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In vivo activation of a T helper 2-driven innate immune response in lung fibrosis induced by multi-walled carbon nanotubes

机译:多壁碳纳米管诱导的肺纤维化中T辅助2驱动的先天免疫应答的体内激活

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摘要

Pulmonary exposure to certain forms of carbon nanotubes (CNT) induces fibrosing lesions in the lungs that manifest an acute inflammation followed by chronic interstitial fibrosis. The mechanism of CNT-induced fibrogenesis is largely unknown. The biphasic development with drastically distinct pathologic manifestations suggests a junction of acute-to-chronic transition. Here we analyzed the molecular pathways and regulators underlying the pathologic development of CNT-induced lung fibrosis. Mice were exposed to multi-walled CNT (MWCNT; XNRI MWNT-7, Mitsui; 40 μg) by pharyngeal aspiration for 7 days along with vehicle and carbonaceous controls. Genome-wide microarray analyses of the lungs identified a range of differentially expressed genes that potentially function in the acute-to-chronic transition through pathways involving immune and inflammatory regulation, responses to stress and extracellular stimuli, and cell migration and adhesion. In particular, a T helper 2 (Th2)-driven innate immune response was significantly enriched. We then demonstrated that MWCNT induced the expression of Th2 cytokines interleukin (IL)-4 and IL-13, and a panel of signature downstream genes, such as Il4i1, Chia, and Ccl11/Eotaxin, time dependently. Induction of Th2 cytokines took place in CD4+ T lymphocytes indicating activation of Th2 cells. Furthermore, induction involved activation of a Th2 cell-specific signaling pathway through phosphorylation of STAT6 and up-regulation of GATA-3 to mediate the transcription of Th2 target genes. Our study uncovers activation of a Th2-driven immune/inflammatory response during pulmonary fibrosis development induced by MWCNT. The findings provide novel insights into the molecular events that control the transition from an acute inflammatory response to chronic fibrosis through Th2 functions in CNT-exposed lungs.
机译:肺暴露于某些形式的碳纳米管(CNT)会在肺中引起纤维化病变,表现为急性炎症,然后是慢性间质纤维化。 CNT诱导的纤维发生的机制很大程度上未知。具有明显不同病理学表现的双相发展提示急性至慢性过渡的交界处。在这里,我们分析了碳纳米管诱发的肺纤维化病理发展的分子途径和调控因子。通过咽抽吸将小鼠与媒介物和碳质对照一起暴露于多壁CNT(MWCNT; XNRI MWNT-7,Mitsui;40μg)7天。肺的全基因组微阵列分析确定了一系列差异表达的基因,这些基因可能通过涉及免疫和炎性调节,对压力和细胞外刺激的反应以及细胞迁移和粘附的途径,在从急性到慢性的转变中起作用。特别是,T辅助2(Th2)驱动的先天免疫应答显着丰富。然后,我们证明了MWCNT可以时间依赖性地诱导Th2细胞因子白介素(IL)-4和IL-13的表达,以及一组签名下游基因,例如Il4i1,Chia和Ccl11 / Eotaxin的表达。在CD4 + T淋巴细胞中发生了Th2细胞因子的诱导,表明Th2细胞被激活。此外,诱导涉及通过STAT6的磷酸化和GATA-3的上调以介导Th2靶基因的转录来激活Th2细胞特异性信号通路。我们的研究发现由MWCNT诱导的肺纤维化发展过程中Th2驱动的免疫/炎症反应的激活。这些发现为分子事件提供了新颖的见解,这些分子事件通过暴露于CNT的肺中Th2功能控制了从急性炎症反应到慢性纤维化的转变。

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