首页> 外文期刊>Applied biochemistry and biotechnology, Part A. enzyme engineering and biotechnology >Effect of Lactoferrin on Odontogenic Differentiation of Stem Cells Derived from Human 3rdMolar Tooth Germ
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Effect of Lactoferrin on Odontogenic Differentiation of Stem Cells Derived from Human 3rdMolar Tooth Germ

机译:乳铁蛋白对人第三磨牙牙胚干细胞成牙细胞分化的影响

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摘要

Stem cell technology has been a great hope for the treatment of many common tissue regeneration-related diseases. Therefore, the main challenge in hard tissue engineering is to make a successful combination of stem cells and efficient inductors such as biomaterials or growth factors, in the concept of stem cell conversion into odontogenic cell. Even though lactoferrin has been reported to promote bone growth in vivo, the molecular mechanism of teeth formation has not been elucidated yet. Different concentrations of lactoferrin were prepared for the analysis of cell toxicity and differentiation evaluations. The odontogenic differentiation of human tooth germ stem cells (hTGSCs) was assessed by gene expression analysis, determination of protein levels in odontogenic differentiation-related protein, measuring alkaline phosphatase (ALP) activity, mineralization, and calcium deposit levels. Lactoferrin-treated group showed the highest ALP activity as opposed to the other groups which were untreated. In addition, the gene expression levels as well as the protein levels of odontogenic factors were found to be high in compared to the control groups. In the current study, it is shown for the first time that there is a significant increase in odontogenic differentiation capacity in hTGSCs when lactoferrin is applied in vitro. The study offers a considerable promise for the development of pulp regeneration by using stem cell technology combined with lactoferrin in functional tooth tissue engineering.
机译:干细胞技术已成为治疗许多常见的组织再生相关疾病的巨大希望。因此,在干细胞转化成牙源性细胞的概念中,硬组织工程学中的主要挑战是成功地将干细胞与有效的诱导剂(如生物材料或生长因子)成功结合。尽管已报道乳铁蛋白可促进体内骨骼生长,但尚未阐明牙齿形成的分子机制。制备了不同浓度的乳铁蛋白,用于细胞毒性分析和分化评估。通过基因表达分析,确定牙源性分化相关蛋白中的蛋白质水平,测量碱性磷酸酶(ALP)活性,矿化和钙沉积水平来评估人牙胚干细胞(hTGSCs)的牙源性分化。与未治疗的其他组相反,乳铁蛋白治疗组显示最高的ALP活性。另外,发现牙源性因子的基因表达水平和蛋白质水平与对照组相比较高。在当前的研究中,首次表明,在体外应用乳铁蛋白时,hTGSCs的牙源性分化能力显着增加。该研究为在功能性牙齿组织工程中使用干细胞技术与乳铁蛋白相结合为牙髓再生的发展提供了可观的前景。

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