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Innate Immune Recognition: Implications for the Interaction of Francisella tularensis with the Host Immune System

机译:先天免疫识别:弗朗西斯菌与宿主免疫系统相互作用的影响。

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摘要

The intracellular bacterial pathogen Francisella tularensis causes serious infectious disease in humans and animals. Moreover, F. tularensis, a highly infectious pathogen, poses a major concern for the public as a bacterium classified under Category A of bioterrorism agents. Unfortunately, research has so far failed to develop effective vaccines, due in part to the fact that the pathogenesis of intracellular bacteria is not fully understood and in part to gaps in our understanding of innate immune recognition processes leading to the induction of adaptive immune response. Recent evidence supports the concept that immune response to external stimuli in the form of bacteria is guided by the primary interaction of the bacterium with the host cell. Based on data from different Francisella models, we present here the basic paradigms of the emerging innate immune recognition concept. According to this concept, the type of cell and its receptor(s) that initially interact with the target constitute the first signaling window; the signals produced in the course of primary interaction of the target with a reacting cell act in a paracrine manner; and the innate immune recognition process as a whole consists in a series of signaling windows modulating adaptive immune response. Finally, the host, in the strict sense, is the interacting cell.
机译:细胞内细菌病原体土拉弗朗西斯菌引起人和动物的严重传染病。此外,作为传染性高的病原体,土拉弗朗西斯菌(F. tularensis)作为一种被归类为生物恐怖分子A类的细菌,引起了公众的广泛关注。不幸的是,到目前为止,由于未能完全了解细胞内细菌的发病机理,以及部分原因是我们对先天性免疫识别过程的了解导致了适应性免疫应答的诱导,因此研究未能开发出有效的疫苗。最近的证据支持这样一个概念,即细菌与宿主细胞的主要相互作用指导了对细菌形式的外部刺激的免疫反应。基于来自不同弗朗西斯菌模型的数据,我们在此介绍新兴先天免疫识别概念的基本范例。根据这一概念,最初与靶标相互作用的细胞及其受体的类型构成了第一信号窗口。在靶与反应细胞的初级相互作用过程中产生的信号以旁分泌方式起作用;整个先天免疫识别过程包括一系列调节适应性免疫应答的信号窗口。最后,严格意义上讲,宿主是相互作用的细胞。

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