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Pathological role of Toll-like receptor signaling in cerebral malaria.

机译:Toll样受体信号转导在脑疟疾中的病理作用。

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Toll-like receptors (TLRs) recognize malaria parasites or their metabolites; however, their physiological roles in malaria infection in vivo are not fully understood. Here, we show that myeloid differentiation primary response gene 88 (MyD88)-dependent TLR signaling mediates brain pathogenesis of severe malaria infection, namely cerebral malaria (CM). A significant number of MyD88-, but not TIR domain containing adaptor-inducing IFN-beta (TRIF)-deficient or wild-type (WT) mice survived CM caused by Plasmodium berghei ANKA (PbA) infection. Although systemic parasitemia was comparable, sequestration of parasite and hemozoin load in the brain blood vessels was significantly lower in MyD88-deficient mice compared with those in TRIF-deficient or WT mice. Moreover, brain-specific pathological changes were associated with MyD88-dependent infiltration of CD8+, CCR5+ T cells and CD11c+ dendritic cells, including CD11c+, NK1.1+ and B220+ cells, and up-regulation of genes such as Granzyme B, Lipocalin 2, Ccl3 andCcr5. Further studies using mice lacking various TLRs suggest that TLR2 and TLR9, but not TLR4, 5 and 7, were involved in CM. These results strongly suggest that TLR2- and/or TLR9-mediated, MyD88-dependent brain pathogenesis may play a critical role in CM, the lethal complication during PbA infection.
机译:Toll样受体(TLR)识别疟疾寄生虫或其代谢产物。然而,它们在体内疟疾感染中的生理作用尚不完全清楚。在这里,我们显示髓系分化主要反应基因88(MyD88)依赖的TLR信号介导严重疟疾感染,即脑疟疾(CM)的脑发病机制。大量MyD88,但不包含TIR结构域的衔接子诱导IFN-β(TRIF)缺陷或野生型(WT)小鼠,在由伯氏疟原虫ANKA(PbA)感染引起的CM中存活下来。尽管全身性寄生虫血症具有可比性,但与缺乏TRIF的小鼠或WT小鼠相比,MyD88缺陷的小鼠中脑血管中的寄生虫和溶血蛋白负载量显着降低。此外,脑特异性病理变化与CD8 +,CCR5 + T细胞和CD11c +树突状细胞(包括CD11c +,NK1.1 +和B220 +细胞)的MyD88依赖性浸润以及诸如Granzyme B,Lipocalin 2等基因的上调有关。 Ccl3和Ccr5。使用缺乏各种TLR的小鼠进行的进一步研究表明,CM涉及TLR2和TLR9,但不涉及TLR4、5和7。这些结果强烈表明,TLR2和/或TLR9介导的MyD88依赖性脑发病机制可能在CM(PbA感染期间的致命并发症)中起关键作用。

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