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Protective effect of probiotics on Salmonella infectivity assessed with combined in vitro gut fermentation-cellular models

机译:结合体外肠道发酵细胞模型评估益生菌对沙门氏菌感染性的保护作用

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摘要

BackgroundAccurate assessment of probiotics with targeted anti-Salmonella activity requires suitable models accounting for both, microbe-microbe and host-microbe interactions in gut environments. Here we report the combination of two original in vitro intestinal models closely mimicking the complex in vivo conditions of the large intestine. Effluents from continuous in vitro three-stage fermentation colonic models of Salmonella Typhimurium infection inoculated with immobilized child microbiota and Salmonella were directly applied to confluent mucus-secreting HT29-MTX cell layers. The effects of Salmonella, addition of two bacteriocinogenic strains, Bifidobacterium thermophilum RBL67 (thermophilicin B67) and Escherichia coli L1000 (microcin B17), and inulin were tested on Salmonella growth and interactions with epithelial cell layers. Salmonella adhesion and invasion were investigated and epithelial integrity assessed by transepithelial electrical resistance (TER) measurements and confocal microscopy observation. Data from complex effluents were compared with pure Salmonella cultures.
机译:背景准确评估具有靶向抗沙门氏菌活性的益生菌需要合适的模型,说明肠道环境中微生物与微生物以及宿主与微生物之间的相互作用。在这里,我们报告了两个原始的体外肠道模型的组合,这些模型紧密模拟了大肠的复杂体内条件。将接种了固定化儿童微生物群和沙门氏菌的鼠伤寒沙门氏菌感染的连续体外三阶段发酵结肠模型的流出物直接应用于融合粘液分泌的HT29-MTX细胞层。测试了沙门氏菌,沙门氏菌生长以及与上皮细胞层相互作用的两种沙门氏菌菌株嗜热双歧杆菌RBL67(嗜热菌素B67)和大肠杆菌L1000(微素B17)以及菊粉的作用。沙门氏菌粘附和侵袭进行了调查,并通过上皮电阻(TER)测量和共聚焦显微镜观察评估上皮完整性。将复杂废水的数据与纯沙门氏菌培养物进行了比较。

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