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FAK mediates BMP9-induced osteogenic differentiation via Wnt and MAPK signaling pathway in synovial mesenchymal stem cells

机译:FAK通过滑膜间充质干细胞中的Wnt和MAPK信号通路介导BMP9诱导的成骨分化

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Objective: Focal adhesion kinase (FAK) has critical functions in proliferation and differentiation of many cell types, however, the role of FAK on BMP9-induced osteogenic differentiation in SMSCs has not been characted. The purpose of current study is to explore the mechanism of FAK on the BMP9-induced osteogenesis of SMSCs in vitro and in vivo . Methods: The optimal dose of BMP9 was determined by incubation in different BMP9 concentrations, then cells were transfected with siRNA-induced FAK knockdown in BMP9-induced osteogenesis. Cell proliferation, migration, the osteogenic capacity, and the underlying mechanism were further detected in vitro . Imaging and pathological examination were conducted to observe the bone formation in vivo . Results: Our findings suggested that BMP9 could obviously promote FAK phosphorylation in osteogenic conditions. In contrast, FAK knockdown significantly decreased the cell proliferation, migration, the osteogenic capacity of SMSCs. To be specific, FAK knockdown could markedly inhibit the Wnt and MAPK signal pathway of SMSCs induced by BMP9. Besides, FAK knockdown could also effectively inhibit BMP-9-induced bone formation in vivo . Conclusion: FAK plays a pivotal role in promoting BMP9-induced osteogenesis of SMSCs, which is probably via activating Wnt and MAPK pathway.
机译:目的:黏着斑激酶(FAK)在许多细胞类型的增殖和分化中起着关键作用,但是,FAK在BMP9诱导的SMSCs成骨分化中的作用尚未阐明。本研究的目的是探讨FAK在体外和体内BMP9诱导SMSC成骨的机制。方法:通过在不同浓度的BMP9中孵育确定最佳的BMP9剂量,然后在siRNA诱导的FAK敲低中转染细胞,以诱导BMP9诱导成骨。在体外进一步检测了细胞增殖,迁移,成骨能力和潜在机制。进行成像和病理检查以观察体内的骨形成。结果:我们的发现表明BMP9在成骨条件下可以明显促进FAK磷酸化。相比之下,FAK敲低显着降低了SMSC的细胞增殖,迁移和成骨能力。具体而言,FAK敲低可以显着抑制BMP9诱导的SMSC的Wnt和MAPK信号通路。此外,FAK敲除还可以有效抑制体内BMP-9诱导的骨形成。结论:FAK可能通过激活Wnt和MAPK途径来促进BMP9诱导的SMSC的成骨作用。

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