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High-mobility group box 1 promotes early acute allograft rejection by enhancing IL-6-dependent Th17 alloreactive response

机译:高流动性小组框1通过增强依赖IL-6的Th17同种异体反应来促进早期急性同种异体移植排斥反应

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Previously, we reported that extracellular high-mobility group box 1 (HMGB1) functions as an innate alarmin implicated in cardiac allograft acute rejection. We now present evidence suggesting that HMGB1 is pivotal in inducing interleukin-17 (IL-17)-producing alloreactive T cells by stimulating dendritic cells secretion of IL-6. Those IL-17+ T cells are likely to be the major effector cells responsible for the early stage of cardiac allograft rejection through mediating an influx of neutrophils into allografts, and therefore, blockade of IL-17A significantly prolonged murine cardiac allograft survival. In contrast to the classical model for a dominant role of IFN-γ+-Th1 cells have in acute allograft rejection, our data suggest that IFN-γ+-Th1 cells are responsible for the late stage of graft destruction by inducing monocyte infiltration when IL-17+ T-cell response recedes. Blockade of HMGB1 significantly decreased splenic alloreactive Th17 cells and IFN-γ-producing CD8+ T cells in the recipients, leading to less infiltration of neutrophils along with lower IL-6 and IL-17 expression levels in the grafts as well as prolongation of cardiac allograft survival. Together, these data support a novel model in which HMGB1 induces IL-17-producing alloreactive T cells to mediate early stage of allograft rejection, whereas IFN-γ-producing alloreactive Th1 cells provoke graft destruction after Th17 response recedes.
机译:以前,我们报道细胞外高迁移率族盒1(HMGB1)的功能是与心脏同种异体移植急性排斥反应有关的先天警报蛋白。我们现在提供的证据表明,HMGB1在刺激IL-6的树突状细胞分泌中,在诱导产生白介素17(IL-17)的同种异体反应性T细胞中起关键作用。那些IL-17 + T细胞可能是通过介导嗜中性粒细胞流入同种异体移植物而导致心脏同种异体移植排斥早期的主要效应细胞,因此,阻断IL-17A可以显着延长小鼠心脏同种异体移植物的存活。与经典模型中IFN-γ+ -Th1细胞在急性同种异体移植排斥中起主导作用的经典模型相反,我们的数据表明,IFN-γ+ -Th1细胞在IL诱导时诱导单核细胞浸润,从而导致移植物破坏的后期。 -17+ T细胞反应减弱。 HMGB1的阻断显着降低受体中的脾同种反应性Th17细胞和产生IFN-γ的CD8 + T细胞,导致嗜中性粒细胞浸润减少,移植物中IL-6和IL-17表达水平降低,以及心脏同种异体移植时间延长生存。总之,这些数据支持了一种新型模型,其中HMGB1诱导产生IL-17的同种异体反应性T细胞介导同种异体移植排斥的早期阶段,而产生IFN-γ的同种异体反应性Th1细胞在Th17反应减弱后引起移植物破坏。

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