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乳酸菌对 HT-29 细胞内大肠杆菌内化的抑制作用。

Inhibitory potential of lactobacilli against Escherichia coli internalization by HT 29 cells.

机构信息

Institute of Animal Physiology, Slovak Academy of Sciences, Šoltésovej 4/6, Košice, 04001, Slovakia.

出版信息

Folia Microbiol (Praha). 2012 Jul;57(4):269-72. doi: 10.1007/s12223-012-0122-9. Epub 2012 Apr 17.

Abstract

A quantitative fluorescent in situ hybridization method was employed to evaluate the competitive inhibitory effect of three Lactobacillus strains (Lactobacillus reuteri, Lactobacillus gasseri, and Lactobacillus plantarum) against Escherichia coli internalization in a model system of HT 29 cells. Furthermore, aggregation and adhesion abilities of the Lactobacillus strains were examined. All lactobacilli were able to attach to the HT 29 cells and aggregate with pathogens; however, the adhesion and aggregation degree was strain-dependent. L. reuteri possessed a high capacity of adhesion (6.80 ± 0.63; log CFU ± SEM per well), whereas lower capacities were expressed by L. gasseri (4.52 ± 0.55) and L. plantarum (4.90 ± 0.98). Additionally, L. reuteri showed the rapid or normal ability to aggregate with selected E. coli in comparison with remaining two lactobacilli, which showed only slow or negative aggregative reaction. Internalization of E. coli into the cell lines was markedly suppressed by L. reuteri, while L. gasseri and L. plantarum caused only a minimum anti-invasion effect. The fact that L. reuteri in our experiments showed an outstanding potential for adhering to the colon epithelial cell line, compared with the rest strains, suggested that one of the possible mechanisms of preventing pathogen adhesion and invasion is simple competitions at certain receptors and capability to block receptor binding sites, or that an avid interaction between L. reuteri and the host cell might be modulating intracellular events responsible for the E. coli internalization. Moreover, L. reuteri exhibited a strong ability to aggregate with E. coli, which could be another limiting factor of pathogen invasion.

摘要

采用荧光原位杂交技术评价了 3 种乳杆菌(罗伊氏乳杆菌、加氏乳杆菌和植物乳杆菌)在 HT-29 细胞模型中对内毒素肠杆菌内化的竞争抑制作用。此外,还检测了乳杆菌的聚集和黏附能力。所有乳杆菌都能黏附在 HT-29 细胞上,并与病原体聚集,但黏附程度和聚集程度取决于菌株。L. reuteri 具有较高的黏附能力(6.80±0.63;每个孔的对数 CFU±SEM),而 L. gasseri 和 L. plantarum 的黏附能力较低(4.52±0.55 和 4.90±0.98)。此外,与其余两种乳杆菌相比,L. reuteri 与选定的大肠杆菌快速或正常聚集,而其余两种乳杆菌仅显示缓慢或阴性聚集反应。E. coli 内化到细胞系中被 L. reuteri 显著抑制,而 L. gasseri 和 L. plantarum 仅引起最小的抗入侵作用。与其余菌株相比,L. reuteri 在实验中显示出对结肠上皮细胞系具有卓越的黏附潜力,这表明预防病原体黏附和入侵的一种可能机制是在某些受体上的简单竞争以及阻止受体结合位点的能力,或者 L. reuteri 与宿主细胞之间的强烈相互作用可能调节负责 E. coli 内化的细胞内事件。此外,L. reuteri 与大肠杆菌具有很强的聚集能力,这可能是病原体入侵的另一个限制因素。

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