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激活Toll样受体2的双歧杆菌菌株在猪肠道上皮细胞培养系统中对炎性细胞因子有不同调节作用:寻找新型抗炎免疫益生菌。

Toll-like receptor-2-activating bifidobacteria strains differentially regulate inflammatory cytokines in the porcine intestinal epithelial cell culture system: finding new anti-inflammatory immunobiotics.

作者信息

Fujie Hitomi, Villena Julio, Tohno Masanori, Morie Kyoko, Shimazu Tomoyuki, Aso Hisashi, Suda Yoshihito, Shimosato Takeshi, Iwabuchi Noriyuki, Xiao Jin-Zhong, Yaeshima Tomoko, Iwatsuki Keiji, Saito Tadao, Numasaki Muneo, Kitazawa Haruki

机构信息

Food Immunology Group, Graduate School of Agricultural Science, Tohoku University, Sendai, Japan.

出版信息

FEMS Immunol Med Microbiol. 2011 Oct;63(1):129-39. doi: 10.1111/j.1574-695X.2011.00837.x. Epub 2011 Jul 29.

Abstract

A total of 23 strains of bifidobacteria taxonomically belonging to five species were tested for their potent immunomodulatory effect using a combination of two methods: the NF-κB-reporter assay using a toll-like receptor 2-expressing transfectant (HEK(pTLR2) system) and the mitogenic assay using porcine Peyer's patches immunocompetent cells. Among the four preselected strains from different immunomodulatory groups, Bifidobacterium breve MCC-117 was able to efficiently modulate the inflammatory response triggered by enterotoxigenic Escherichia coli (ETEC) in a porcine intestinal epithelial (PIE) cell line. Moreover, using PIE cells and swine Peyer's patches immunocompetent cell co-culture system, we demonstrated that the immunoregulatory effect of B. breve MCC-117 was related to the capacity of the strain to influence PIE and immune cell interactions, leading to the stimulation of regulatory T cells. The results suggested that bifidobacteria that express high activity in both the HEK(pTLR2) and the mitogenic assays may behave like potential anti-inflammatory strains. The combination of the HEK(pTLR2) system, the evaluation of mitogenic activity and PIE cells will be of value for the development of new immunologically functional foods and feeds that could prevent inflammatory intestinal disorders. Although our findings should be proven in appropriate experiments in vivo, the results of the present work provide a scientific rationale for the use of B. breve MCC-117 to prevent ETEC-induced intestinal inflammation.

摘要

使用两种方法相结合,对总共23株分属于五个物种的双歧杆菌进行了强效免疫调节作用测试:一种是使用表达Toll样受体2的转染细胞(HEK(pTLR2)系统)的NF-κB报告基因检测法,另一种是使用猪派伊尔结免疫活性细胞的促有丝分裂检测法。在从不同免疫调节组预先选择的四株菌株中,短双歧杆菌MCC-117能够有效调节猪肠道上皮(PIE)细胞系中由产肠毒素大肠杆菌(ETEC)引发的炎症反应。此外,使用PIE细胞和猪派伊尔结免疫活性细胞共培养系统,我们证明了短双歧杆菌MCC-117的免疫调节作用与该菌株影响PIE细胞和免疫细胞相互作用的能力有关,从而导致调节性T细胞的刺激。结果表明,在HEK(pTLR2)检测法和促有丝分裂检测法中均表现出高活性的双歧杆菌可能具有潜在的抗炎菌株特性。HEK(pTLR2)系统、促有丝分裂活性评估和PIE细胞的组合对于开发能够预防肠道炎症性疾病的新型免疫功能性食品和饲料具有重要价值。尽管我们的研究结果应在适当的体内实验中得到证实,但本研究工作的结果为使用短双歧杆菌MCC-117预防ETEC诱导的肠道炎症提供了科学依据。

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