首页> 外文期刊>Journal of molecular histology >Wnt5a mediated canonical Wnt signaling pathway activation in orthodontic tooth movement: possible role in the tension force-induced bone formation
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Wnt5a mediated canonical Wnt signaling pathway activation in orthodontic tooth movement: possible role in the tension force-induced bone formation

机译:Wnt5a介导的正畸牙齿运动中的经典Wnt信号通路激活:可能在张力诱导的骨形成中起作用

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Orthodontic tooth movement (OTM) is associated with bone remodeling mediated by orthodontic mechanical loading. Increasing studies reported that Wnt signaling played crucial roles in mechanical stimuli induced bone remodeling. However, little is known about the involvement of Wnt signaling in orthodontic force-induced bone formation during OTM. In virtue of the OTM mice model as we previously reported, where new bone formation was determined by micro-CT and immunoreactivity of osteocalcin and osterix, we explored the activation of Wnt signaling pathway during OTM. Our results proved the nuclei translocation of beta-catenin, suggesting the activation of canonical Wnt signaling pathway in the periodontal ligament cells (PDLCs) near the alveolar bone at the tension site (TS). Moreover, the immunoreactivity of Wnt5a, but not Wnt3a in PDLCs indicated the activation of canonical Wnt pathway might be mediated by Wnt5a, but not Wnt3a as in most cases. The co-location of Wnt5a and beta-catenin that was evidenced by double labeling immunofluorescence staining further supported the hypothesis. In addition, the high expression of FZD4 and LRP5 in PDLCs at TS of periodontium suggested that the activation of Wnt signaling pathway was mediated by these receptors. The negligible expression of ROR2 also indicated that canonical but not non-canonical Wnt signaling pathway was activated by Wnt5a, since previous studies demonstrated that the activation of canonicalon-canonical Wnt signaling pathway was largely dependent on the receptors. In summary, we here reported that Wnt5a mediated activation of canonical Wnt signaling pathway might contribute to the orthodontic force induced bone remodeling.
机译:正畸牙齿移动(OTM)与由正畸机械负荷介导的骨骼重塑有关。越来越多的研究报道,Wnt信号在机械刺激诱导的骨重塑中起关键作用。但是,关于Wnt信号参与OTM期间正畸力诱导的骨形成的了解甚少。根据我们先前报道的OTM小鼠模型,其中通过micro-CT和骨钙素和osterix的免疫反应性确定了新的骨形成,我们探索了OTM期间Wnt信号通路的激活。我们的结果证明了β-catenin的核易位,表明在张力位点(TS)的牙槽骨附近的牙周膜细胞(PDLCs)中经典Wnt信号通路的激活。此外,PDLC中Wnt5a的免疫反应性而非Wnt3a的免疫反应性表明,经典Wnt途径的激活可能是由Wnt5a介导的,而不是大多数情况下由Wnt3a介导的。 Wnt5a和β-catenin的共定位可通过双标记免疫荧光染色证明,进一步支持了这一假说。此外,FZD4和LRP5在牙周膜TS的PDLC中的高表达表明Wnt信号通路的激活是由这些受体介导的。 ROR2的表达可忽略不计还表明Wnt5a激活了经典但非经典的Wnt信号通路,因为先前的研究表明,经典/非经典Wnt信号通路的激活很大程度上取决于受体。总而言之,我们在这里报道了Wnt5a介导的经典Wnt信号通路的激活可能有助于正畸力诱导的骨重塑。

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