首页> 外文期刊>Clinical and Experimental Immunology: An Official Journal of the British Society for Immunology >Increased chemotaxis and activity of circulatory myeloid progenitor cells may contribute to enhanced osteoclastogenesis and bone loss in the C57BL/6 mouse model of collagen-induced arthritis
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Increased chemotaxis and activity of circulatory myeloid progenitor cells may contribute to enhanced osteoclastogenesis and bone loss in the C57BL/6 mouse model of collagen-induced arthritis

机译:在胶原诱导的关节炎的C57BL / 6小鼠模型中,增加的趋化性和循环性髓样祖细胞的活性可能有助于增强破骨细胞生成和骨丢失

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Our study aimed to determine the functional activity of different osteoclast progenitor (OCP) subpopulations and signals important for their migration to bone lesions, causing local and systemic bone resorption during the course of collagen-induced arthritis in C57BL/6 mice. Arthritis was induced with chicken type II collagen (CII), and assessed by clinical scoring and detection of anti-CII antibodies. We observed decreased trabecular bone volume of axial and appendicular skeleton by histomorphometry and micro-computed tomography as well as decreased bone formation and increased bone resorption rate in arthritic mice in vivo. In the affected joints, bone loss was accompanied with severe osteitis and bone marrow hypercellularity, coinciding with the areas of active osteoclasts and bone erosions. Flow cytometry analysis showed increased frequency of putative OCP cells (CD3(-)B220(-)NK1.1(-)CD11b(-/lo)CD117(+)CD115(+) for bone marrow and CD3(-)B220(-)NK1.1(-)CD11b(+)CD115(+)Gr-1(+) for peripheral haematopoietic tissues), which exhibited enhanced differentiation potential in vitro. Moreover, the total CD11b(+) population was expanded in arthritic mice as well as CD11b(+)F4/80(+) macrophage, CD11b(+)NK1.1(+) natural killer cell and CD11b(+)CD11c(+) myeloid dendritic cell populations in both bone marrow and peripheral blood. In addition, arthritic mice had increased expression of tumour necrosis factor-, interleukin-6, CC chemokine ligand-2 (Ccl2) and Ccl5, with increased migration and differentiation of circulatory OCPs in response to CCL2 and, particularly, CCL5 signals. Our study characterized the frequency and functional properties of OCPs under inflammatory conditions associated with arthritis, which may help to clarify crucial molecular signals provided by immune cells to mediate systemically enhanced osteoresorption.
机译:我们的研究旨在确定不同的破骨细胞祖细胞(OCP)亚群的功能活性,以及​​对于它们迁移到骨病变,在C57BL / 6小鼠胶原诱导的关节炎过程中引起局部和全身性骨吸收的重要信号。用鸡II型胶原(CII)诱发关节炎,并通过临床评分和抗CII抗体检测进行评估。我们通过组织形态计量学和微计算机断层扫描观察到了轴向和阑尾骨骼小梁骨体积的减少,以及体内关节炎小鼠骨形成的减少和骨吸收速率的增加。在受影响的关节中,骨质流失伴有严重的骨炎和骨髓细胞过多,与活跃的破骨细胞和骨侵蚀区域相吻合。流式细胞仪分析显示,假定的OCP细胞(CD3(-)B220(-)NK1.1(-)CD11b(-/ lo)CD117(+)CD115(+)用于骨髓和CD3(-)B220(- NK1.1(-)CD11b(+)CD115(+)Gr-1(+)用于外周造血组织),在体外显示出增强的分化潜能。此外,关节炎小鼠以及CD11b(+)F4 / 80(+)巨噬细胞,CD11b(+)NK1.1(+)自然杀伤细胞和CD11b(+)CD11c(+)的总CD11b(+)种群得以扩大)骨髓和外周血中的髓样树突状细胞群。此外,关节炎小鼠的肿瘤坏死因子,白介素-6,CC趋化因子配体2(Ccl2)和Ccl5的表达增加,循环CCP对CCL2尤其是CCL5信号的迁移和分化也增加。我们的研究表征了在与关节炎相关的炎症条件下OCP的频率和功能特性,这可能有助于阐明免疫细胞提供的关键分子信号,以介导全身性骨吸收增强。

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