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Characterizing Type I Interferon Mediated Inflammatory Response During Acute and Chronic Infections.

机译:在急性和慢性感染期间表征I型干扰素介导的炎症反应。

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摘要

During the course of infectious disease, the immune system generates a robust inflammatory response in order to eradicate the invading pathogen and restore tissue homeostasis. An essential feature of this process is the ability of the host to provide an anti-microbial response while preventing unnecessary collateral tissue damage. Many pro-inflammatory pathways, which contribute to host defense against infectious disease have been identified; however, the pathways that regulate and resolve the pro-inflammatory response preventing tissue injury are not well understood. To study the mechanisms by which the acute inflammatory response is resolved, we studied the Type I Interferon (IFN) pathway, a hallmark feature of acute phase immune response to viral infection, where induction of interferon stimulatory genes (ISGs) is required for host defense. In contrast, a strong type I IFN response often correlates with higher bacterial virulence and absence of a type I IFN response can enhance host-mediated clearance of many bacterial species. Therefore, it remains unknown whether the type I IFN response to bacterial infection is of benefit to the host and what the functional role might be. To elucidate the key regulatory pathways involved, we utilized RNA sequencing to identify a network of pro-inflammatory molecules that are transiently up-regulated but rapidly down-regulated in Toll like receptor (TLR) 4 stimulated mouse macrophages. Further studies in transgenic knockout animals revealed that the resolution of this pro-inflammatory network was dependent on type I IFN signaling as well as signaling of two type I IFN downstream targets, interleukin 27 (IL-27) and interleukin 10 IL-10). Importantly in a model of acute systemic bacterial infection, abrogating the function of these molecules enhanced the host anti-microbial response, but concomitantly augmented inflammation including immune mediated organ damage resulting in increased mortality. Thus we have defined a type I IFN, IL-27 and IL-10 gene program, which is required for resolving acute inflammatory response to protect against tissue injury. Conversely we hypothesized that prolonged signaling by this pathway could create an immunosuppressive state conducive to the establishment or persistence of chronic infection. Utilizing a murine model of herpesgammavirus we demonstrate that defects in IL-27 or IL-10 signaling had little effect on active, lytic viral replication but prevented the establishment of viral latency. Thus we demonstrate how a single pathway can provide both beneficial and detrimental features in response to infectious disease.
机译:在传染病过程中,免疫系统会产生强烈的炎症反应,以根除入侵的病原体并恢复组织稳态。该过程的基本特征是宿主在防止不必要的附带组织损伤的同时提供抗微生物反应的能力。已经发现了许多有助于宿主抵抗传染病的促炎途径。但是,调节和解决预防组织损伤的促炎反应的途径尚不十分清楚。为了研究解决急性炎症反应的机制,我们研究了I型干扰素(IFN)途径,这是对病毒感染的急性期免疫反应的标志性特征,其中需要诱导干扰素刺激基因(ISG)进行宿主防御。相反,强烈的I型IFN反应通常与较高的细菌毒力相关,而I型IFN反应的缺失可增强宿主介导的许多细菌种类的清除。因此,尚不清楚对细菌感染的I型IFN应答是否对宿主有益以及其功能作用是什么。为了阐明涉及的关键调控途径,我们利用RNA测序来鉴定促炎分子的网络,该网络在Toll样受体(TLR)4刺激的小鼠巨噬细胞中瞬时上调,但迅速下调。对转基因基因敲除动物的进一步研究表明,促炎网络的分辨率取决于I型IFN信号以及两个I型IFN下游靶标,白介素27(IL-27)和白介素10 IL-10的信号传导。重要的是,在急性全身细菌感染的模型中,取消这些分子的功能可增强宿主的抗微生物反应,但同时会增加炎症,包括免疫介导的器官损伤,从而导致死亡率增加。因此,我们定义了I型IFN,IL-27和IL-10基因程序,该程序对于解决急性炎症反应以防止组织损伤是必需的。相反,我们假设通过此途径延长信号传导可能会产生有助于慢性感染的建立或持续的免疫抑制状态。利用疱疹γ病毒的鼠模型,我们证明IL-27或IL-10信号传导中的缺陷对活性的裂解性病毒复制几乎没有影响,但阻止了病毒潜伏期的建立。因此,我们证明了单一途径如何对传染病提供有益和有害的特征。

著录项

  • 作者

    Iyer, Shankar Subramanian.;

  • 作者单位

    University of California, Los Angeles.;

  • 授予单位 University of California, Los Angeles.;
  • 学科 Health Sciences Immunology.;Biology Bioinformatics.;Biology Molecular.
  • 学位 Ph.D.
  • 年度 2013
  • 页码 176 p.
  • 总页数 176
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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