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益生菌芽孢杆菌增强仔猪肠道上皮细胞屏障和免疫功能。

Probiotic Bacillus enhance the intestinal epithelial cell barrier and immune function of piglets.

机构信息

1 Key Laboratory of Molecular Animal Nutrition, Ministry of Education, Institute of Feed Science, College of Animal Science, Zhejiang University, 310058 Hangzhou, China P.R.

2 National Animal Husbandry Service, Building 20, Maizidian St, Chaoyang District, 100125 Beijing, China P.R.

出版信息

Benef Microbes. 2018 Sep 18;9(5):743-754. doi: 10.3920/BM2017.0142. Epub 2018 Aug 13.

Abstract

Bacillus is widely used in the livestock industry. This study was designed to evaluate the effects of probiotic Bacillus amyloliquefaciens SC06 (Ba), originally isolated from soil, in piglets diet as an alternative to antibiotics (aureomycin), mainly on intestinal epithelial barrier and immune function. Ninety piglets were divided into three groups: G1 (containing 150 mg/kg aureomycin in the diet); G2 (containing 75 mg/kg aureomycin and 1×10 cfu/kg Ba in the diet); G3 (containing 2×10 cfu/kg Ba in the diet without any antibiotics). The results showed that, compared with the antibiotic group (G1), villus length, crypt depth and villus length/crypt depth ratio of intestine significantly increased in the G2 and G3 groups. In addition, intestinal villi morphology, goblet-cell number, mitochondria structure and tight junction proteins of intestinal epithelial cells in G2 and G3 were better than in G1. The relative gene expression of intestinal mucosal defensin-1, claudin3, claudin4, and human mucin-1 in G3 was significantly lower, while the expression of villin was significantly higher than in the antibiotic group. Probiotic Ba could significantly decrease serum interferon (IFN)-α, IFN-γ, interleukin (IL)-1β, and IL-4 levels, whereas increase tumour necrosis factor (TNF)-α and IL-6 secretion. Ba could also significantly decrease cytokines TNF-α, IFN-γ, IL-1β, and IL-4 level in liver, whereas it significantly increased IFN-α. Furthermore, replacing antibiotics with Ba also significantly down-regulated gene expression of TNF and IL-1α in intestinal mucosa, but up-regulated IL-6 and IL-8 transcription. Dietary addition of Ba could significantly reduce the gene expression of nuclear factor kappa beta (NFκB)-p50 and Toll-like receptor (TLR)6, while there was no significant difference for that of myeloid differentiation primary response 88, TNF receptor-associated factor-6, nucleotide-binding oligomerisation domain-containing protein 1, TLR2, TLR4, and TLR9. Taken together, our findings demonstrated that probiotic Ba could increase the intestinal epithelial cell barrier and immune function by improving intestinal mucosa structure, tight junctions and by activating the TLRs signalling pathway.

摘要

芽孢杆菌在畜牧业中得到广泛应用。本研究旨在评估益生菌解淀粉芽孢杆菌 SC06(Ba)对仔猪的影响,该菌株最初从土壤中分离,作为抗生素(土霉素)的替代品,主要作用于肠道上皮屏障和免疫功能。将 90 头仔猪分为三组:G1(日粮中添加 150mg/kg 土霉素);G2(日粮中添加 75mg/kg 土霉素和 1×10 cfu/kg Ba);G3(日粮中添加 2×10 cfu/kg Ba,不添加任何抗生素)。结果表明,与抗生素组(G1)相比,G2 和 G3 组的肠绒毛长度、隐窝深度和绒毛长度/隐窝深度比值显著增加。此外,G2 和 G3 组的肠绒毛形态、杯状细胞数量、线粒体结构和肠上皮细胞紧密连接蛋白均优于 G1 组。G3 组肠道黏膜防御素-1、闭合蛋白 3、闭合蛋白 4 和人粘蛋白-1 的相对基因表达显著降低,而绒毛蛋白的表达显著高于抗生素组。益生菌 Ba 可显著降低血清干扰素(IFN)-α、IFN-γ、白细胞介素(IL)-1β和 IL-4 水平,而增加肿瘤坏死因子(TNF)-α和 IL-6 的分泌。Ba 还可显著降低肝脏中 TNF-α、IFN-γ、IL-1β和 IL-4 的细胞因子水平,而显著增加 IFN-α。此外,用 Ba 替代抗生素也可显著下调肠道黏膜中 TNF 和 IL-1α 的基因表达,但上调 IL-6 和 IL-8 的转录。日粮中添加 Ba 可显著降低核因子 kappa beta(NFκB)-p50 和 Toll 样受体(TLR)6 的基因表达,而髓样分化初级反应 88、TNF 受体相关因子-6、核苷酸结合寡聚化结构域包含蛋白 1、TLR2、TLR4 和 TLR9 的表达无显著差异。综上所述,本研究结果表明,益生菌 Ba 通过改善肠道黏膜结构、紧密连接和激活 TLRs 信号通路,增加肠道上皮细胞屏障和免疫功能。

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