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The complement inhibitor factor H generates an anti-inflammatory and tolerogenic state in monocyte-derived dendritic cells

机译:补体抑制因子H在单核细胞衍生的树突细胞中产生抗炎和致耐受状态

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摘要

The activation of the complement system is a key initiating step in the protective innate immune-inflammatory response against injury, although it may also cause harm if left unchecked. The structurally related soluble complement inhibitors C4b-binding protein (C4BP) and factor H (FH) exert a tight regulation of the classical/lectin and alternative pathways of complement activation, respectively, attenuating the activity of the C3/C5 convertases and, consequently, avoiding serious damage to host tissues. We recently reported that the acute-phase C4BP isoform C4BP lacking the β-chain plays a pivotal role in the modulation of the adaptive immune responses. In this study, we demonstrate that FH acts in the early stages of monocyte to dendritic cell (DC) differentiation and is able to promote a distinctive tolerogenic and anti-inflammatory profile on monocyte-derived DCs (MoDCs) challenged by a proinflammatory stimulus. Accordingly, FH-treated and LPS-matured MoDCs are characterized by altered cytoarchitecture, resembling immature MoDCs, lower expression of the maturation marker CD83 and the costimulatory molecules CD40, CD80, and CD86, decreased production of key proinflammatory Th1-cytokines (IL-12, TNF-α, IFN-γ, IL-6, and IL-8), and preferential production of immunomodulatory mediators (IL-10 and TGF-β). Moreover, FH-treated MoDCs show low Ag uptake and, when challenged with LPS, display reduced CCR7 expression and chemotactic migration, impaired CD4+ T cell alloproliferation, inhibition of IFN-γ secretion by the allostimulated T cells, and, conversely, induction of CD4+CD127low/negativeCD25highFoxp3+ regulatory T cells. Thus, this novel noncanonical role of FH as an immunological brake able to directly affect the function of MoDCs in an inflammatory environment may exhibit therapeutic potential in hypersensitivity, transplantation, and autoimmunity.
机译:补体系统的激活是针对损伤的先天性保护性先天免疫炎症反应的关键启动步骤,尽管如果不加以控制也会引起伤害。结构相关的可溶性补体抑制剂C4b结合蛋白(C4BP)和H因子(FH)分别对经典/凝集素和补体激活的替代途径进行严格调节,从而减弱了C3 / C5转化酶的活性,因此,避免严重破坏宿主组织。我们最近报道,缺乏β链的急性期C4BP同工型C4BP在适应性免疫应答的调节中起关键作用。在这项研究中,我们证明FH在单核细胞向树突状细胞(DC)分化的早期阶段起作用,并且能够在受到促炎性刺激的单核细胞衍生DC(MoDCs)上促进独特的耐受性和抗炎性。因此,经过FH处理和LPS成熟的MoDC的特征是细胞结构改变,类似于未成熟的MoDC,成熟标记CD83和共刺激分子CD40,CD80和CD86的表达降低,关键促炎性Th1-细胞因子(IL-12)的产生,TNF-α,IFN-γ,IL-6和IL-8),并优先产生免疫调节介质(IL-10和TGF-β)。此外,经FH处理的MoDC显示出低的Ag摄取,并且在受到LPS攻击时,显示出降低的CCR7表达和趋化性迁移,受损的CD4 + T细胞同种异体增殖,同素刺激性T细胞抑制IFN-γ分泌以及相反地诱导CD4。 + CD127low /负CD25highFoxp3 +调节性T细胞。因此,FH作为一种能够直接影响MoDC在炎性环境中的功能的免疫制动器的这种新的非规范作用,可能在超敏反应,移植和自身免疫中表现出治疗潜力。

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