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首页> 外文期刊>The Journal of Immunology: Official Journal of the American Association of Immunologists >CD209a expression on dendritic cells is critical for the development of pathogenic Th17 cell responses in murine schistosomiasis
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CD209a expression on dendritic cells is critical for the development of pathogenic Th17 cell responses in murine schistosomiasis

机译:树突状细胞上的CD209a表达对于鼠血吸虫病中致病性Th17细胞应答的发展至关重要

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摘要

In murine schistosomiasis, immunopathology and cytokine production in response to parasite eggs are uneven and strain dependent. CBA/J (CBA) mice develop severe hepatic granulomatous inflammation associated with prominent Th17 cell responses driven by dendritic cell (DC)-derived IL-1β and IL-23. Such Th17 cells fail to develop in low-pathology C57BL/6 (BL/6) mice, and the reasons for these strain-specific differences in APC reactivity to eggs remain unclear.We show by gene profiling that CBA DCs display an 18- fold higher expression of the C-type lectin receptor CD209a, a murine homolog of human DC-specific ICAM-3-grabbing nonintegrin, compared with BL/6 DCs. Higher CD209a expression was observed in CBA splenic and granuloma APC subpopulations, but only DCs induced Th17 cell differentiation in response to schistosome eggs. Gene silencing in CBA DCs and overexpression in BL/6 DCs demonstrated that CD209a is essential for egg-elicited IL-1β and IL-23 production and subsequent Th17 cell development, which is associated with SRC, RAF-1, and ERK1/2 activation. These findings reveal a novel mechanism controlling the development of Th17 cell-mediated severe immunopathology in helminthic disease.
机译:在鼠血吸虫病中,对寄生虫卵的反应的免疫病理学和细胞因子的产生是不均匀的,并且依赖菌株。 CBA / J(CBA)小鼠发生严重的肝肉芽肿性炎症,与树突状细胞(DC)衍生的IL-1β和IL-23驱动的Th17细胞应答显着相关。此类Th17细胞在低病理性C57BL / 6(BL / 6)小鼠中无法发育,并且这些菌株特异性APC对卵反应性差异的原因仍不清楚。我们通过基因分析表明CBA DCs显示18倍与BL / 6 DC相比,C型凝集素受体CD209a(一种人类DC特异性ICAM-3吞噬型非整联蛋白的鼠同源物)的高表达。在CBA脾脏和肉芽肿APC亚群中观察到较高的CD209a表达,但是只有DC响应血吸虫卵才能诱导Th17细胞分化。 CBA DC中的基因沉默和BL / 6 DC中的过度表达证明CD209a对于卵诱导的IL-1β和IL-23产生以及随后的Th17细胞发育至关重要,这与SRC,RAF-1和ERK1 / 2激活有关。这些发现揭示了控制蠕虫病中Th17细胞介导的严重免疫病理学发展的新机制。

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