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Effects of dodecacalcium hepta-aluminate content on the setting time, compressive strength, alkalinity, and cytocompatibility of tricalcium silicate cement

机译:十二烷磷酸铝酸铝含量对静态硅酸盐水泥的凝固时间,抗压强度,碱度和细胞栓塞性的影响

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摘要

Abstract Objective This study aimed to investigate the effects of dodecacalcium hepta-aluminate (C12A7) content on some physicochemical properties and cytocompatibility of tricalcium silicate (C3S) cement using human dental pulp cells (hDPCs). Material and Methods High purity C3S cement was manufactured by a solid phase method. C12A7 was mixed with the cement in proportions of 0, 5, 8, and 10 wt% (C12A7-0, −5, −8, and −10, respectively). Physicochemical properties including initial setting time, compressive strength, and alkalinity were evaluated. Cytocompatibility was assessed with cell viability tests and cell number counts. Statistical analysis was performed by using one-way analysis of variance (ANOVA) and Tukey's test (p<0.05). Results The initial setting time of C3S-based cement was shorter in the presence of C12A7 (p<0.05). After 1 day, C12A7-5 showed significantly higher compressive strength than the other groups (p0.05). The C12A7-5 group showed similar cell viability to the C12A7-0 group (p>0.05), while the other experimental groups showed lower values compared to C12A7-0 group (p<0.05). The number of cells grown on the C12A7-5 specimen was higher than that on C12A7-8 and −10 (p<0.05). Conclusions The addition of C12A7 to C3S cement at a proportion of 5% resulted in rapid initial setting time and higher compressive strength with no adverse effects on cytocompatibility.
机译:摘要目的本研究旨在使用人牙髓细胞(HDPC)来研究十二烷磷酸铝酸铝酸盐(C12A7)含量对一些物理化学性质和硅酸钙(C3S)水泥的细胞组织性的影响。材料和方法通过固相法制造高纯度C3S水泥。用0,5,8和10wt%(C12A7-0,-5,-8和-10)的比例混合C12A7与水泥混合。评估了物理化学性质,包括初始设定时间,抗压强度和碱度。用细胞活力测试和细胞数计数评估细胞偶联性。通过使用差异(ANOVA)和Tukey的试验的单向分析进行统计分析(P <0.05)。结果C12A7存在下C3S基水泥的初始设定时间短(P <0.05)。 1天后,C12A7-5显示比其他组的抗压强度明显较高(P0.05)。 C12A7-5组显示与C12A7-0组相似的细胞活力(P> 0.05),而另一种实验组显示与C12A7-0组相比较低的值(P <0.05)。 C12A7-5样本上生长的细胞数高于C12A7-8和-10(P <0.05)。结论将C12A7加入C12A7至C3S水泥的比例为5%,导致快速初始设定时间和更高的抗压强度,对细胞相容性没有不利影响。

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