对弯曲杆菌的定植抗性难题:常规小鼠的肠道微生物组成不能阻止大肠弯曲杆菌的感染。

Claudia Genger, Sigri Kløve, Soraya Mousavi, Stefan Bereswill, Markus M Heimesaat
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引用次数: 7

摘要

小鼠肠道菌群的生理定植抗性使常规小鼠免受空肠弯曲杆菌感染。在目前的研究中,我们探讨了这是否也适用于大肠弯曲杆菌。经口施用后,大肠杆菌可在常规定植的小鼠胃肠道内稳定建立,直至攻毒后3周。在使用弯曲杆菌之前和之后,肠道菌群组成都没有任何变化。大肠杆菌,而非空肠梭菌的攻击与结肠上皮细胞明显的再生反应有关,而与凋亡反应无关。在大肠杆菌与空肠杆菌应用后的第21天,小鼠在结肠黏膜和固有层中表现出更高数量的适应性免疫细胞,包括t淋巴细胞和调节性t细胞,并伴随着大肠干扰素-γ (IFN-γ)浓度高于后者,但与幼稚水平相当。弯曲杆菌导致脾脏IFN-γ、肿瘤坏死因子-α (TNF-α)和IL-6浓度降低,而大肠杆菌仅在第21天导致脾脏IL-12p70分泌增加。在任何弯曲杆菌组中,脾脏和血清样本中IL-10浓度均下降。综上所述,肠道共生菌群可预防小鼠空肠梭菌感染,但不能预防大肠杆菌感染。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

The conundrum of colonization resistance against Campylobacter reloaded: The gut microbota composition in conventional mice does not prevent from Campylobacter coli infection.

The conundrum of colonization resistance against Campylobacter reloaded: The gut microbota composition in conventional mice does not prevent from Campylobacter coli infection.

The conundrum of colonization resistance against Campylobacter reloaded: The gut microbota composition in conventional mice does not prevent from Campylobacter coli infection.

The conundrum of colonization resistance against Campylobacter reloaded: The gut microbota composition in conventional mice does not prevent from Campylobacter coli infection.

The physiological colonization resistance exerted by the murine gut microbiota prevents conventional mice from Campylobacter jejuni infection. In the present study we addressed whether this also held true for Campylobacter coli. Following peroral application, C. coli as opposed to C. jejuni could stably establish within the gastrointestinal tract of conventionally colonized mice until 3 weeks post-challenge. Neither before nor after either Campylobacter application any changes in the gut microbiota composition could be observed. C. coli, but not C. jejuni challenge was associated with pronounced regenerative, but not apoptotic responses in colonic epithelia. At day 21 following C. coli versus C. jejuni application mice exhibited higher numbers of adaptive immune cells including T-lymphocytes and regulatory T-cells in the colonic mucosa and lamina propria that were accompanied by higher large intestinal interferon-γ (IFN-γ) concentrations in the former versus the latter but comparable to naive levels. Campylobacter application resulted in decreased splenic IFN-γ, tumor necrosis factor-α (TNF-α), and IL-6 concentrations, whereas IL-12p70 secretion was increased in the spleens at day 21 following C. coli application only. In either Campylobacter cohort decreased IL-10 concentrations could be measured in splenic and serum samples. In conclusion, the commensal gut microbiota prevents mice from C. jejuni, but not C. coli infection.

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