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首页> 外文期刊>Journal of molecular histology >Maturation of cortical bone suppresses periosteal osteoprogenitor proliferation in a paracrine manner
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Maturation of cortical bone suppresses periosteal osteoprogenitor proliferation in a paracrine manner

机译:皮质骨成熟以旁分泌方式抑制骨膜骨祖细胞增殖

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Periosteum contains enriched pools of osteogenic progenitors and is highly proliferative, thus giving this tissue a pivotal role in maintaining the diameter of the diaphyseal cortex and in recovery from fractures. Although periosteal proliferation has not been detected in normal bone, intense periosteal proliferation has been observed in pathologic states such as fracture, inflammation, and bone tumors. However, the mechanism by which periosteal osteoprogenitor proliferation is regulated remains poorly understood. To investigate this regulation mechanism, osteoblast/osteocyte-specific conditional knockout mice were developed lacking Smad4 and Osx, two factors that are essential for osteoblast differentiation and matrix mineralization. In Smad4 (Col) and Osx (Col) mice, osteocalcin, Dmp-1, and sclerostin expression were significantly decreased in the cortical bone. Interestingly, although Cre activity was not observed in the periosteum, the proliferation of periosteal osteoprogenitors was enhanced in Smad4 (Col) and Osx (Col) mice, as assessed by 5'-bromo-2'deoxyuridine incorporation and proliferating cell nuclear antigen localization. Since Wnt signaling is a major factor affecting periosteal proliferation, we evaluated Wnt signaling in the periosteum. The expression levels of beta-catenin and Lef-1 were increased in the periosteal osteoprogenitors. Moreover, the mRNA levels of beta-catenin, cyclin D1, Lef-1, and Axin2, all of which are Wnt target genes, were significantly increased in the periosteum of both Smad4 (Col) and Osx (Col) mice. These results indicated that extracellular proteins secreted by mature osteoblasts and osteocytes suppress the proliferation of periosteal osteoprogenitors by blocking Wnt signaling in a paracrine manner. Our data suggest a new concept of periosteal bone healing and periosteal bone formation.
机译:骨膜含有丰富的成骨祖细胞,并且高度增殖,因此使该组织在维持骨干皮质的直径以及从骨折中恢复中起关键作用。尽管在正常骨骼中未检测到骨膜增生,但在诸如骨折,发炎和骨肿瘤等病理状态下仍观察到强烈的骨膜增生。然而,人们尚不清楚调节骨膜骨祖细胞增殖的机制。为了研究这种调节机制,开发了缺少Smad4和Osx的成骨细胞/骨细胞特异性条件敲除小鼠,这两个因子对于成骨细胞分化和基质矿化至关重要。在Smad4(Col)和Osx(Col)小鼠中,骨皮质中骨钙素,Dmp-1和硬化蛋白的表达显着降低。有趣的是,尽管在骨膜中未观察到Cre活性,但通过5'-bromo-2'脱氧尿苷掺入和增殖细胞核抗原定位评估,Smad4(Col)和Osx(Col)小鼠的骨膜骨祖细胞的增殖得到增强。由于Wnt信号是影响骨膜增生的主要因素,因此我们评估了骨膜中的Wnt信号。骨膜骨祖细胞中β-catenin和Lef-1的表达水平增加。此外,所有都是Wnt靶基因的β-catenin,cyclin D1,Lef-1和Axin2的mRNA水平在Smad4(Col)和Osx(Col)小鼠的骨膜中均显着增加。这些结果表明,成熟的成骨细胞和成骨细胞分泌的细胞外蛋白通过旁分泌方式阻断Wnt信号传导来抑制骨膜骨祖细胞的增殖。我们的数据提示了骨膜骨愈合和骨膜骨形成的新概念。

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