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首页> 外文期刊>Journal of bone and mineral research: the official journal of the American Society for Bone and Mineral Research >IGF-I Signaling in Osterix-Expressing Cells Regulates Secondary Ossification Center Formation, Growth Plate Maturation, and Metaphyseal Formation During Postnatal Bone Development
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IGF-I Signaling in Osterix-Expressing Cells Regulates Secondary Ossification Center Formation, Growth Plate Maturation, and Metaphyseal Formation During Postnatal Bone Development

机译:Osterix表达细胞中的IGF-I信号调节产后骨发育过程中次生骨化中心的形成,生长板的成熟和干phy端的形成。

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摘要

To investigate the role of IGF-I signaling in osterix (OSX)-expressing cells in the skeleton, we generated IGF-I receptor (IGF-IR) knockout mice ((OSX)IGF-IRKO) (floxed-IGF-IR mice x OSX promoter-driven GFP-labeled cre-recombinase [(OSX)GFPcre]), and monitored postnatal bone development. At day 2 after birth (P2), (OSX)GFP-cre was highly expressed in the osteoblasts in the bone surface of the metaphysis and in the prehypertrophic chondrocytes (PHCs) and inner layer of perichondral cells (IPCs). From P7, (OSX)GFP-cre was highly expressed in PHCs, IPCs, cartilage canals (CCs), and osteoblasts (OBs) in the epiphyseal secondary ossification center (SOC), but was only slightly expressed in the OBs in the metaphysis. Compared with the control mice, the IPC proliferation was decreased in the (OSX)IGF-IRKOs. In these mice, fewer IPCs invaded into the cartilage, resulting in delayed formation of the CC and SOC. Immunohistochemistry indicated a reduction of vessel number and lower expression of VEGF and ephrin B2 in the IPCs and SOC of (OSX)IGF-IRKOs. Quantitative real-time PCR revealed that the mRNA levels of the matrix degradation markers, MMP-9, 13 and 14, were decreased in the (OSX)IGF-IRKOs compared with the controls. The OSXIGF-IRKO also showed irregular morphology of the growth plate and less trabecular bone in the tibia and femur from P7 to 7 weeks, accompanied by decreased chondrocyte proliferation, altered chondrocyte differentiation, and decreased osteoblast differentiation. Our data indicate that during postnatal bone development, IGF-I signaling in OSX-expressing IPCs promotes IPC proliferation and cartilage matrix degradation and increases ephrin B2 production to stimulate vascular endothelial growth factor (VEGF) expression and vascularization. These processes are required for normal CC formation in the establishment of the SOC. Moreover, IGF-I signaling in the OSX-expressing PHC is required for growth plate maturation and osteoblast differentiation in the development of the metaphysis. (C) 2015 American Society for Bone and Mineral Research.
机译:为了研究IGF-I信号传导在骨骼中表达osterix(OSX)的细胞中的作用,我们生成了IGF-I受体(IGF-IR)敲除小鼠((OSX)IGF-IRKO)(foxed-IGF-IR小鼠x OSX启动子驱动的GFP标记的cre重组酶[(OSX)GFPcre],并监测出生后骨骼的发育。出生后第2天(P2),(OSX)GFP-cre在干physi端的骨表面,肥大前软骨细胞(PHC)和软骨周细胞内层(IPC)的成骨细胞中高表达。从P7开始,(OSX)GFP-cre在PH骨次生骨化中心(SOC)的PHC,IPC,软骨(CC)和成骨细胞(OB)中高表达,但在干physi端的OB中仅少量表达。与对照小鼠相比,(OSX)IGF-IRKOs的IPC增殖减少。在这些小鼠中,较少的IPC侵入软骨,导致CC和SOC的形成延迟。免疫组织化学表明,(OSX)IGF-IRKO的IPC和SOC中血管数目减少,VEGF和ephrin B2的表达降低。实时定量PCR显示(OSX)IGF-IRKOs中的基质降解标志物MMP-9、13和14的mRNA水平与对照组相比有所降低。从P7到7周,OSXIGF-IRKO还显示出生长板形态不规则,胫骨和股骨的小梁骨少,伴有软骨细胞增殖减少,软骨细胞分化改变和成骨细胞分化减少。我们的数据表明,在产后骨骼发育过程中,表达OSX的IPC中的IGF-1信号传导会促进IPC增殖和软骨基质降解,并增加ephrin B2的产生,从而刺激血管内皮生长因子(VEGF)的表达和血管形成。在SOC建立过程中,正常CC形成需要这些过程。此外,表达OSX的PHC中的IGF-I信号传导是干plate端发育中生长板成熟和成骨细胞分化所必需的。 (C)2015年美国骨矿物质研究学会。

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