首页> 外文期刊>International endodontic journal >Changes in the surface of four calcium silicate-containing endodontic materials and an epoxy resin-based sealer after a solubility test
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Changes in the surface of four calcium silicate-containing endodontic materials and an epoxy resin-based sealer after a solubility test

机译:溶解度测试后,四种含硅酸钙的牙髓材料和一种环氧树脂基密封剂的表面变化

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Aim To compare the changes in the surface structure and elemental distribution, as well as the percentage of ion release, of four calcium silicate-containing endodontic materials with a well-established epoxy resin-based sealer, submitted to a solubility test. Methodology Solubility of AH Plus, iRoot SP, MTA Fillapex, Sealapex and MTA-Angelus (MTA-A) was tested according to ANSI/ADA Specification 57. The deionized water used in the solubility test was submitted to atomic absorption spectrophotometry to determine and quantify Ca 2+, Na +, K +, Zn 2+, Ni 2+ and Pb 2+ ions release. In addition, the outer and inner surfaces of nonsubmitted and submitted samples of each material to the solubility test were analysed by means of scanning electron microscopy and energy-dispersive spectroscopy (SEM/EDX). Statistical analysis was performed by using one-way anova and Tukey's post hoc tests (α=0.05). Results Solubility results, in percentage, sorted in an increasing order were -1.24± 0.19 (MTA-A), 0.28 ± 0.08 (AH Plus), 5.65±0.80 (Sealapex), 14.89 ±0.73 (MTA Fillapex) and 20.64±1.42 (iRoot SP). AH Plus and MTA-A were statistically similar (P0.05), but different from the other materials (P0.05). High levels of Ca 2+ ion release were observed in all groups except AH Plus sealer. MTA-A also had the highest release of Na 2+ and K + ions. Zn +2 ion release was observed only with AH Plus and Sealapex sealers. After the solubility test, all surfaces had morphological changes. The loss of matrix was evident and the filler particles were more distinguishable. EDX analysis displayed high levels of calcium and carbon at the surface of Sealapex, MTA Fillapex and iRoot SP. Conclusions AH Plus and MTA-A were in accordance with ANSI/ADA's requirements regarding solubility whilst iRoot SP, MTA Fillapex and Sealapex did not fulfil ANSI/ADA's protocols. High levels of Ca 2+ ion release were observed in all materials except AH Plus. SEM/EDX analysis revealed that all samples had morphological changes in both outer and inner surfaces after the solubility test. High levels of calcium and carbon were also observed at the surface of all materials except AH Plus and MTA-A.
机译:目的为了比较四种含硅酸钙的牙髓材料与表面活性和完善的环氧树脂密封剂的表面结构和元素分布以及离子释放百分比的变化,并进行了溶解度测试。方法学根据ANSI / ADA规范57测试了AH Plus,iRoot SP,MTA Fillapex,Sealapex和MTA-Angelus(MTA-A)的溶解度。溶解度测试中使用的去离子水经过原子吸收分光光度法测定和定量Ca 2+,Na +,K +,Zn 2+,Ni 2+和Pb 2+离子释放。另外,通过扫描电子显微镜和能量色散光谱法(SEM / EDX)分析了每种材料未提交和提交的溶解度测试的外表面和内表面。使用单向方差分析和Tukey事后检验(α= 0.05)进行统计分析。结果溶解度结果按百分比升序排列为-1.24±0.19(MTA-A),0.28±0.08(AH Plus),5.65±0.80(Sealapex),14.89±0.73(MTA Fillapex)和20.64±1.42( iRoo​​t SP)。 AH Plus和MTA-A在统计学上相似(P> 0.05),但与其他材料不同(P <0.05)。除AH Plus密封剂外,所有组均观察到高水平的Ca 2+离子释放。 MTA-A还具有最高的Na 2+和K +离子释放。仅在AH Plus和Sealapex密封剂中观察到Zn +2离子释放。溶解度测试后,所有表面都有形态变化。基质的损失是明显的,并且填料颗粒更加可分辨。 EDX分析显示,Sealapex,MTA Fillapex和iRoot SP的表面钙和碳含量很高。结论AH Plus和MTA-A符合ANSI / ADA关于溶解度的要求,而iRoot SP,MTA Fillapex和Sealapex不符合ANSI / ADA的协议。除AH Plus外,所有材料均观察到高水平的Ca 2+离子释放。 SEM / EDX分析表明,溶解度测试后,所有样品的内外表面均发生形态变化。除AH Plus和MTA-A外,所有材料的表面均观察到高水平的钙和碳。

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