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用作牙髓盖髓或修复材料的硅酸三钙基水泥的物理化学性质。

Physicochemical properties of silicate tricalcium-based cement for use as pulp capping or repair material.

作者信息

Luna-Cruz Suyane Maria, Aguiar Bernardo Almeida, Fechine Pierre Basílio Almeida, Duarte Marco Antônio Húngaro, Vasconcelos Bruno Carvalho de, Mendonça Juliano Sartori

机构信息

Universidade Federal do Ceará - UFC, School of Pharmacy, Dentistry and Nursing, Post-graduate Program in Dentistry, Fortaleza, CE, Brazil.

Universidade Federal do Ceará - UFC, Department of Analytical and Physical Chemistry, Fortaleza, CE, Brazil.

出版信息

Braz Oral Res. 2024 Dec 20;38:e136. doi: 10.1590/1807-3107bor-2024.vol38.0136. eCollection 2024.

Abstract

This study evaluated some physicochemical properties of an experimental tricalcium silicate-based cement (ETSC) indicated for use as pulp capping or endodontic repair material; Biodentine (BD) and White MTA-Angelus (MTA) cements served as comparators. Setting time, radiopacity, sorption, and solubility were determined according to ISO 6876/2012 and compressive strength according to ISO 9917-1/2019. pH and calcium ion release capacity were also assessed. Data were analyzed using ANOVA and Tukey tests or Kruskal-Wallis and Dunn tests with α = 0.05. BD (15') and ETSC (17.3') exhibited the shortest initial setting times, with BD (29') having the shortest final setting time; MTA showed longer times in both analyses (p < 0.05). ETSC and MTA showed the highest radiopacity (6.1 mm Al and 5.7 mm Al), while BD showed the lowest (3.0 mm Al) (p < 0.05). BD exhibited the highest compressive strength (88.8 MPa), significantly higher than the others (p < 0.05). BD presented the lowest values for sorption, 0.12% (24 h) and 0.48% (28 d), which differed significantly from MTA (p < 0.05). The lowest values for solubility were shown for ETSC, 0.26% (24 h), and BD, 0.52% (28 d), which differed significantly from MTA (p<0.05). ETSC showed the highest pH throughout all periods; significant differences were observed for MTA (3 h) and BD (24 h) (p<0.05). In the Ca2+ analysis, BD provided the highest values in all periods; differences were only significant compared to MTA (3h/24h) (p <0 .05). Considering the study conditions, it can be concluded that ETSC exhibited characteristics similar or better properties than the commercial cements tested, except for compressive strength.

摘要

本研究评估了一种用作牙髓盖髓或根管修复材料的实验性硅酸三钙基水门汀(ETSC)的一些物理化学性质;将生物陶瓷(BD)和白色天使MTA水门汀(MTA)作为对照材料。根据ISO 6876/2012测定凝固时间、射线不透性、吸附性和溶解性,根据ISO 9917-1/2019测定抗压强度。还评估了pH值和钙离子释放能力。使用方差分析和Tukey检验或Kruskal-Wallis和Dunn检验对数据进行分析,α = 0.05。BD(15分钟)和ETSC(17.3分钟)的初始凝固时间最短,BD(29分钟)的最终凝固时间最短;在两项分析中,MTA的凝固时间均较长(p < 0.05)。ETSC和MTA的射线不透性最高(分别为6.1毫米铝当量和5.7毫米铝当量),而BD的射线不透性最低(3.0毫米铝当量)(p < 0.05)。BD的抗压强度最高(88.8兆帕),显著高于其他材料(p < 0.05)。BD的吸附值最低,24小时为0.12%,28天为0.48%,与MTA有显著差异(p < 0.05)。ETSC的溶解性最低,24小时为0.26%;BD的溶解性在28天时最低,为0.52%;二者均与MTA有显著差异(p<0.05)。在所有时间段内,ETSC的pH值最高;MTA(3小时)和BD(24小时)有显著差异(p<0.05)。在钙离子分析中,BD在所有时间段内的值最高;仅与MTA(3小时/24小时)相比有显著差异(p <0.05)。考虑到研究条件,可以得出结论,除抗压强度外,ETSC表现出与所测试商业水门汀相似或更好的性能。

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