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Exacerbation of collagen induced arthritis by Fcγ receptor targeted collagen peptide due to enhanced inflammatory chemokine and cytokine production

机译:由于炎症趋化因子和细胞因子产生增强Fcγ受体靶向胶原蛋白肽加剧了胶原蛋白诱发的关节炎

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摘要

Antibodies specific for bovine type II collagen (CII) and Fcγ receptors play a major role in collagen-induced arthritis (CIA), a mouse model of rheumatoid arthritis (RA). Our aim was to clarify the mechanism of immune complex-mediated inflammation and modulation of the disease. CII pre-immunized DBA/1 mice were intravenously boosted with extravidin coupled biotinylated monomeric CII-peptide epitope (ARGLTGRPGDA) and its complexes with biotinylated FcγRII/III specific single chain Fv (scFv) fragment. Disease scores were monitored, antibody titers and cytokines were determined by ELISA, and binding of complexes was detected by flow cytometry and immune histochemistry. Cytokine and chemokine secretion was monitored by protein profiler microarray. When intravenously administered into collagen-primed DBA/1 mice, both CII-peptide and its complex with 2.4G2 scFv significantly accelerated CIA and increased the severity of the disease, whereas the monomeric peptide and monomeric 2.4G2 scFv had no effect. FcγRII/III targeted CII-peptide complexes bound to marginal zone macrophages and dendritic cells, and significantly elevated the synthesis of peptide-specific IgG2a. Furthermore, CII-peptide containing complexes augmented the in vivo secretion of cytokines, including IL-10, IL-12, IL-17, IL-23, and chemokines (CXCL13, MIP-1, MIP-2). These data indicate that complexes formed by the CII-peptide epitope aggravate CIA by inducing the secretion of chemokines and the IL-12/23 family of pro-inflammatory cytokines. Taken together, these results suggest that the in vivo emerging immune complexes formed with autoantigen(s) may trigger the IL-12/23 dependent pathways, escalating the inflammation in RA. Thus blockade of these cytokines may be beneficial to downregulate immune complex-induced inflammation in autoimmune arthritis.
机译:对牛II型胶原(CII)和Fcγ受体具有特异性的抗体在胶原诱导的关节炎(CIA)(类风湿关节炎(RA)的小鼠模型)中起主要作用。我们的目的是阐明免疫复合物介导的炎症和疾病调节的机制。将CII预免疫的DBA / 1小鼠静脉注射静脉注射抗生物素蛋白偶联的生物素化单体CII肽表位(ARGLTGRPGDA)及其复合物与生物素化FcγRII/ III特异性单链Fv(scFv)片段。监测疾病评分,通过ELISA确定抗体滴度和细胞因子,并通过流式细胞术和免疫组织化学检测复合物的结合。通过蛋白谱仪微阵列监测细胞因子和趋化因子的分泌。当静脉注射胶原引发的DBA / 1小鼠时,CII肽及其与2.4G2 scFv的复合物均可显着加速CIA并增加疾病的严重程度,而单体肽和2.4G2 scFv单体则无作用。 FcγRII/ III靶向的CII-肽复合物与边缘区巨噬细胞和树突状细胞结合,并显着提高了肽特异性IgG2a的合成。此外,含有CII-肽的复合物增加了体内细胞因子的分泌,包括IL-10,IL-12,IL-17,IL-23和趋化因子(CXCL13,MIP-1,MIP-2)。这些数据表明由CII-肽表位形成的复合物通过诱导趋化因子和促炎性细胞因子的IL-12 / 23家族的分泌而加剧了CIA。综上所述,这些结果表明与自身抗原形成的体内新兴免疫复合物可能触发IL-12 / 23依赖性途径,从而加剧了RA中的炎症。因此,阻断这些细胞因子可能有助于下调自身免疫性关节炎中免疫复合物诱导的炎症。

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