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首页> 外文期刊>Rheumatology >RANKL protein is expressed at the pannus-bone interface at sites of articular bone erosion in rheumatoid arthritis.
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RANKL protein is expressed at the pannus-bone interface at sites of articular bone erosion in rheumatoid arthritis.

机译:RANKL蛋白在类风湿关节炎的关节骨侵蚀部位的at骨-骨界面处表达。

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摘要

OBJECTIVES: Receptor activator of NF-kappaB ligand (RANKL) and osteoprotegerin (OPG) have been demonstrated to be critical regulators of osteoclast generation and activity. In addition, RANKL has been implicated as an important mediator of bone erosion in rheumatoid arthritis (RA). However, the expression of RANKL and OPG at sites of pannus invasion into bone has not been examined. The present study was undertaken to further elucidate the contribution of this cytokine system to osteoclastogenesis and subsequent bone erosion in RA by examining the pattern of protein expression for RANKL, OPG and the receptor activator of NF-kappaB (RANK) in RA at sites of articular bone erosion. METHODS: Tissues from 20 surgical procedures from 17 patients with RA were collected as discarded materials. Six samples contained only synovium or tenosynovium remote from bone, four samples contained pannus-bone interface with adjacent synovium and 10 samples contained both synovium remote from bone and pannus-bone interface with adjacent synovium. Immunohistochemistry was used to characterize the cellular pattern of RANKL, RANK and OPG protein expression immediately adjacent to and remote from sites of bone erosion. RESULTS: Cellular expression of RANKL protein was relatively restricted in the bone microenvironment; staining was focal and confined largely to sites of osteoclast-mediated erosion at the pannus-bone interface and at sites of subchondral bone erosion. RANK-expressing osteoclast precursor cells were also present in these sites. OPG protein expression was observed in numerous cells in synovium remote from bone but was more limited at sites of bone erosion, especially in regions associated with RANKL expression. CONCLUSIONS: The pattern of RANKL and OPG expression and the presence of RANK-expressing osteoclast precursor cells at sites of bone erosion in RA contributes to the generation of a local microenvironment that favours osteoclast differentiation and activity. These data provide further evidence implicating RANKLin the pathogenesis of arthritis-induced joint destruction.
机译:目的:已证明NF-κB配体(RANKL)和骨保护素(OPG)的受体激活剂是破骨细胞产生和活性的关键调节剂。此外,RANKL还被认为是类风湿关节炎(RA)骨侵蚀的重要介质。然而,尚未检查RANKL和OPG在血管nu侵入骨中的表达。本研究旨在通过检查RANKL,OPG的蛋白表达模式以及RA在关节部位的NF-κB(RANK)受体激活剂的表达模式,进一步阐明该细胞因子系统对RA中破骨细胞形成和随后的骨侵蚀的贡献。骨侵蚀。方法:收集17例RA患者的20例手术方法的组织作为废弃材料。六个样品仅包含远离骨骼的滑膜或腱鞘,四个样品包含与邻近滑膜的pan骨-骨界面,而10个样品包含远离骨骼的滑膜和与邻近滑膜的pan-骨界面。免疫组织化学用于表征骨侵蚀部位附近和远离骨侵蚀部位的RANKL,RANK和OPG蛋白表达的细胞模式。结果:在骨微环境中,RANKL蛋白的细胞表达相对受到限制。染色是局灶性的,并且主要局限于破骨细胞介导的pan骨-骨界面和软骨下骨侵蚀的部位。在这些位点中也存在表达RANK的破骨细胞前体细胞。 OPG蛋白表达在远离骨骼的滑膜中的许多细胞中观察到,但在骨侵蚀部位更受限制,尤其是在与RANKL表达相关的区域。结论:RA骨侵蚀部位的RANKL和OPG表达模式以及表达RANK的破骨细胞前体细胞的存在有助于形成有利于破骨细胞分化和活性的局部微环境。这些数据提供了进一步的证据,提示RANKL与关节炎引起的关节破坏有关。

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