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Association of Lactobacillus spp. with Peyer's Patches in Mice

机译:乳杆菌属协会。与Peyer的老鼠补丁

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Sixteen strains of Lactobacillus isolated from humans, mice, and food products were screened for their capacity to associate with Peyer's patches in mice. In preliminary experiments, in vitro binding to tissue pieces was assessed by scanning electron microscopy, and it was demonstrated qualitatively that 5 of the 16 strains showed some affinity for the Peyer's patches, irrespective of their association with the nonlymphoid intestinal tissue. Lactobacillus fermentum KLD was selected for further study, since, in addition to its intrinsically high adhesion rate, this organism was found to exhibit a preferential binding to the follicle-associated epithelium of the Peyer's patches compared with its level of binding to the mucus-secreting regions of the small intestine. Quantitative assessment of scanning electron micrographs of tissue sections which had been incubated with L. fermentum KLD or a nonbinding control strain, Lactobacillus delbruckii subsp.bulgaricus, supported these observations, since a marked difference in adhesion was noted (P < 0.05). This preferential association of strain KLD with the Peyer's patches was also confirmed with radiolabeled lactobacilli incubated with intestinal tissue in the in vitro adhesion assay. Direct recovery of L. fermentum KLD from washed tissue following oral dosing of mice revealed a distinct association (P < 0.05) between this organism and the Peyer's patch tissue. In contrast, L. delbruckii subsp. bulgaricus showed negligible binding to both tissue types in both in vitro and in vivo adhesion assays. It was concluded that L. fermentum KLD bound preferentially to Peyer's patches of BALB/c mice.
机译:从人,小鼠和食品中分离出的16株乳酸杆菌菌株被筛选出与小鼠Peyer斑块相关的能力。在初步实验中,通过扫描电子显微镜评估了与组织碎片的体外结合,并且定性地证明了16个菌株中的5个对Peyer斑具有一定的亲和力,无论它们与非淋巴肠组织的关系如何。选择发酵乳杆菌 KLD进行进一步研究,因为除了其固有的高粘附率外,还发现该生物体与淋巴结膜的卵泡相关上皮相比具有优先结合能力与小肠粘液分泌区的结合。定量培养的组织切片的扫描电子显微镜照片已与 L孵育。 Fermentum KLD或无结合力的控制菌株德拉克乳杆菌亚种 bulgaricus 支持这些观察结果,因为注意到粘附力有明显差异( P < / em> <0.05)。在体外粘附试验中,与肠道组织一起温育的放射性标记乳杆菌也证实了菌株KLD与Peyer斑的这种优先结合。直接恢复 L。小鼠口服给药后,从洗过的组织中提取的发酵菌KLD揭示了该生物体与Peyer's斑块组织之间的明显关联( P <0.05)。相反, L。 delbruckii 子空间在体外和体内粘附试验中, bulgaricus 对两种组织的结合作用均微不足道。结论是 L。 Fermentum KLD优先与BALB / c小鼠的Peyer斑块结合。

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