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Effect of a novel fluorapatite-forming calcium phosphate cement with calcium silicate on osteoblasts in comparison with mineral trioxide aggregate

机译:新型含氟磷灰石的磷酸钙硅酸盐水泥与三氧化二矿物骨料相比对成骨细胞的影响

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We compared the effects of treatment with fluorapatite-forming calcium phosphate cement (FA-forming CPC) containing tricalcium silicate (TCS) and those of mineral trioxide aggregate (MTA), the gold standard endodontic cement, on cultured osteoblast-like cells (ROS 17/2.8 cells; ROS cells). The FA-forming CPC powder consisted of 61.29% CaHPO4, 32.26% CaCO3, and 6.45% NaF. One part TCS was combined with nine parts FA-forming CPC powder to make FA-forming CPC with TCS. A 1.5-M phosphate solution was mixed as a cement liquid with a powder/liquid ratio of 2.22. Cell culture was carried out using cell culture inserts, whereby each test material was put on a porous membrane insert in the cell culture plate. Proliferation, morphologic changes, and alkaline phosphatase activity in ROS cells were measured in the presence of FA-forming CPC with TCS and MTA and compared. The logarithmic growth phase and cellular morphologic changes in ROS cells were identical in all experimental groups. Additionally, no significant difference in alkaline phosphatase activity was noted in ROS cells exposed to FA-forming CPC with TCS and those exposed to MTA. In conclusion, FA-forming CPC with TCS has characteristics identical to those of MTA under the present experimental conditions and may thus be useful for endodontic applications. (J Oral Sci 57, 25-30, 2015)
机译:我们比较了用含硅酸三钙(TCS)的形成氟磷灰石的磷酸钙水泥(FA形成的CPC)和金标准牙髓用三聚矿物质(MTA)的处理对培养的成骨细胞样细胞(ROS 17)的影响/2.8细胞; ROS细胞)。形成FA的CPC粉末由61.29%CaHPO 4 ,32.26%CaCO 3 和6.45%NaF组成。将TCS的一部分与9份FA形成的CPC粉末混合,用TCS制成FA形成的CPC。将1.5-M磷酸盐溶液作为水泥液体混合,粉/液比为2.22。使用细胞培养插入物进行细胞培养,由此将每种测试材料置于细胞培养板中的多孔膜插入物上。在有TCS和MTA的形成FA的CPC的存在下,测量ROS细胞的增殖,形态变化和碱性磷酸酶活性,并进行比较。在所有实验组中,ROS细胞的对数生长期和细胞形态变化均相同。此外,在暴露于具有TCS的FA形成CPC的ROS细胞和暴露于MTA的ROS细胞中,碱性磷酸酶的活性没有显着差异。总之,在当前的实验条件下,具有TCS的FA形成的CPC具有与MTA相同的特性,因此可用于牙髓治疗。 (J Oral Sci 57,25-30,2015)

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