Osathanon Thanaphum, Manokawinchoke Jeeranan, Egusa Hiroshi, Pavasant Prasit
Mineralized Tissue Research Unit and Craniofacial Genetics and Stem Cells Research Group, Department of Anatomy, Faculty of Dentistry, Chulalongkorn University.
Division of Molecular and Regenerative Prosthodontics, Tohoku University Graduate School of Dentistry.
J Oral Sci. 2017;59(3):405-413. doi: 10.2334/josnusd.16-0552.
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.
Notch信号通路参与成骨分化;然而,其作用因细胞类型和分化阶段而异。在此,我们研究了Notch信号通路在经视黄酸处理的、源自小鼠牙龈成纤维细胞诱导多能干细胞(mGF-iPSCs)的胚状体的成骨分化中的作用。当在成骨培养基中培养时,mGF-iPSCs的成骨标记基因表达增加,并沉积了矿化基质。此外,还观察到Notch1、Notch2和Hey1的mRNA水平升高。在成骨诱导过程中,在存在Notch信号抑制剂DAPT的情况下,成骨标记基因的mRNA水平显著降低;然而,矿化沉积未见差异。此外,使用固定有Jagged1的表面激活Notch信号通路,在成骨诱导的第3天和第7天导致体外矿化略有增加。在Jagged1表面培养的mGF-iPSCs中观察到Dlx5、Bsp和Col I mRNA表达显著上调。总之,Notch信号通路的抑制和激活分别显示出降低和增加mGF-iPSC的成骨分化。然而,这些反应并不强烈,表明还涉及其他信号通路。