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Statistical optimization of bambara groundnut protein isolate-alginate matrix systems on survival of encapsulated Lactobacillus rhamnosus GG

机译:袋鼠花生蛋白分离-海藻酸盐基质系统对鼠李糖乳杆菌GG包囊生存的统计优化

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摘要

Encapsulation may protect viable probiotic cells. This study aims at the evaluation of a bambara groundnut protein isolate (BGPI)-alginate matrix designed for encapsulating a probiotic Lactobacillus rhamnosus GG. The response surface methodology was employed to gain the optimal concentrations of BGPI and alginate on encapsulation efficiency and survival of encapsulated cells. The capsules were prepared at the optimal combination by the traditional extrusion method composed of 8.66% w/v BGPI and 1.85% w/v alginate. The encapsulation efficiency was 97.24%, whereas the survival rates in an acidic condition and after the freeze-drying process were 95.56% and 95.20%, respectively—higher than those using either BGPI or alginate as the encapsulating agent individually. The designed capsules increased the probiotic L. rhamnosus GG survival relative to free cells in a simulated gastric fluid by 5.00 log cfu/ml after 3 h and in a simulated intestinal fluid by 8.06 log cfu/ml after 4 h. The shelf-life studies of the capsules over 6 months at 4 °C and 30 °C indicated that the remaining number of viable cells in a BGPI-alginate capsule was significantly higher than that of free cells in both temperatures. It was demonstrated that the BGPI-alginate capsule could be utilized as a new probiotic carrier for enhanced gastrointestinal transit and storage applied in food and/or pharmaceutical products.
机译:包封可以保护存活的益生菌细胞。这项研究旨在评估为封装益生菌鼠李糖乳杆菌GG的班巴拉花生蛋白分离物(BGPI)-藻酸盐基质的评估。响应面方法用于获得最佳BGPI和藻酸盐浓度,以提高封装效率和被封装细胞的存活率。通过传统的挤压方法以由8.66%w / v BGPI和1.85%w / v藻酸盐组成的最佳组合制备胶囊。封装效率为97.24%,而在酸性条件下和冷冻干燥后的存活率分别为95.56%和95.20%,高于分别使用BGPI或藻酸盐作为封装剂的生存率。设计的胶囊相对于游离细胞,益生菌鼠李糖乳杆菌GG的存活率在3小时后的模拟胃液中增加了5.00 log cfu / ml,在4小时后的模拟肠液中增加了8.06 log cfu / ml。胶囊在4°C和30°C下超过6个月的货架期研究表明,在两种温度下,BGPI-藻酸盐胶囊中的活细胞剩余数量均显着高于游离细胞。事实证明,BGPI-藻酸盐胶囊可用作新的益生菌载体,用于食品和/或药品中增强的胃肠道转运和储存。

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