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添加纳米碳酸钙对MTA凝固时间、尺寸变化、抗压强度、溶解度和pH值的影响。

Effects of the addition of nanoparticulate calcium carbonate on setting time, dimensional change, compressive strength, solubility and pH of MTA.

作者信息

Bernardi A, Bortoluzzi E A, Felippe W T, Felippe M C S, Wan W S, Teixeira C S

机构信息

Department of Dentistry, Federal University of Santa Catarina, Florianópolis, Santa Catarina, Brazil.

Department of Materials Engineering, Federal University Ouro Preto, Minas Gerais, Brazil.

出版信息

Int Endod J. 2017 Jan;50(1):97-105. doi: 10.1111/iej.12594. Epub 2016 Jan 13.

Abstract

AIM

To evaluate nanoparticulate calcium carbonate (NPCC) using transmission electron microscopy and the effects of NPCC addition to MTA in regard to the setting time, dimensional change, compressive strength, solubility and pH.

METHODOLOGY

The experimental groups were G1 (MTA), G2 (MTA with 5% NPCC) and G3 (MTA with 10% NPCC). The tests followed ISO and ADA standards. The specimens in the dimensional change and compressive strength tests were measured immediately after setting, after 24 h and after 30 days. In the solubility test, rings filled with cement were weighed after setting and after 30 days. The pH was measured after 24 h and 30 days. The data were analysed with the ANOVA, Tukey's and Kruskal-Wallis tests (α = 5%).

RESULTS

The setting time was reduced (P < 0.05) in samples from G2 and G3 compared to G1. After 24 h, the dimensional change was similar amongst the groups, and after 30 days, G2 was associated with less alteration than G1 and G3. There was a difference in the compressive strength (P < 0.001) after 24 h and 30 days (G1 > G2 > G3). The solubility test revealed a difference amongst the groups when the specimens were hydrated: G2 > G1 > G3 and dehydrated: G3 > G2 > G1. The pH of the groups was similar at 24 h with higher values in each group after 30 days (P < 0.05), and G2 and G3 had similar mean pH values but both were higher than G1.

CONCLUSIONS

Nanoparticulate calcium carbonate had a cubic morphology with few impurities. The addition of nanoparticulate calcium carbonate to MTA accelerated the setting time, decreased compressive strength and, after 30 days, resulted in lower dimensional change (G2), higher solubility and a higher pH.

摘要

目的

使用透射电子显微镜评估纳米碳酸钙(NPCC),并研究添加NPCC对MTA的凝固时间、尺寸变化、抗压强度、溶解度和pH值的影响。

方法

实验组为G1(MTA)、G2(含5%NPCC的MTA)和G3(含10%NPCC的MTA)。测试遵循ISO和ADA标准。尺寸变化和抗压强度测试中的标本在凝固后、24小时后和30天后立即进行测量。在溶解度测试中,填充水泥的环在凝固后和30天后称重。在24小时和30天后测量pH值。数据采用方差分析、Tukey检验和Kruskal-Wallis检验进行分析(α=5%)。

结果

与G1相比,G2和G3组样品的凝固时间缩短(P<0.05)。24小时后,各组之间的尺寸变化相似,30天后,G2组的变化小于G1组和G3组。24小时和30天后抗压强度存在差异(P<0.001)(G1>G2>G3)。溶解度测试显示,水化标本时各组之间存在差异:G2>G1>G3,脱水标本时:G3>G2>G1。各组在24小时时的pH值相似,30天后每组的值更高(P<0.05),G2和G3的平均pH值相似,但均高于G1。

结论

纳米碳酸钙具有立方形态,杂质较少。向MTA中添加纳米碳酸钙可加速凝固时间,降低抗压强度,30天后导致尺寸变化较小(G2组)、溶解度较高和pH值较高。

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