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中文摘要
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描述(由申请人提供):粘膜表面通常是宿主、正常植物群和病原菌之间的第一界面。粘膜上皮参与维持与正常植物群的内环境平衡,并构成抵抗病原体的粘膜屏障。响应细菌感染的一种宿主策略是通过限制必需营养素和金属(如铁和锌)的可用性来抑制细菌生长。金属抑制反应在肠道粘膜中对病原体的反应和在微生物群动力学中的作用还不清楚。我们的长期目标是了解上皮细胞通过与常驻微生物群相互作用并对粘膜病原体做出反应而构成粘膜屏障的机制。本申请的目的是研究金属在肠道粘膜中的作用,以及它是如何响应细菌感染而被触发的。我们的中心假设是,在响应细菌感染肠上皮细胞分泌脂质运载蛋白-2和钙卫蛋白,两种抗菌肽,螯合铁和锌,分别。虽然粘膜病原体对金属抑制具有抗性并因此定殖于肠道,但常驻微生物群的生长受到抑制。我们计划通过追求以下具体目标来测试我们的假设并实现本申请的目标:1.确定在细菌感染期间如何在肠粘膜中诱导金属滞留。我们将测试的假设,脂质运载蛋白-2和钙卫蛋白分泌的上皮细胞在细菌感染期间响应IL-17和IL-22的刺激。2.确定细菌感染期间肠道粘膜中金属抑制反应的作用。我们将检验这一假设,即肠道中对脂质运载蛋白-2介导的铁饥饿和钙卫蛋白介导的锌饥饿的抵抗促进炎症期间的细菌定植。拟议的工作是创新的,因为它建立了新的概念上皮细胞的作用,作为粘膜屏障的组成部分,在其动态与病原体和居民微生物群。我们期望这项研究的结果将确定细菌感染期间金属抑制反应的作用。这一结果将是重要的,因为它将有助于理解复杂的相互作用,在粘膜表面之间的上皮细胞,粘膜和病原体。粘膜上皮参与维持与正常植物群的内环境平衡,并构成抵抗病原体的粘膜屏障。响应细菌感染的一种宿主策略是通过限制必需营养素和金属(如铁和锌)的可用性来抑制细菌生长。金属抑制反应在肠道粘膜中对病原体的反应和在微生物群动力学中的作用还不清楚。
英文摘要
DESCRIPTION (provided by applicant): The mucosal surfaces are often the first interface between the host, the normal flora, and pathogenic bacteria. The mucosal epithelium is involved in maintaining the homeostasis with the normal flora and in constituting the mucosal barrier against pathogens. One host strategy in response to bacterial infection is to inhibit bacterial growth by limiting availability of essential nutrients and metals, like iron and zinc. The role of metal withholding responses in the gut mucosa in response to pathogens and in the dynamics with the microbiota is not well understood. Our long-range goal is to understand the mechanisms by which epithelial cells constitute the mucosal barrier by interacting with the resident microbiota and responding to mucosal pathogens. The objectives of this application are to investigate the role of metal withholding in the gut mucosa and how it is triggered in response to bacterial infection. Our central hypothesis is that in response to bacterial infection intestinal epithelial cells secrete lipocalin-2 and calprotectin, two antimicrobial peptides that sequester iron and zinc, respectively. While mucosal pathogens are resistant to metal withholding and thus colonize the gut, growth of the resident microbiota is suppressed. We plan to test our hypothesis and fulfill the objectives of this application by pursuing the following specific aims: 1. Determine how metal withholding is induced in the gut mucosa during bacterial infections. We will test the hypothesis that lipocalin-2 and calprotectin are secreted by epithelial cells in response to IL-17 and IL-22 stimulation during bacterial infection. 2. Determine the role of metal withholding responses in the gut mucosa during bacterial infections. We will test the hypothesis that resistance to lipocalin-2-mediated iron starvation and calprotectin-mediated zinc starvation in the gut facilitate bacterial colonization during inflammation. The proposed work is innovative because it establishes new concepts on the role of the epithelium as component of the mucosal barrier in its dynamics with pathogens and the resident microbiota. It is our expectation that the outcome of this study will identify the role of metal withholding responses during bacterial infections. This outcome will be significant because it will contribute to understanding the complex interplay at the mucosal surfaces between epithelial cells, commensals and pathogens. The mucosal epithelium is involved in maintaining the homeostasis with the normal flora and in constituting the mucosal barrier against pathogens. One host strategy in response to bacterial infection is to inhibit bacterial growth by limiting availability of essential nutrients and metals, like iron and zinc. The role of metal withholding responses in the gut mucosa in response to pathogens and in the dynamics with the microbiota is not well understood.
期刊论文(3)
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会议论文
DOI: 10.1016/j.cyto.2009.07.005
发表时间: 2009-10
期刊: CYTOKINE
影响因子: 3.8
作者: [Liu, Janet Z., Pezeshki, Milad, Raffatellu, Manuela]
通讯作者: Raffatellu, Manuela
DOI: 10.1007/s10875-010-9368-7
发表时间: 2010-03
期刊: JOURNAL OF CLINICAL IMMUNOLOGY
影响因子: 9.1
作者: [Blaschitz, Christoph, Raffatellu, Manuela]
通讯作者: Raffatellu, Manuela
Nutritional immunity during Salmonella infection
The new chemokine CCL28 and its role during Salmonella infection
Nutritional immunity during Salmonella infection
Nutritional immunity during Salmonella infection
国内基金
海外基金
Segmented Filamentous Bacteria激活宿主免疫系统抑制其拮抗菌 Enterobacteriaceae维持菌群平衡及其机制研究
  • 批准号:
    81971557
  • 项目类别:
    面上项目
  • 资助金额:
    65.0万元
  • 批准年份:
    2019
  • 负责人:
    毛开睿
  • 依托单位:
电缆细菌(Cable bacteria)对水体沉积物有机污染的响应与调控机制