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C/EBPβ Mediates Osteoclast Recruitment by Regulating Endothelial Progenitor Cell Expression of SDF-1α

机译:C /EBPβ通过调节SDF-1α的内皮祖细胞表达介导破骨细胞募集。

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Integration of tissue-engineered bone grafts with the host bone is vital for the healing of critical-size bone defects. An important aspect of this process is bone resorption, which must be carried out by osteoclasts derived from the host. However, the mechanism underlying recruitment of host osteoclast precursors to graft sites remains unclear. Endothelial progenitor cells (EPCs) mobilize from the bone marrow into the circulation and home to sites of angiogenesis such as tissue remodeling. Since EPCs express SDF-1, and C/EBPβ is known to regulate SDF-1α expression, we hypothesized that EPCs may recruit CXCR4-expressing host osteoclast precursors to the repair area and that this recruitment may be mediated through C/EBPβ signaling. Using an inflammatory EPC model we showed that EPCs upregulate protein levels of both SDF-1α and C/EBPβ. A luciferase assay confirmed that C/EBPβ acts on the SDF-1α promoter in these cells, and that binding is increased under conditions of inflammation, while silencing of C/EBPβ reduces expression of SDF-1 α and C/EBPβ. Using RAW264.7 cells as a model of osteoclastic monocyte precursors, we investigated their responses to migratory factors in EPC conditioned medium. We showed that RAW264.7 cells migrate towards conditioned medium from EPCs treated with IL-1β, an effect which could be abolished by silencing C/EBPβ in EPCs, and was almost completely blocked by silencing CXCR4 in RAW264.7 cells. These findings show that EPCs respond to inflammatory stimuli by signaling to osteoclast precursors via SDF-1, and that C/EBPβ mediates this response.
机译:组织工程化的骨移植物与宿主骨的整合对于关键尺寸骨缺损的愈合至关重要。该过程的一个重要方面是骨吸收,必须通过源自宿主的破骨细胞进行骨吸收。但是,宿主破骨细胞前体募集到移植部位的潜在机制尚不清楚。内皮祖细胞(EPC)从骨髓动员到循环中,并回到血管发生的位置,例如组织重塑。由于EPC表达SDF-1,并且已知C /EBPβ调节SDF-1α的表达,因此我们假设EPC可以将表达CXCR4的宿主破骨细胞前体募集到修复区域,并且这种募集可以通过C /EBPβ信号传导来介导。使用炎症性EPC模型,我们显示EPC上调SDF-1α和C /EBPβ的蛋白质水平。荧光素酶测定证实C /EBPβ作用于这些细胞中的SDF-1α启动子,并且在炎症条件下结合增加,而C /EBPβ的沉默降低了SDF-1α和C /EBPβ的表达。使用RAW264.7细胞作为破骨细胞单核细胞前体的模型,我们调查了它们对EPC条件培养基中迁移因子的反应。我们表明,RAW264.7细胞从用IL-1β处理的EPC迁移到条件培养基,这种作用可以通过使EPC中的C /EBPβ沉默而被消除,并且几乎完全被RAW264.7细胞中的CXCR4沉默所阻断。这些发现表明,EPC通过SDF-1向破骨细胞前体发出信号,从而对炎症刺激做出反应,而C /EBPβ介导了该反应。

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