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Rheumatoid Arthritis Synovial Fluid Neutrophils Drive Inflammation Through Production of Chemokines, Reactive Oxygen Species, and Neutrophil Extracellular Traps

机译:类风湿性关节炎滑膜液中性粒细胞通过生产趋化因子,反应性氧物种和中性粒细胞细胞外陷阱驱动炎症

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摘要

Rheumatoid arthritis (RA) is a chronic inflammatory disorder affecting synovial joints. Neutrophils are believed to play an important role in both the initiation and progression of RA, and large numbers of activated neutrophils are found within both synovial fluid (SF) and synovial tissue from RA joints. In this study we analyzed paired blood and SF neutrophils from patients with severe, active RA (DAS28>5.1, n=3) using RNA-seq. 772 genes were significantly different between blood and SF neutrophils. IPA analysis predicted that SF neutrophils had increased expression of chemokines and ROS production, delayed apoptosis, and activation of signaling cascades regulating the production of NETs. This activated phenotype was confirmed experimentally by incubating healthy control neutrophils in cell-free RA SF, which was able to delay apoptosis and induce ROS production in both unprimed and TNFα primed neutrophils (p<0.05). RA SF significantly increased neutrophil migration through 3μM transwell chambers (p<0.05) and also increased production of NETs by healthy control neutrophils (p<0.001), including exposure of myeloperoxidase (MPO) and citrullinated histone-H3-positive DNA NETs. IPA analysis predicted NET production was mediated by signaling networks including AKT, RAF1, SRC, and NF-κB. Our results expand the understanding of the molecular changes that take place in the neutrophil transcriptome during migration into inflamed joints in RA, and the altered phenotype in RA SF neutrophils. Specifically, RA SF neutrophils lose their migratory properties, residing within the joint to generate signals that promote joint damage, as well as inflammation via recruitment and activation of both innate and adaptive immune cells. We propose that this activated SF neutrophil phenotype contributes to the chronic inflammation and progressive damage to cartilage and bone observed in patients with RA.
机译:类风湿关节炎(RA)是一种影响滑膜关节的慢性炎性疾病。嗜中性粒细胞被认为在启动和RA的进展都具有重要作用,和激活的中性粒的大量均滑液(SF)和滑膜组织从RA关节内找到。在这项研究中,我们分析从患者血液配对和SF嗜中性粒细胞,使用RNA-SEQ严重,活动性RA(DAS28> 5.1,N = 3)。 772个基因是血液和嗜中性粒细胞SF之间显著不同。 IPA分析预测,嗜中性粒细胞的SF增加了趋化因子和ROS产生的表达,凋亡延迟,和信号级联调节生产母语的活化。此活化的表型是通过将无细胞RA SF健康对照嗜中性粒细胞,这是能够延缓细胞凋亡和诱导ROS产生在两个未接触过抗原和TNFα引发嗜中性粒细胞(P <0.05)实验证实。通过3μMRA SF显著增加中性粒细胞迁移通过健康对照中性粒细胞(P <0.001),其中包括髓过氧化物酶(MPO)的曝光Transwell小室(P <0.05)和生产教师的也随之增大,瓜氨酸化组蛋白H3阳性DNA网。 IPA分析预测NET产量通过信令网络,包括AKT,RAF1,SRC,以及NF-κB介导的。我们的研究结果扩展了迁移过程中发生在中性粒细胞转录到发炎的关节在RA的分子变化,并在RA SF嗜中性粒细胞的表型改变的理解。具体地说,RA SF嗜中性粒细胞失去它们的迁移特性,驻留在关节内产生经由先天性和适应性免疫细胞的募集和激活促进关节损伤的信号,以及炎症。我们建议,这种激活的中性粒细胞SF表型有助于慢性炎症和渐进破坏软骨和骨观察患者RA。

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