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A recurrent tonsillitis

机译:复发性扁桃体炎

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The immune system is made up of a diverse collection of cells, each of which has distinct sets of triggers that elicit unique and overlapping responses. It is correctly described as a 'system' because its overall properties (e.g. 'tolerance', 'allergy') emerge from multiple interactions of its components cells. To mobilize a response where needed, the majority of the cells of the system are obligatorily highly motile and so must communicate with one another over both time and space. Here, we discuss the flexibility of the primary immunological synapse (IS) with respect to motility. We then consider the primary IS as an initiating module that licenses 'immunological circuits': the latter consisting of two or more cell-cell synaptic interactions. We discuss how two or three component immunological circuits interact might with one another in sequence and how the timing, stoichiometry, milieu, and duration of assembly of immunological circuits are likely to be key determinants in the emergent outcome and thus the system-wide immune response. An evolving consideration of immunological circuits, with an emphasis on the cell-cell modules that complement T-antigen-presenting cell interaction, provides a fundamental starting point for systems analysis of the immune response.
机译:免疫系统由各种各样的细胞组成,每个细胞都有引发独特和重叠反应的不同触发器集。可以将其正确描述为“系统”,因为其整体属性(例如“耐受性”,“过敏”)来自其组成单元的多次交互作用。为了在需要时动员响应,系统的大多数单元都必须具有很高的机动性,因此必须在时间和空间上相互通信。在这里,我们讨论相对于动力的主要免疫突触(IS)的灵活性。然后,我们将主要IS视为许可“免疫回路”的起始模块:后者由两个或多个细胞-细胞突触相互作用组成。我们讨论了两个或三个组成部分的免疫回路如何相互依序相互作用,以及免疫回路的时间安排,化学计量,环境和持续时间如何可能是紧急结果的关键决定因素,从而决定了整个系统的免疫反应。免疫回路的不断发展的考虑,重点是补充T抗原呈递细胞相互作用的细胞模块,为免疫应答的系统分析提供了基本的起点。

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