goat milk (8.10 log cfu g-1) after the storage of 28 d. The cells encapsulated in SA and SACH and the free cells performed poorly under the simulated gastrointestinal conditions and in all different storage conditions. This study showed that SACM and SAGM are suitable to encapsulate B. longum subsp. infantis CCUG 52486 using the extrusion technique and more specifically, SAGM has a potential to be used as a new encapsulation material for encapsulating probiotic bacteria, resulting milk and goat milk-based products with higher probiotic cell concentrations during refrigerated storage.
机译:本研究的目的是微胶囊梭菌Longum Subsp。 Infantiis CCug 52486使用挤出方法在各种基质中,即海藻酸钠(SA),藻酸钠 - 牛奶(SACM),藻酸钠 - 山羊牛奶(Sagm)和藻酸钠 - 酪蛋白水解物(SACH),并评估在不同条件下自由和包封的细菌细胞的存活。评估微胶囊的包封产率,尺寸和表面形态。在模拟的胃肠环境下评价微囊化细菌细胞和游离细菌细胞的存活,以及在4℃的储存期间在制冷,牛奶和山羊牛奶中进行评估28天。 SACM胶囊和SAGM胶囊的平均尺寸分​​别为2.8±0.3mm和3.1±0.2mm。山羊牛奶和牛奶基的基质导致致密的微胶囊,导致模拟胃肠条件的性能比SA和SACH微胶囊更好。包封在SAGM中的细菌细胞在储存28d后,牛奶(7.61 log cfu g-1)和山羊牛奶(8.10 log cfu g-1)中的最高存活率。将在SA和SACH中包封的细胞和自由细胞在模拟的胃肠道条件下和所有不同的储存条件下进行。该研究表明,SACM和SAGM适用于封装B. Longum Subsp。 Infantiis CCug 52486使用挤出技术,更具体地,SAGM具有用作包封益生菌的新封装材料,在冷藏储存期间具有更高的益生菌细胞浓度的益生菌细菌的新包封材料。

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