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Lactobacillus fermentum 3872 as a potential tool for combatting Campylobacter jejuni infections

机译:乳酸杆菌3872作为对抗Jejuni感染弯曲杆菌感染的潜在工具

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摘要

Due to the global spread of multidrug resistant pathogenic bacteria, alternative approaches in combating infectious diseases are required. One such approach is the use of probiotics. Lactobacillus fermentum 3872 is a promising probiotic bacterium producing a range of antimicrobial compounds, such as hydrogen peroxide and lactic acid. In addition, previous studies involving genome sequencing and analysis of L. fermentum 3872 allowed the identification of a gene encoding a cell surface protein referred to as collagen binding protein (CBP) (not found in other strains of the species, according to the GenBank database), consisting of a C-terminal cell wall anchor domain (LPXT), multiple repeats of 'B domains' that form stalks presenting an "A domain" required for adhesion. In this study, we found that the CBP of L. fermentum 3872 binds to collagen I present on the surface of the epithelial cells lining the gastrointestinal tract. Moreover, we found that this host receptor is also used for attachment by the major gastrointestinal pathogen, Campylobacter jejuni. Furthermore, we identified an adhesin involved in such interaction and demonstrated that both L. fermentum 3872 and its CBP can inhibit binding of this pathogen to collagen I. Combined with the observation that C. jejuni growth is affected in the acidic environment produced by L. fermentum 3872, the finding provides a good basis for further investigation of this strain as a potential tool for fighting Campylobacter infections.
机译:由于多药抗性致病细菌的全球传播,需要解决传染病的替代方法。一种这样的方法是使用益生菌。乳酸杆菌3872是一种有前途的益生菌,其产生一系列抗微生物化合物,例如过氧化氢和乳酸。此外,涉及L.Fermentum 3872的基因组测序和分析的先前研究允许鉴定编码细胞表面蛋白的基因,该基因在Genbank数据库的情况下(根据物种的其他菌株中未发现) )由C末端细胞壁锚固结构域(LPXT)组成,形成迹象表所需的“A域”所需的“B域”的多重重复。在这项研究中,我们发现L.Fermentum 3872的CBP与含有胃肠道衬里的上皮细胞表面上存在的胶原蛋白。此外,我们发现该宿主受体也用于主要胃肠道病原体,巨津植物弯曲曲杆菌的附着。此外,我们鉴定了涉及这种相互作用的粘合剂,并证明了L.Fermentum 3872及其CBP可以抑制该病原体与胶原I的结合。结合C.Jejuni生长受到L的酸性环境影响的观察结果。 FERMENTUM 3872,该发现为进一步调查这种应变作为用于战斗弯曲杆菌感染的潜在工具提供了良好的基础。

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