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表皮生长因子受体在体内骨代谢中发挥合成代谢作用。

Epidermal growth factor receptor plays an anabolic role in bone metabolism in vivo.

机构信息

Department of Orthopaedic Surgery, School of Medicine, University of Pennsylvania, Philadelphia, PA 19104, USA.

出版信息

J Bone Miner Res. 2011 May;26(5):1022-34. doi: 10.1002/jbmr.295.

Abstract

While the epidermal growth factor receptor (EGFR)-mediated signaling pathway has been shown to have vital roles in many developmental and pathologic processes, its functions in the development and homeostasis of the skeletal system has been poorly defined. To address its in vivo role, we constructed transgenic and pharmacologic mouse models and used peripheral quantitative computed tomography (pQCT), micro-computed tomography (µCT) and histomorphometry to analyze their trabecular and cortical bone phenotypes. We initially deleted the EGFR in preosteoblasts/osteoblasts using a Cre/loxP system (Col-Cre Egfr(f/f)), but no bone phenotype was observed because of incomplete deletion of the Egfr genomic locus. To further reduce the remaining osteoblastic EGFR activity, we introduced an EGFR dominant-negative allele, Wa5, and generated Col-Cre Egfr(Wa5/f) mice. At 3 and 7 months of age, both male and female mice exhibited a remarkable decrease in tibial trabecular bone mass with abnormalities in trabecular number and thickness. Histologic analyses revealed decreases in osteoblast number and mineralization activity and an increase in osteoclast number. Significant increases in trabecular pattern factor and structural model index indicate that trabecular microarchitecture was altered. The femurs of these mice were shorter and smaller with reduced cortical area and periosteal perimeter. Moreover, colony-forming unit-fibroblast (CFU-F) assay indicates that these mice had fewer bone marrow mesenchymal stem cells and committed progenitors. Similarly, administration of an EGFR inhibitor into wild-type mice caused a significant reduction in trabecular bone volume. In contrast, Egfr(Dsk5/+) mice with a constitutively active EGFR allele displayed increases in trabecular and cortical bone content. Taken together, these data demonstrate that the EGFR signaling pathway is an important bone regulator and that it primarily plays an anabolic role in bone metabolism.

摘要

虽然表皮生长因子受体(EGFR)介导的信号通路已被证明在许多发育和病理过程中具有重要作用,但它在骨骼系统的发育和稳态中的功能尚未得到明确界定。为了研究其体内作用,我们构建了转基因和药理学小鼠模型,并使用外周定量计算机断层扫描(pQCT)、微计算机断层扫描(µCT)和组织形态计量学分析了它们的小梁骨和皮质骨表型。我们最初使用 Cre/loxP 系统(Col-Cre Egfr(f/f))在成骨前体细胞/成骨细胞中删除 EGFR,但由于 Egfr 基因组座的不完全缺失,没有观察到骨表型。为了进一步降低剩余成骨细胞 EGFR 的活性,我们引入了 EGFR 显性负等位基因 Wa5,并生成了 Col-Cre Egfr(Wa5/f) 小鼠。在 3 个月和 7 个月大时,雌雄小鼠的胫骨小梁骨量均显著减少,小梁数量和厚度异常。组织学分析显示成骨细胞数量减少、矿化活性降低和破骨细胞数量增加。小梁模式因子和结构模型指数的显著增加表明小梁微结构发生了改变。这些小鼠的股骨较短且较小,皮质面积和骨膜周长减少。此外,集落形成单位-成纤维细胞(CFU-F)测定表明,这些小鼠的骨髓间充质干细胞和定向祖细胞较少。同样,给予野生型小鼠 EGFR 抑制剂会导致小梁骨体积显著减少。相比之下,具有组成性激活 EGFR 等位基因的 Egfr(Dsk5/+)小鼠表现出小梁骨和皮质骨含量的增加。综上所述,这些数据表明 EGFR 信号通路是一种重要的骨调节因子,主要在骨代谢中发挥合成作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/70a6/3179301/690d81159ff6/jbmr0026-1022-f1.jpg

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