首页> 外文期刊>Journal of applied microbiology >Investigation of the impact of feeding Lactobacillus plantarum CRL 1815 encapsulated in microbially derived polymers on the rat faecal microbiota.
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Investigation of the impact of feeding Lactobacillus plantarum CRL 1815 encapsulated in microbially derived polymers on the rat faecal microbiota.

机译:调查了饲喂微生物衍生的聚合物封装的植物乳杆菌CRL 1815对大鼠粪便微生物群的影响。

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Aims. The aim of this study was to evaluate the impact of the administration of microencapsulated Lactobacillus plantarum CRL 1815 with two combinations of microbially derived polysaccharides, xanthan : gellan gum (1%:0.75%) and jamilan : gellan gum (1%:1%), on the rat faecal microbiota. Methods and Results. A 10-day feeding study was performed for each polymer combination in groups of 16 rats fed either with placebo capsules, free or encapsulated Lact. plantarum or water. The composition of the faecal microbiota was analysed by fluorescence in situ hybridization and temporal temperature gradient gel electrophoresis. Degradation of placebo capsules was detected, with increased levels of polysaccharide-degrading bacteria. Xanthan : gellan gum capsules were shown to reduce the Bifidobacterium population and increase the Clostridium histolyticum group levels, but not jamilan : gellan gum capsules. Only after administration of jamilan : gellan gum-probiotic capsules was detected a significant increase in Lactobacillus-Enterococcus group levels compared to controls (capsules and probiotic) as well as two bands were identified as Lact. plantarum in two profiles of ileum samples. Conclusions. Exopolysaccharides constitute an interesting approach for colon-targeted delivery of probiotics, where jamilan : gellan gum capsules present better biocompatibility and promising results as a probiotic carrier. Significance and Impact of Study. This study introduces and highlights the importance of biological compatibility in the encapsulating material election, as they can modulate the gut microbiota by themselves, and the use of bacterial exopolysaccharides as a powerful source of new targeted-delivery coating material.
机译:目的这项研究的目的是评估微囊化植物乳杆菌CRL 1815与微生物衍生多糖的两种组合(黄原胶:吉兰糖胶(1%:0.75%)和贾米兰:吉兰糖胶)的影响。 (1%:1%),在大鼠粪便菌群上。方法和结果。对每只聚合物组合进行了为期10天的喂养研究,每组16只大鼠均接受了安慰剂胶囊(游离或封装的乳酸)。植物或水。通过荧光原位杂交和瞬时温度梯度凝胶电泳分析了粪便微生物群的组成。检测到安慰剂胶囊的降解以及多糖降解细菌水平的提高。黄原胶:吉兰糖胶胶囊可减少双歧杆菌的数量,增加溶组织梭状芽孢杆菌的水平,但jamilan:吉兰胶胶胶囊则不能。仅在施用贾米兰:吉兰糖胶益生菌胶囊后,与对照(胶囊和益生菌)相比,乳酸杆菌-肠球菌组水平显着增加,并且两个条带被确定为乳酸。回肠样品的两个轮廓中的植物风。结论。胞外多糖构成结肠靶向益生菌递送的一种有趣方法,其中jamilan:吉兰糖胶胶囊作为益生菌载体具有更好的生物相容性和有希望的结果。研究的意义和影响。这项研究介绍并强调了生物相容性在封装材料选择中的重要性,因为它们可以自行调节肠道菌群,并利用细菌胞外多糖作为新型靶向递送涂层材料的有力来源。

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