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首页> 外文期刊>Molecular medicine reports >Water-soluble factors eluated from surface pre-reacted glass-ionomer filler promote osteoblastic differentiation of human mesenchymal stem cells
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Water-soluble factors eluated from surface pre-reacted glass-ionomer filler promote osteoblastic differentiation of human mesenchymal stem cells

机译:从表面预反应的玻璃离聚物填充物中汲取的水溶性因子促进人间充质干细胞的骨细胞分化

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摘要

Surface pre-reacted glass-ionomer (S-PRG)-containing dental materials, including composite and coating resins have been used for the restoration and/or prevention of dental cavities. S-PRG is known to have the ability to release aluminum, boron, fluorine, silicon, and strontium ions. Aluminum ions are known to be inhibitors whereas boron, fluorine, silicon, and strontium ions are known to be promoters of mineralization, via osteoblasts. However, it remains to be clarified how an aqueous eluate obtained from S-PRG containing these ions affects the ability of mesenchymal stem cells (MSCs), which are known to be present in dental pulp and bone marrow, to differentiate into osteogenic cell types. The present study demonstrated that 200- to 1,000-fold-diluted aqueous eluates obtained from S-PRG significantly upregulated the mRNA expression level of the osteogenic differentiation marker alkaline phosphatase in human MSCs (hMSCs) without exhibiting the cytotoxic effect. In addition, the 500- to 1,000-fold-diluted aqueous eluates obtained from S-PRG significantly and clearly promoted mineralization of the extracellular matrix of hMSCs. It was additionally demonstrated that hMSCs cultured on the cured resin composites containing S-PRG fillers exhibited osteogenic differentiation in direct correlation with the weight percent of S-PRG fillers. These results strongly suggested that aqueous eluates of S-PRG fillers promoted hard tissue formation by hMSCs, implicating that resins containing S-PRG may act as a useful biomaterial to cover accidental exposure of dental pulp.
机译:预反应的表面的玻璃离聚物(S-PRG)含牙科材料,包括复合材料和涂覆树脂已被用于牙腔的恢复和/或预防。已知S-PRG具有释放铝,硼,氟,硅和锶离子的能力。已知铝离子是抑制剂,而硼,氟,硅和锶离子是通过成骨细胞的矿化的启动子。然而,它仍然阐明了含有这些离子的S-PRG的水性洗脱液如何影响所知的间充质干细胞(MSCs)的能力,这已知存在于牙髓和骨髓中,以区分成骨质发生细胞类型。本研究表明,从S-PRG获得200-至1,000倍稀释的含水洗脱液显著上调人MSC(hMSC)的培养成骨分化标记物碱性磷酸酶的mRNA表达水平没有表现出细胞毒性作用。此外,从S-PRG获得的500至1,000倍稀释的水溶液显着,明显地促进了HMSC的细胞外基质的矿化。另外证明,在含有S-PRG填料的固化树脂复合材料上培养的HMSCs表现出与S-PRG填料的重量百分比直接相关的成骨分化。这些结果强烈建议S-PRG填料的水溶液通过HMSC促进了硬组织形成,暗示含有S-PRG的树脂可以作为涵盖牙髓意外暴露的有用生物材料。

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