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Adhesive interactions between milk fat globule membrane and Lactobacillus rhamnosus GG inhibit bacterial attachment to Caco-2 TC7 intestinal cell

机译:乳脂球膜与乳杆菌菌乳菌蛋白酶Gg之间的粘合剂相互作用抑制了Caco-2 TC7肠细胞的细菌附着物

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摘要

Milk is the most popular matrix for the delivery of lactic acid bacteria, but little is known about how milk impacts bacterial functionality. Here, the adhesion mechanisms of Lactobacillus rhamnosus GG (LGG) surface mutants to a milk component, the milk fat globule membrane (MFGM), were compared using atomic force microscopy (AFM). AFM results revealed the key adhesive role of the LGG SpaCBA pilus in relation to MFGM. A LGG mutant without exopolysaccharides but with highly exposed pili improved the number of adhesive events between LGG and MFGM compared to LGG wild type (WT). In contrast, the number of adhesive events decreased significantly for a LGG mutant without SpaCBA pill. Moreover, the presence of MFGM in the dairy matrix was found to decrease significantly the bacterial attachment ability to Caco-2 TC7 cells. This work thus demonstrated a possible competition between LGG adhesion to MFGM and to epithelial intestinal cells. This competition could negatively impact the adhesion capacity of LGG to intestinal cells in vivo, but requires further substantiation. (C) 2018 Elsevier B.V. All rights reserved.
机译:牛奶是乳酸细菌的递送最受欢迎的基质,但对于牛奶如何影响细菌功能而言毫无疑问。这里,使用原子力显微镜(AFM)比较乳酸乳杆菌GG(LGG)表面突变体与乳成分,乳脂球膜(MFGM)的粘附机制。 AFM结果揭示了LGG Spacba菌落与MFGM相关的关键粘合作用。没有潜水糖的LGG突变体,但具有高暴露的PILI,与LGG野生型(WT)相比,改善了LGG和MFGM之间的粘合事件的数量。相反,没有SpacBA丸的LGG突变体,粘合事件的数量显着降低。此外,发现乳制品中MFGM的存在明显降低了Caco-2 TC7细胞的细菌附着能力。因此,这项工作证明了LGG粘附到MFGM和上皮肠细胞之间的可能竞争。该竞争可能对体内LGG到肠细胞的粘附能力产生负面影响,但需要进一步证实。 (c)2018 Elsevier B.v.保留所有权利。

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