首页> 外文期刊>Journal of tissue engineering and regenerative medicine >Static magnetic field regulates proliferation, migration, differentiation, and YAP/TAZ activation of human dental pulp stem cells
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Static magnetic field regulates proliferation, migration, differentiation, and YAP/TAZ activation of human dental pulp stem cells

机译:静态磁场调节人牙髓干细胞的增殖,迁移,分化和YAP / TAZ活化

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摘要

The dental pulp stem cells (DPSCs) are a population of mesenchymal stem cells, which have multilineage potential and high proliferation. DPSCs are regarded as a promising tool for tissue regeneration of dentine, dental pulp, bone, cartilage, and muscle. Recently, magnetic materials have become commonly applied in dental clinics. Static magnetic field has been reported to regulate the proliferation, migration, or differentiation of stem cells. However, whether static magnetic fields affect DPSCs is still unknown. In our study, we investigated the effect of static magnetic field on the proliferation, migration, and differentiation of DPSCs. The results indicated that static magnetic field rearranged the cytoskeleton of DPSCs. A static magnetic field of 1mT increased DPSC proliferation, as well as the gene expression of several growth factors such as FGF-2, TGF-, and VEGF. Moreover, the static magnetic field promoted the migration of DPSCs by regulating MMP-1 and MMP-2 gene expression. Static magnetic field of 1mT also induced osteo/odontogenesis and mineralization in DPSCs. Otherwise, the static magnetic field recruited YAP/TAZ to the nucleus, inhibited the phosphorylation of YAP/TAZ, and upregulated the two YAP/TAZ-regulated genes, CTGF and ANKRD1. Cytoskeleton inhibitor, cytochalasin D, obviously inhibited the nuclear localization of YAP/TAZ. When YAP/TAZ were knocked-down, the static magnetic field-induced mineralization of DPSCs was diminished. Our findings provide an insight into the effect of static magnetic field on DPSCs and provide the foundation for the future tissue regeneration.
机译:牙科纸浆干细胞(DPSC)是间充质干细胞的群体,具有多线粒潜力和高增殖。 DPSCS被视为牙本质,牙髓,骨,软骨和肌肉组织再生的有希望的工具。最近,磁性材料常用于牙科诊所。据报道,静态磁场调节干细胞的增殖,迁移或分化。但是,静态磁场是否影响DPSC仍然未知。在我们的研究中,我们研究了静态磁场对DPSCS的增殖,迁移和分化的影响。结果表明,静态磁场重新排列了DPSC的细胞骨架。静态磁场1MT增加了DPSC增殖,以及几种生长因子的基因表达,如FGF-2,TGF-和VEGF。此外,静态磁场通过调节MMP-1和MMP-2基因表达来促进DPSC的迁移。 1MT的静态磁场还诱导了DPSC中的骨质/牙盐和矿化。否则,将YAP / TAZ赋予核的静磁场抑制YAP / TAZ的磷酸化,并上调了两个YAP / TAZ调节基因,CTGF和ANKRD1。细胞骨架抑制剂,细胞蛋白D,显然抑制了YAP / TAZ的核定位。当yap / taz被击倒时,DPSCs的静态磁场诱导的矿化率降低。我们的调查结果介绍了静态磁场对DPSC的影响,并为未来的组织再生提供基础。

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