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Influence of co-encapsulation of Bifidobacterium animalis subsp. lactis Bb12 with inulin and ascorbic acid on its viability

机译:双歧杆菌胚胎共封装的影响。 乳酸Bb12与菊粉和抗坏血酸在其活力上

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Eight types of capsules containing Bifidobacterium animalis subsp. lactis Bb12 with addition of inulin and/or ascorbic acid were prepared by emulsion method with milk protein matrix or by extrusion method with alginate matrix. The size of protein and alginate capsules containing only Bb12 was 204 +/- 18 mu m and 1.7 +/- 0.1 mm, respectively. Addition of both inulin (1% w/w) and ascorbic acid (0.5% w/w) increased the size of alginate capsules. Both methods of encapsulation prevented efficiently the manifestation of Bb12 cell metabolic activity. All types of encapsulation provided higher resistance of Bb12 cells to the conditions of a model gastrointestinal tract (GIT) compared to free cells. The influence of co-encapsulation with inulin (1% w/w) and ascorbic acid (0.5% w/w) on viability in model GIT was not demonstrable in alginate capsules but it was significant in protein capsules. The most efficient was co-encapsulation in a protein matrix with 1% w/w inulin and 0.5% w/w ascorbic acid.
机译:含有含有双歧杆菌患者的八种类型的胶囊。通过用乳蛋白基质或通过藻酸盐基质的挤出方法制备加入菊粉和/或抗坏血酸的乳酸BB12。仅含有BB12的蛋白质和藻酸盐胶囊的尺寸分别为204 +/-18μm和1.7 +/- 0.1mm。添加菊粉(1%w / w)和抗坏血酸(0.5%w / w)增加了藻酸盐胶囊的尺寸。两种封装方法都有效地防止了BB12细胞代谢活性的表现。与游离细胞相比,所有类型的封装提供了BB12细胞对模型胃肠道(Git)的条件的较高电阻。共同包封与菊粉(1%w / w)和抗坏血酸(0.5%w / w)在模型git中的活力的影响在藻酸盐胶囊中不明显,但在蛋白质胶囊中显着。最有效的是在蛋白质基质中共同封装,其中1%w / w菊粉和0.5%w / w抗坏血酸。

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