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IL-1 在生理条件下的骨骼代谢中起着重要作用。

IL-1 plays an important role in the bone metabolism under physiological conditions.

机构信息

Center for Experimental Medicine and Systems Biology, Institute of Medical Science, University of Tokyo, Minato-ku, Tokyo 108-8639, Japan.

出版信息

Int Immunol. 2010 Oct;22(10):805-16. doi: 10.1093/intimm/dxq431. Epub 2010 Aug 2.

Abstract

It is well known that IL-1 is involved in bone resorption under pathological conditions. The role of this cytokine in bone remodeling under physiological conditions, however, remains obscure. In this study, we addressed the role of IL-1 in physiological bone metabolism through analyses of IL-1α-deficient (KO), IL-1β KO and IL-1α/β double KO mice that were housed under specific pathogen free conditions. The femur mineral density, trabecular bone mass and cortical thickness significantly increased in all KO mice compared with wild-type (WT) mice. The number of osteoclasts in trabecular bones decreased, suggesting that IL-1 regulates bone metabolism through regulation of osteoclast formation. When differentiation of bone marrow (BM) cells into osteoclasts was induced by parathyroid hormone in co-cultures of osteoblasts and BM cells from WT and IL-1α/β KO mice, IL-1α/β KO BM cell co-cultures failed to undergo efficient osteoclast-like multinucleated cell (OCL) differentiation, although high levels of receptor activator of nuclear factor-κB (NF-κB) ligand (RANKL) was induced. In contrast, efficient OCL differentiation was observed in IL-1α/β KO osteoblast/WT BM cell co-cultures, in which high levels of IL-1α/β and low levels of RANKL were produced. Addition of IL-1α to IL-1α/β KO BM-derived macrophage cultures markedly enhanced OCL differentiation induced by soluble RANKL, and the downstream molecules of receptor activator of NF-κB (RANK) including c-Jun N-terminal factor, extracellular signal-regulated kinase and c-Fos were less activated in the absence of IL-1 upon treatment with RANKL. Taken together, these results indicate that IL-1 directly activates RANK signaling other than inducing RANKL to promote osteoclastogenesis and plays an important role in physiological bone metabolism.

摘要

众所周知,IL-1 参与病理条件下的骨吸收。然而,这种细胞因子在生理条件下骨重塑中的作用仍然不清楚。在这项研究中,我们通过分析在无特定病原体条件下饲养的 IL-1α 缺陷(KO)、IL-1β KO 和 IL-1α/β 双 KO 小鼠,研究了 IL-1 在生理骨代谢中的作用。与野生型(WT)小鼠相比,所有 KO 小鼠的股骨矿物质密度、小梁骨量和皮质厚度均显著增加。小梁骨中的破骨细胞数量减少,表明 IL-1 通过调节破骨细胞形成来调节骨代谢。当 WT 和 IL-1α/β KO 小鼠的成骨细胞和骨髓(BM)细胞共培养物中通过甲状旁腺激素诱导 BM 细胞向破骨细胞分化时,IL-1α/β KO BM 细胞共培养物未能进行有效的破骨细胞样多核细胞(OCL)分化,尽管诱导了高水平的核因子-κB 受体激活剂(RANKL)。相比之下,在 IL-1α/β KO 成骨细胞/WT BM 细胞共培养物中观察到有效的 OCL 分化,其中产生高水平的 IL-1α/β 和低水平的 RANKL。向 IL-1α/β KO BM 衍生巨噬细胞培养物中添加 IL-1α 可显著增强可溶性 RANKL 诱导的 OCL 分化,并且在不存在 IL-1 的情况下,用 RANKL 处理时,RANK 激活物的下游分子包括 c-Jun N-末端因子、细胞外信号调节激酶和 c-Fos 的活性降低。总之,这些结果表明,IL-1 直接激活 RANK 信号而不是诱导 RANKL 来促进破骨细胞生成,并在生理骨代谢中发挥重要作用。

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