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首页> 外文期刊>Biological trace element research >Boron enhances odontogenic and osteogenic differentiation of human tooth germ stem cells (hTGSCs) in vitro
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Boron enhances odontogenic and osteogenic differentiation of human tooth germ stem cells (hTGSCs) in vitro

机译:硼增强人牙胚干细胞(hTGSCs)的牙源性和成骨性分化

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摘要

Stem cell technology has been a great hope for the treatment of many common problems such as Parkinson's disease, Alzheimer's disease, diabetes, cancer, and tissue regeneration. Therefore, the main challenge in hard tissue engineering is to make a successful combination of stem cells and efficient inductors in the concept of stem cell differentiation into odontogenic and osteogenic cell types. Although some boron derivatives have been reported to promote bone and teeth growth in vivo, the molecular mechanism of bone formation has not been elucidated yet. Different concentrations of sodium pentaborate pentahydrate (NaB) were prepared for the analysis of cell toxicity and differentiation evaluations. The odontogenic, osteogenic differentiation and biomineralization of human tooth germ stem cells (hTGSCs) were evaluated by analyzing the mRNA expression levels, odontogenic and osteogenic protein expressions, alkaline phosphatase (ALP) activity, mineralization, and calcium deposits. The NaB-treated group displayed the highest ALP activity and expression of osteo- and odontogenic-related genes and proteins compared to the other groups and baseline. In the current study, increased in vitro odontogenic and osteogenic differentiation capacity of hTGSCs by NaB application has been shown for the first time. The study offers considerable promise for the development of new scaffold systems combined with NaB in both functional bone and tooth tissue engineering.
机译:干细胞技术对于治疗许多常见问题(如帕金森氏病,阿尔茨海默氏病,糖尿病,癌症和组织再生)有着巨大的希望。因此,在硬组织工程中的主要挑战是在干细胞分化为牙源性和成骨细胞类型的概念中成功地将干细胞和有效的诱导剂结合起来。尽管已经报道了一些硼衍生物在体内促进骨骼和牙齿的生长,但是还没有阐明骨骼形成的分子机制。制备了不同浓度的五水合五水合硫酸钠(NaB),用于细胞毒性分析和分化评估。通过分析mRNA表达水平,成牙和成骨蛋白表达,碱性磷酸酶(ALP)活性,矿化和钙沉积来评估人牙胚干细胞(hTGSCs)的成牙,成骨分化和生物矿化作用。与其他组和基线相比,经NaB处理的组显示出最高的ALP活性以及与骨和牙源性相关的基因和蛋白质的表达。在当前的研究中,首次显示了通过NaB施用增加了hTGSC的体外成牙和成骨分化能力。该研究为在功能性骨骼和牙齿组织工程中开发与NaB结合的新型支架系统提供了可观的前景。

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