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首页> 外文期刊>American Journal of Pathology >Murine Oncostatin M Stimulates Mouse Synovial Fibroblasts in Vitro and Induces Inflammation and Destruction in Mouse Joints in Vivo
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Murine Oncostatin M Stimulates Mouse Synovial Fibroblasts in Vitro and Induces Inflammation and Destruction in Mouse Joints in Vivo

机译:小鼠抑癌素M体外刺激小鼠滑膜成纤维细胞,并诱导小鼠关节炎症和破坏。

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摘要

Oncostatin M (OSM) is a multifunctional cytokine, a member of the interleukin-6/leukemia inhibitory factor (IL-6/LIF) family, that can regulate a number of connective-tissue cell types in vitro including cartilage and synovial tissue-derived fibroblasts, however its role in joint inflammation in vivo is not clear. We have analyzed murine OSM (muOSM) activity in vitro and in vivo in mouse joint tissue, to determine the potential role of this cytokine in local joint inflammation and pathology. The effects of muOSM and other IL-6/LIF cytokines on mouse synovial fibroblast cultures were assessed in vitro and showed induction of monocyte chemotactic protein-1, interleukin-6, and tissue inhibitor metalloproteinase-1, as well as enhancement of colony growth in soft agarose culture. Other IL-6/LIF cytokines including IL-6, LIF, or cardiotrophin-1, did not have such effects when tested at relatively high concentrations (20 ng/ml). To assess effects of muOSM in articular joints in vivo, we used recombinant adenovirus expressing muOSM cDNA (AdmuOSM) and injected purified recombinant virus (106 to 108 pfu) intra-articularly into the knees of various mouse strains. Histological analysis revealed dramatic alterations in the synovium but not in synovium of knees treated with the control virus Ad-dl70 or knees treated with Adm-IL-6 encoding biologically active murine IL-6. AdmuOSM effects were characterized by increases in the synovial cell proliferation, infiltration of mononuclear cells, and increases in extracellular matrix deposition that were evident at day 4, but much more marked at days 7, 14, and 21 after administration. The synovium took on characteristics similar to pannus and appeared to contact and invade cartilage. Collectively, these results provide good evidence that OSM regulates synovial fibroblast function differently than other IL-6-type cytokines, and can induce a proliferative invasive phenotype of synovium in vivo in mice on overexpression. We suggest that OSM may contribute to pathology in arthritis.
机译:癌抑制素M(OSM)是一种多功能细胞因子,是 白细胞介素6 /白血病抑制因子(IL-6 / LIF)家族成员, 可以调节许多 体外的结缔组织细胞类型包括软骨和滑膜组织来源的成纤维细胞,但 在体内联合炎症中的作用尚不清楚。 我们已经分析了小鼠关节组织中小鼠体内和体外的OSM(muOSM)活性,以确定该细胞因子在局部关节炎症和病理中的潜在作用。体外评估了muOSM和其他IL-6 / LIF细胞因子对小鼠滑膜成纤维细胞 培养的影响,并证明了诱导单核细胞 趋化蛋白- 1,白介素6和组织抑制剂金属蛋白酶1( )以及软琼脂糖培养中菌落生长的增强。 其他IL-6 / LIF细胞因子,包括IL-6 ,LIF或心肌营养素1, 在相对较高的浓度 (20 ng / ml)下测试时没有这种作用。为了评估muOSM在 体内关节中的作用,我们使用了表达muOSM cDNA(AdmuOSM) 的重组腺病毒并注射了纯化的重组病毒(10 6 关节内 到10 8 pfu)。组织学分析 显示了用对照病毒Ad-dl70治疗的膝盖或用Adm-IL治疗的膝盖 的滑膜急剧变化,但未发现-6编码具有生物学活性的鼠IL-6。 AdmuOSM效应 的特征在于滑膜细胞增殖的增加,单核细胞的 的浸润以及第4天明显的细胞外 基质沉积的增加,但在给药后第7、14和21天标记了更多的 。滑膜 具有类似于pan的特征,并且似乎接触 并侵袭软骨。总的来说,这些结果提供了很好的证据,表明OSM对滑膜成纤维细胞功能的调节与其他IL-6型细胞因子不同,并且可以诱导增殖性 侵袭性小鼠体内滑膜表型过度表达。我们 建议OSM可能导致关节炎的病理。

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  • 来源
    《American Journal of Pathology》 |2000年第4期|1187-1196|共10页
  • 作者单位

    From the Department of Pathology and Molecular Medicine,McMaster University, Hamilton, Ontario, Canada;

    From the Department of Pathology and Molecular Medicine,McMaster University, Hamilton, Ontario, Canada;

    From the Department of Pathology and Molecular Medicine,McMaster University, Hamilton, Ontario, Canada;

    and the Institute of Molecular and Cellular Biosciences,The University of Tokyo, Tokyo, Japan;

    From the Department of Pathology and Molecular Medicine,McMaster University, Hamilton, Ontario, Canada;

    From the Department of Pathology and Molecular Medicine,McMaster University, Hamilton, Ontario, Canada;

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