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詹氏乳杆菌TL2937对猪肠道上皮细胞免疫转录组反应的调节作用

Modulation of porcine intestinal epitheliocytes immunetranscriptome response by Lactobacillus jensenii TL2937.

作者信息

Kobayashi H, Albarracin L, Sato N, Kanmani P, Kober A K M H, Ikeda-Ohtsubo W, Suda Y, Nochi T, Aso H, Makino S, Kano H, Ohkawara S, Saito T, Villena J, Kitazawa H

机构信息

1 Food and Feed Immunology Group, Laboratory of Animal Products Chemistry, Graduate School of Agricultural Science, Tohoku University, 1-1 Amamiya-machi, Tsutsumidori, Aoba-ku, Sendai, Miyagi, 981-8555, Japan.

2 Livestock Immunology Unit, International Education and Research Center for Food and Agricultural Immunology (CFAI), Graduate School of Agricultural Science, Tohoku University, 1-1 Amamiya-machi, Tsutsumidori, Aoba-ku, Sendai, Miyagi, 981-8555, Japan.

出版信息

Benef Microbes. 2016 Nov 30;7(5):769-782. doi: 10.3920/BM2016.0095. Epub 2016 Nov 8.

Abstract

In order to evaluate probiotic strains applicable for the beneficial immunomodulation of the porcine gut (immunobiotics), we previously developed a porcine intestinal epitheliocyte cell line (PIE cells). Here, transcriptomic studies using PIE cells were performed considering that this information would be valuable for understanding the mechanisms involved in the protective activity of the immunobiotic strain Lactobacillus jensenii TL2937 against intestinal inflammatory damage in pigs. In addition, those studies would provide criteria for selecting biomarkers for the screening of new immunobiotic strains. We performed microarray analysis to investigate the transcriptomic response of PIE cells to the challenge with heat-stable enterotoxigenic Escherichia coli (ETEC) pathogen-associated molecular patterns (PAMPs) and, the changes induced by L. jensenii TL2937 in that response. The approach allowed us to obtain a global overview of the immune genes involved in the response of PIE cells to heat-stable ETEC PAMPs. We observed that L. jensenii TL2937 differently modulated gene expression in ETEC PAMPs-challenged PIE cells. Microarray and RT-PCR analysis indicated that the most remarkable changes in PIE cells transcriptomic profile after heat-stable ETEC PAMPs challenge were observed in chemokines, adhesion molecules, complement and coagulation cascades factors. In addition, an anti-inflammatory effect triggered by TL2937 strain in PIE cells was clearly demonstrated. The decrease in the expression of chemokines (CCL8, CXCL5, CXCL9, CXCL10, and CXCL11), complement (C1R, C1S, C3, and CFB), and coagulation factors (F3) by L. jensenii TL2937 supports our previous reports on the immunoregulatory effect of this strain. These results provided clues for the better understanding of the mechanism underlying host-immunobiotic interaction in the porcine host. The comprehensive transcriptomic profiles of PIE cells provided by our analyses successfully identified a group of genes, which could be used as prospective biomarkers for the screening and evaluation of new anti-inflammatory immunobiotics for the prevention of inflammatory intestinal disorders in pigs.

摘要

为了评估适用于猪肠道有益免疫调节的益生菌菌株(免疫生物制剂),我们之前开发了一种猪肠道上皮细胞系(PIE细胞)。在此,考虑到这些信息对于理解免疫生物制剂菌株詹氏乳杆菌TL2937对猪肠道炎症损伤的保护活性所涉及的机制具有重要价值,我们利用PIE细胞进行了转录组学研究。此外,这些研究将为筛选新的免疫生物制剂菌株的生物标志物提供标准。我们进行了微阵列分析,以研究PIE细胞对热稳定产肠毒素大肠杆菌(ETEC)病原体相关分子模式(PAMP)刺激的转录组反应,以及詹氏乳杆菌TL2937在该反应中引起的变化。该方法使我们能够全面了解参与PIE细胞对热稳定ETEC PAMP反应的免疫基因。我们观察到詹氏乳杆菌TL2937对ETEC PAMP刺激的PIE细胞中的基因表达有不同的调节作用。微阵列和RT-PCR分析表明,热稳定ETEC PAMP刺激后,PIE细胞转录组谱中最显著的变化出现在趋化因子、黏附分子、补体和凝血级联因子中。此外,还清楚地证明了TL2937菌株在PIE细胞中引发的抗炎作用。詹氏乳杆菌TL2937使趋化因子(CCL8、CXCL5、CXCL9、CXCL10和CXCL11)、补体(C1R、C1S、C3和CFB)和凝血因子(F3)的表达降低,这支持了我们之前关于该菌株免疫调节作用的报道。这些结果为更好地理解猪宿主中宿主 - 免疫生物制剂相互作用的潜在机制提供了线索。我们的分析提供的PIE细胞全面转录组谱成功鉴定出一组基因,这些基因可作为筛选和评估预防猪炎症性肠道疾病的新型抗炎免疫生物制剂的潜在生物标志物。

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