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首页> 外文期刊>Journal of cellular biochemistry. >Basic fibroblast growth factor inhibits mineralization but induces neuronal differentiation by human dental pulp stem cells through a FGFR and PLCgamma signaling pathway.
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Basic fibroblast growth factor inhibits mineralization but induces neuronal differentiation by human dental pulp stem cells through a FGFR and PLCgamma signaling pathway.

机译:碱性成纤维细胞生长因子抑制矿化,但通过FGFR和PLCgamma信号通路通过人牙髓干细胞诱导神经元分化。

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摘要

Basic fibroblast growth factor (basic FGF) has pivotal roles in the function of various cell types. Here, we report the effects of basic FGF in the regulation of dental pulp stem cell (DPSC) behaviors including maintaining stemness and directing differentiation. Cells isolated from human dental pulp tissues exhibited stem cell properties including the expression of mRNA markers for embryonic and mesenchymal stem cells, the expression of Stro-1, and the multipotential differentiation. Basic FGF stimulated colony-forming units of DPSCs and up-regulated the expression of the embryonic stem cell markers; Oct4, Rex-1, and Nanog. Moreover, osteogenic medium containing basic FGF inhibited alkaline phosphatase enzymatic activity and mineralization of DPSCs. On the contrary, basic FGF appeared to be an influential growth factor in the neurogenic differentiation of DPSCs. In the presence of basic FGF, increased DPSCs neurosphere size and the up-regulation of neurogenic markers were noted. Inhibitors of FGFR or PLCgamma were able to ablate the basic FGF-induced neuronal differentiation of DPSCs. Taken together, these results suggest basic FGF may be involved in the mechanisms controlling DPSCs cell fate decisions.
机译:碱性成纤维细胞生长因子(碱性FGF)在各种细胞类型的功能中具有关键作用。在这里,我们报告了碱性FGF在调节牙髓干细胞(DPSC)行为(包括保持干度和定向分化)中的作用。从人类牙髓组织分离的细胞表现出干细胞特性,包括胚胎和间充质干细胞的mRNA标志物的表达,Stro-1的表达以及多能分化。碱性FGF刺激DPSC的集落形成单位并上调胚胎干细胞标志物的表达; Oct4,Rex-1和Nanog。而且,含有碱性FGF的成骨培养基抑制了碱性磷酸酶的酶活性和DPSC的矿化。相反,碱性FGF似乎是DPSCs神经发生分化中的重要生长因子。在存在碱性FGF的情况下,注意到DPSCs神经球的大小增加和神经原性标记的上调。 FGFR或PLCgamma抑制剂能够消除FGF诱导的DPSCs的基本神经元分化。综上所述,这些结果表明基本的FGF可能参与了控制DPSCs细胞命运决定的机制。

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