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Sclerostin expression in trabecular bone is downregulated by osteoclasts

机译:小梁骨中的硬化素表达是通过骨质糖蛋白下调的

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Bone tissues have trabecular bone with a high bone turnover and cortical bone with a low turnover. The mechanisms by which the turnover rate of these bone tissues is determined remain unclear. Osteocytes secrete sclerostin, a Wnt/β-catenin signaling antagonist, and inhibit bone formation. We found that sclerostin expression in cortical bone is more marked than in trabecular bone in Sost reporter mice. Leukemia inhibitory factor (LIF) secreted from osteoclasts reportedly suppressed sclerostin expression and promoted bone formation. Here, we report that osteoclasts downregulate sclerostin expression in trabecular bone and promote bone turnover. Treatment of C57BL/6 mice with an anti-RANKL antibody eliminated the number of osteoclasts and LIF-positive cells in trabecular bone. The number of sclerostin-positive cells was increased in trabecular bone, while the number of β-catenin-positive cells and bone formation were decreased in trabecular bone. Besides, Tnfsf11 heterozygous (Rankl+/?) mice exhibited a decreased number of LIF-positive cells and increased number of sclerostin-positive cells in trabecular bone. Rankl+/? mice exhibited a decreased number of β-catenin-positive cells and reduced bone formation in trabecular bone. Furthermore, in cultured osteoclasts, RANKL stimulation increased Lif mRNA expression, suggesting that RANKL signal increased LIF expression. In conclusion, osteoclasts downregulate sclerostin expression and promote trabecular bone turnover.
机译:骨组织的骨质骨具有高骨质周转和皮质骨,营业额低。确定这些骨组织的周转率的机制仍然不清楚。骨细胞分泌Sclerostin,一种Wnt /β-catenin信号传导拮抗剂,抑制骨形成。我们发现皮质骨中的硬化素表达比SOST报告小鼠中的小梁骨骼更标记。据报道,从破骨细胞分泌的白血病抑制因子(LIF)被抑制了硬化蛋白表达和促进骨形成。在这里,我们报告了骨核苷酸下调骨蛋白表达在小梁骨中并促进骨质周转。用抗RANKL抗体处理C57BL / 6小鼠消除了骨骨中骨细胞和LIF阳性细胞的数量。骨骨中含有蛋白阳性细胞的数量增加,而β-连环蛋白阳性细胞和骨形成的数量在小梁骨中降低。此外,TNFSF11杂合(RANKL + /α)小鼠表现出降低的LIF阳性细胞数量,并且在小梁骨中增加了燃料蛋白阳性细胞数量增加。 Rankl + /?小鼠表现出β-连环蛋白阳性细胞的数量降低,并在小梁骨中降低骨形成。此外,在培养的破骨细胞中,RANKL刺激增加了LIF mRNA表达,表明RANKL信号增加了生命表达。总之,骨质糖叶蛋白下调燃料素表达并促进了骨质周转。

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