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首页> 外文期刊>The Journal of Immunology: Official Journal of the American Association of Immunologists >IL-33 Shifts the Balance from Osteoclast to Alternatively Activated Macrophage Differentiation and Protects from TNF-{alpha}-Mediated Bone Loss.
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IL-33 Shifts the Balance from Osteoclast to Alternatively Activated Macrophage Differentiation and Protects from TNF-{alpha}-Mediated Bone Loss.

机译:IL-33将平衡从破骨细胞转变为活化的巨噬细胞分化,并防止TNF-α介导的骨丢失。

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摘要

IL-33 is a new member of the IL-1 family, which plays a crucial role in inflammatory response, enhancing the differentiation of dendritic cells and alternatively activated macrophages (AAM). Based on the evidence of IL-33 expression in bone, we hypothesized that IL-33 may shift the balance from osteoclast to AAM differentiation and protect from inflammatory bone loss. Using transgenic mice overexpressing human TNF, which develop spontaneous joint inflammation and cartilage destruction, we show that administration of IL-33 or an IL-33R (ST2L) agonistic Ab inhibited cartilage destruction, systemic bone loss, and osteoclast differentiation. Reconstitution of irradiated hTNFtg mice with ST2(-/-) bone marrow led to more bone loss compared with the chimeras with ST2(+/+) bone marrow, demonstrating an important endogenous role of the IL-33/ST2L pathway in bone turnover. The protective effect of IL-33 on bone was accompanied by a significant increase of antiosteoclastogenic cytokines (GM-CSF, IL-4, and IFN-gamma) in the serum. In vitro IL-33 directly inhibits mouse and human M-CSF/receptor activator for NF-kappaB ligand-driven osteoclast differentiation. IL-33 acts directly on murine osteoclast precursors, shifting their differentiation toward CD206(+) AAMs via GM-CSF in an autocrine fashion. Thus, we show in this study that IL-33 is an important bone-protecting cytokine and may be of therapeutic benefit in treating bone resorption.
机译:IL-33是IL-1家族的新成员,在炎症反应,增强树突状细胞和活化巨噬细胞(AAM)的分化中起着至关重要的作用。基于骨骼中IL-33表达的证据,我们假设IL-33可能将平衡从破骨细胞转变为AAM分化,并防止炎症性骨丢失。使用过表达人类TNF,发展自发性关节炎症和软骨破坏的转基因小鼠,我们表明IL-33或IL-33R(ST2L)激动Ab的管理抑制软骨破坏,全身性骨丢失和破骨细胞分化。与嵌合ST2(+ / +)骨髓的嵌合体相比,用ST2(-/-)骨髓重建的辐射的hTNFtg小鼠导致更多的骨质流失,表明IL-33 / ST2L途径在骨转换中具有重要的内源性作用。 IL-33对骨骼的保护作用伴随着血清中抗破骨细胞生成细胞因子(GM-CSF,IL-4和IFN-γ)的显着增加。体外IL-33直接抑制小鼠和人类M-CSF /受体活化剂,用于NF-κB配体驱动的破骨细胞分化。 IL-33直接作用于鼠破骨细胞前体,通过自分泌方式通过GM-CSF将它们的分化转移至CD206(+)AAM。因此,我们在这项研究中表明,IL-33是一种重要的骨保护细胞因子,在治疗骨吸收方面可能具有治疗作用。

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