Effects of various polysaccharides (alginate, carrageenan, gums, chitosan) and their combination with prebiotic saccharides (resistant starch, lactosucrose, lactulose) on the encapsulation of probiotic bacteria Lactobacillus casei 01 strain

结冷胶 干酪乳杆菌 益生元 多糖 食品科学 刺槐豆胶 益生菌 乳果糖 淀粉 黄原胶 化学 卡拉胶 抗性淀粉 壳聚糖 发酵 细菌 生物 生物化学 材料科学 流变学 复合材料 遗传学
作者
Linh Phuong Ta,Erika Bujna,Otília Antal,Márta Ladányi,Réka Juhász,Anett Szécsi,Szilárd Kun,Surya Sudheer,Vijai Kumar Gupta,Quang D. Nguyen
出处
期刊:International Journal of Biological Macromolecules [Elsevier BV]
卷期号:183: 1136-1144 被引量:121
标识
DOI:10.1016/j.ijbiomac.2021.04.170
摘要

The probiotics are extremely sensitive to various environmental factors, which imposes limitation on their health and functional effectiveness. Thus, development of delivery system for protection of viable cells while passing through different stages of the human digestion system is key factor in application of probiotic products. In our study, the effects of several polysaccharides such as alginate, κ-carrageenan, locust bean gum, gellan gum, xanthan gum and their combination with various prebiotic components (resistant starch, lactulose, lactosucrose) on encapsulation of probiotic Lactobacillus casei 01 strain were studied. Both regular and unregular beads with size distributions from 2 mm up to 5 mm were obtained. The encapsulation efficiencies varied from 64.4% up to 79%. Based on the texture's profiles, the capsules can be grouped into 5 clusters with squared Euclidean distance 3.5. Meanwhile, the starch-alginate and the lactosucrose LS55L – alginate beads were found to be the most stable and to have massive textural properties, whereas the gellan gum – xanthan gum and the chitosan coated alginate beads emerged as the softest. Encapsulation significantly improved the degree of gastric tolerance of probiotic cells even in the presence of pepsin. The INFOGEST in vitro digestion protocol was adapted to investigate the protection effects of different capsules. The highest survival (with loss rate of lower than 1 log CFU/g) was observed in the case of the cells encapsulated in starch-alginate beads. Moreover, the alginate microcapsules combined with lactosucrose LS55L also provided very promising shield for probiotics from the low pH of gastric conditions. Our findings suggest that incorporation of prebiotics into alginate-base encapsulation would be good idea in development of micro delivery systems that helps the survival of probiotics and their delivery to the target sites of action in human body.
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