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首页> 外文期刊>Beneficial Microbe >Exopolysaccharide from Bifidobacterium longum subsp longum 35624 (TM) modulates murine allergic airway responses
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Exopolysaccharide from Bifidobacterium longum subsp longum 35624 (TM) modulates murine allergic airway responses

机译:来自Bifidobacterium Longum Subsp Longum 35624(TM)的脱核糖调节鼠过敏气道反应

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摘要

Interactions between the host and the microbiota are thought to significantly influence immunological tolerance mechanisms at mucosal sites. We recently described that the loss of an exopolysaccharide (EPS) from Bifidobacterium longum 35624 - eliminated its protective effects in colitis and respiratory allergy murine models. Our goal was to investigate the immune response to purified EPS from B. longum 35624, determine if it has protective effects within the lung and identify the protective mechanisms. Isolated EPS from B. longum 35624 cultures was used for in vitro, ex vivo and in vivo studies. Human monocyte-derived dendritic cells (MDDCs) were used to investigate in vitro immunological responses to EPS. Cytokine secretion, expression of surface markers and signalling pathways were examined. The ovalbumin (OVA) respiratory allergy murine model was used to evaluate the in vivo immunomodulatory potential of EPS. In addition, interleukin (IL)-10 knockout (KO) mice and anti-Toll-like receptor (TLR)-2 blocking antibody were used to examine the underlying protective mechanisms of intranasal EPS administration. Stimulation of human MDDCs with EPS resulted in IL-10 secretion, but not proinflammatory cytokines. IL-10 secretion was TLR-2-dependent. Eosinophil recruitment to the lungs was significantly decreased by EPS intranasal exposure, which was associated with decreased expression of the Th2-associated markers C-C motif chemokine 11 (CCL11), C-C chemokine receptor type 3 (CCR3), IL-4 and IL-13. TLR-2-mediated IL-10 secretion was shown to be required for the reduction in eosinophils and Th2 cytokines. EPS-treatment reduced eosinophil recruitment within the lung in a respiratory inflammation mouse model, which is both TLR-2 and IL-10 mediated. EPS can be considered as a novel molecule potentially reducing the severity of chronic eosinophil-related airway disorders.
机译:宿主与微生物群之间的相互作用被认为显着影响粘膜位点的免疫耐受机制。我们最近描述了来自Bifidobacterium Longum 35624的外偶糖(EPS)的丧失 - 消除了结肠炎和呼吸过敏鼠模型的保护作用。我们的目标是研究来自B. Longum 35624的纯化EPS的免疫反应,确定它是否对肺部具有保护作用并确定保护机制。来自B. Longum 35624培养物的孤立的eps用于体外,例如exvivo和体内研究。使用人单核细胞衍生的树突状细胞(MDDC)来研究对EPS的体外免疫反应。检查了细胞因子分泌,表面标记和信号通路的表达。卵磷蛋白(OVA)呼吸道过敏鼠模型用于评估EPS的体内免疫调节潜力。此外,使用白细胞介素(IL)-10敲除(KO)小鼠和抗Toll样受体(TLR)-2阻断抗体来检查鼻内EPS给药的潜在保护机制。用EPS刺激人类MDDC导致IL-10分泌,但不促进细胞因子。 IL-10分泌是TLR-2依赖性。 EPS鼻内暴露的EPS鼻咽癌嗜酸性粒细胞募集显着降低,这与TH2相关标志物C-C-C-C CIMIF趋化因子11(CCL11),C-C趋化因子受体类型3(CCR3),IL-4和IL-13的表达有关。显示TLR-2介导的IL-10分泌,所以需要减少嗜酸性粒细胞和TH2细胞因子。 EPS治疗在呼吸炎症小鼠模型中降低肺部肺部植入,这是TLR-2和IL-10介导的。 EP可以被认为是一种新的分子,可能降低了与慢性嗜酸性粒细胞相关的呼吸道疾病的严重程度。

著录项

  • 来源
    《Beneficial Microbe》 |2018年第5期|共13页
  • 作者单位

    Univ Zurich Swiss Inst Allergy &

    Asthma Res SIAF Obere Str 22 CH-7270 Davos Switzerland;

    Alimentary Hlth Bldg 4400 Cork Airport Business Pk Kinsale Rd Cork Ireland;

    Univ Zurich Swiss Inst Allergy &

    Asthma Res SIAF Obere Str 22 CH-7270 Davos Switzerland;

    Univ Zurich Swiss Inst Allergy &

    Asthma Res SIAF Obere Str 22 CH-7270 Davos Switzerland;

    Univ Zurich Swiss Inst Allergy &

    Asthma Res SIAF Obere Str 22 CH-7270 Davos Switzerland;

    Univ Zurich Swiss Inst Allergy &

    Asthma Res SIAF Obere Str 22 CH-7270 Davos Switzerland;

    Jagiellonian Univ Med Coll Dept Pathophysiol Ul Sw Anny 12 PL-31008 Krakow Poland;

    Alimentary Hlth Pharma Davos Obere Str 22 CH-7270 Davos Switzerland;

    Alimentary Hlth Pharma Davos Obere Str 22 CH-7270 Davos Switzerland;

    Alimentary Hlth Bldg 4400 Cork Airport Business Pk Kinsale Rd Cork Ireland;

    BOKU Gregor Mendel Str 33 A-1180 Vienna Austria;

    Univ Coll Cork APC Microbiome Inst Western Rd Cork 1234 AB Ireland;

    Univ Zurich Swiss Inst Allergy &

    Asthma Res SIAF Obere Str 22 CH-7270 Davos Switzerland;

    Univ Zurich Swiss Inst Allergy &

    Asthma Res SIAF Obere Str 22 CH-7270 Davos Switzerland;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 微生物学;
  • 关键词

    microbiota; airway inflammation; immunomodulation; bacterial exopolysaccharide;

    机译:Microbiota;气道炎症;免疫调节;细菌外偶联;

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