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首页> 外文期刊>Journal of Oral Science >Notch signaling partly regulates the osteogenic differentiation of retinoic acid-treated murine induced pluripotent stem cells
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Notch signaling partly regulates the osteogenic differentiation of retinoic acid-treated murine induced pluripotent stem cells

机译:Notch信号部分调节视黄酸处理的小鼠诱导的多能干细胞的成骨分化

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Notch signaling is involved in osteogenic differentiation; however, its role differs depending on cell type and differentiation stage. Here, we investigated the involvement of Notch signaling in the osteogenic differentiation of retinoic acid-treated embryoid bodies derived from mouse gingival fibroblast-derived induced pluripotent stem cells (mGF-iPSCs). When cultured in osteogenic media, mGF-iPSCs showed an increase in their expression of osteogenic marker genes and deposited a mineralized matrix. Furthermore, increased levels of mRNA for Notch1 , Notch2 , and Hey1 were observed. In the presence of DAPT, a Notch signaling inhibitor, during osteogenic induction, mRNA levels for osteogenic marker genes were significantly decreased; however, no difference was noted in mineral deposition. Moreover, activation of Notch signaling using Jagged1-immobilized surfaces resulted in a slight increase of in vitro mineralization on days 3 and 7 of osteogenic induction. Significant upregulation of Dlx5 , Bsp , and Col I mRNA expression was observed in mGF-iPSCs cultured on Jagged1 surfaces. In conclusion, inhibition and activation of Notch signaling was shown to decrease and increase mGF-iPSC osteogenic differentiation, respectively. However, the responses were not robust, suggesting the involvement of additional signaling pathways.
机译:Notch信号传导与成骨分化有关。但是,其作用取决于细胞类型和分化阶段。在这里,我们调查了Notch信号参与视黄酸处理的胚状体的成骨分化,该胚状体衍生自小鼠牙龈成纤维细胞衍生的诱导多能干细胞(mGF-iPSCs)。当在成骨培养基中培养时,mGF-iPSC显示出其成骨标记基因表达的增加并沉积了矿化基质。此外,观察到Notch1,Notch2和Hey1的mRNA水平升高。在Notch信号抑制剂DAPT的存在下,成骨诱导过程中,成骨标记基因的mRNA水平显着降低。然而,在矿物沉积上没有发现差异。此外,使用固定的锯齿状表面激活Notch信号导致成骨诱导第3天和第7天体外矿化略有增加。在Jagged1表面培养的mGF-iPSC中观察到Dlx5,Bsp和Col I mRNA表达的显着上调。总之,Notch信号的抑制和激活分别降低和增加了mGF-iPSC成骨分化。但是,反应并不强健,表明涉及其他信号通路。

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