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Characterization of Living Dental Pulp Cells in Direct Contact with Mineral Trioxide Aggregate

机译:与矿物三氧化物聚集体直接接触生活牙髓细胞的表征

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摘要

Mineral trioxide aggregate (MTA) was introduced as a material for dental endodontic regenerative therapy. Here, we show the dynamics of living dental pulp cells in direct contact with an MTA disk. A red fluorescence protein (DsRed) was introduced into immortalized porcine dental pulp cells (PPU7) and cloned. DsRed-PPU7 cells were cultured on the MTA disk and cell proliferation, chemotaxis, the effects of growth factors and the gene expression of cells were investigated at the biological, histomorphological and genetic cell levels. Mineralized precipitates formed in the DsRed-PPU7 cells were characterized with crystal structural analysis. DsRed-PPU7 cells proliferated in the central part of the MTA disk until Day 6 and displayed a tendency to move to the outer circumference. Both transforming growth factor beta and bone morphogenetic protein promoted the proliferation and movement of DsRed-PPU7 cells and also enhanced the expression levels of odontoblastic gene differentiation markers. Mineralized precipitates formed in DsRed-PPU7 were composed of calcium and phosphate but its crystals were different in each position. Our investigation showed that DsRed-PPU7 cells in direct contact with the MTA disk could differentiate into odontoblasts by controlling cell–cell and cell–substrate interactions depending on cell adhesion and the surrounding environment of the MTA.
机译:将矿物三氧化物骨料(MTA)作为牙齿牙髓再生治疗的材料引入。在这里,我们展示了与MTA盘直接接触的活牙髓细胞的动态。将红色荧光蛋白(DSRED)引入永生化猪牙髓细胞(PPU7)并克隆。 DSRED-PPU7细胞在MTA盘和细胞增殖上培养,在生物学,组织形态和遗传细胞水平下研究了生长因子的影响和细胞的基因表达。用晶体结构分析表征在DSRED-PPU7细胞中形成的矿化沉淀物。 DSRED-PPU7细胞在MTA盘的中心部分中增殖,直到第6天,并显示出移动到外圆周的趋势。转化增长因子β和骨形态发生蛋白均促进了DSRED-PPU7细胞的增殖和运动,并增强了异甘油束性基因分化标志物的表达水平。在DSRED-PPU7中形成的矿化沉淀物由钙和磷酸盐组成,但其晶体在每个位置不同。我们的研究表明,通过控制细胞粘附和MTA的周围环境,通过控制细胞 - 细胞和细胞 - 基质相互作用,可以将DSRED-PPU7细胞与MTA盘直接接触。

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