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中国精品科技期刊2020
吴军林, 李曼莎, 柏建玲, 莫树平, 张菊梅, 吴清平. 益生菌副干酪乳杆菌R8双层包埋工艺研究[J]. 食品工业科技, 2019, 40(5): 7-11. DOI: 10.13386/j.issn1002-0306.2019.05.002
引用本文: 吴军林, 李曼莎, 柏建玲, 莫树平, 张菊梅, 吴清平. 益生菌副干酪乳杆菌R8双层包埋工艺研究[J]. 食品工业科技, 2019, 40(5): 7-11. DOI: 10.13386/j.issn1002-0306.2019.05.002
WU Jun-lin, LI Man-sha, BAI Jian-ling, MO Shu-ping, ZHANG Ju-mei, WU Qing-ping. Study on the Double-layer Embedment of Probiotic Lactobacillus paracasei R8[J]. Science and Technology of Food Industry, 2019, 40(5): 7-11. DOI: 10.13386/j.issn1002-0306.2019.05.002
Citation: WU Jun-lin, LI Man-sha, BAI Jian-ling, MO Shu-ping, ZHANG Ju-mei, WU Qing-ping. Study on the Double-layer Embedment of Probiotic Lactobacillus paracasei R8[J]. Science and Technology of Food Industry, 2019, 40(5): 7-11. DOI: 10.13386/j.issn1002-0306.2019.05.002

益生菌副干酪乳杆菌R8双层包埋工艺研究

Study on the Double-layer Embedment of Probiotic Lactobacillus paracasei R8

  • 摘要: 目的:以益生菌副干酪乳杆菌R8为研究对象,进行双层包埋关键工艺参数的研究,以提高菌体的稳定性,并实现在肠道定向释放的目的。方法:筛选冻干保护剂、益生元;优化微胶囊包埋材料海藻酸钠和固化液中氯化钙浓度;检测和分析制得的微胶囊在人工胃液和人工肠液中的释放特性。结果:筛选出的最佳冻干保护剂为20%全蛋液;最佳益生元为菊粉;最佳包埋液配方为:5%益生菌、2%菊粉、20%全蛋液,1%海藻酸钠;最佳固化液配方为2.5%氯化钙。所得微囊颗粒可耐受胃液破坏,在模拟肠环境中45 min内释放完毕,人工肠液中活菌数为原微囊活菌数的65.6%。全蛋液在制备工艺过程起到保护作用,并提高在储存过程中的稳定性;将菌体/蛋白质/海藻酸钠微胶囊进一步用壳聚糖材料进行覆膜,可实现在肠道定向释放。

     

    Abstract: Objective:Taking probiotic Lactobacillus paracasei R8 as the research object, the key technological parameters of double-layer embedding were studied to improve the stability of the bacteria and achieve the goal of directional release in the intestine. Methods:In this study, freeze-dried protectants and prebiotics were screened, the concentration of sodium alginate and calcium chloride were optimized, and the release characteristics of the microcapsules in artificial gastric juice and artificial intestinal juice were detected an analyzed. Results:The optimum freeze-drying protectant was 20% whole egg liquid, inulin was the best probiotic. The optimum embedding liquid formula was:5% probiotic, 2% inulin, 20% whole egg liquid, 1% sodium alginate. The optimum solidifying liquid formula was 2.5% calcium chloride. The microencapsulated particles were able to tolerate gastric juice damage and were released within 45 min in simulated intestinal environment. The number of viable bacteria in artificial intestinal fluid was 65.6% of the original microencapsulated bacteria.The whole egg liquid played a protective role in the preparation process and improves the stability in the storage process. The cell/protein/sodium alginate microcapsules could be further coated with chitosan material to realize directional release in the intestinal tract.

     

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