The Effect of a Setting Accelerator on the Physical and Mechanical Properties of a Fast-set White Portland Cement Mixed with Nano-zirconium Oxide.

IF 1.6 Q3 DENTISTRY, ORAL SURGERY & MEDICINE European Endodontic Journal Pub Date : 2023-05-01 DOI:10.14744/eej.2023.36449
Yik Zhen Chen, Ming Jun Yong, Vi Yuan Tan, Stephen Lik Soon Kong, Hoda Mohamed Abdelrazek Elnawawy, Noor Azlin Yahya, Muralithran Govindan Kutty, Hany Mohamed Aly Ahmed
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Abstract

Objective: This study compared the effects of calcium chloride dihydrate (CaCl2.2H2O) on the physical properties and push-out bond strength of white Mineral Trioxide Aggregate (WMTA) and an experimental Malaysian Portland cement mixed with nano-zirconium oxide (nano-ZrO) [(radiopaque Malaysian Portland cement (RMPC). Mineral Trioxide Aggregate (MTA) was the first calcium silicate cement (CSC) introduced in dentistry, but up to date, it is an expensive cement with long setting time and causes tooth discolouration. Although Portland cement has been introduced as a potential substitute to MTA, it still faces some challenges such as long setting time and lack of sufficient radiopacity.

Methods: Four groups [WMTA, RMPC, fast-set WMTA (FS-WMTA) and fast-set RMPC (FS-RMPC)] were prepared. Initial setting time was evaluated using Vicat apparatus. The pH was measured at seven-day intervals. For discolouration potential, cements were packed in the pulp chamber of 46 extracted maxillary incisors. Spectrophotometric readings were obtained at seven-day intervals, and the rate of colour change (ΔE) was recorded. For the push-out bond strength testing, cements were applied in 48 sectioned root samples, and the test was performed using universal testing machine at crosshead speed of 0.5 mm/min until bond failure. Statistical analysis was done according to the nature of each group of data using SPSS 26.

Results: Addition of CaCl2.2H2O decreased the initial setting times of both RMPC and WMTA significantly (p<0.05). The pH values of FS-WMTA and FS-RMPC were comparable to their non-accelerated counterparts ranging from 10 to 12. Discolouration effect was more obviously observed with WMTA and FS-WMTA with time compared to RMPC formulations. Push-out bond strength of the two materials also showed an increase with the addition of the accelerator, however, only FS-WMTA showed statistically significant difference compared to WMTA (p<0.05).

Conclusion: The addition of CaCl2.2H2O improves the physical and mechanical properties of the newly formulated RMPC and WMTA. The RMPC formulation overcomes the discolouration potential of WMTA. (EEJ-2022-12-155).

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凝结促进剂对纳米氧化锆快速白硅酸盐水泥物理力学性能的影响。
目的:本研究比较了二水合氯化钙(CaCl2.2H2O)对白色矿物三氧化骨料(WMTA)和掺有纳米氧化锆(纳米zro)的马来西亚硅酸盐水泥(RMPC)物理性能和推出粘结强度的影响。矿物三氧化二钙骨料(MTA)是第一个应用于牙科的硅酸钙水泥(CSC),但迄今为止,它是一种价格昂贵、固化时间长且易导致牙齿变色的水泥。虽然波特兰水泥作为MTA的潜在替代品已经被引入,但它仍然面临着一些挑战,如凝结时间长和缺乏足够的放射性。方法:制备四组[WMTA、RMPC、快凝型WMTA (FS-WMTA)和快凝型RMPC (FS-RMPC)]。用维卡仪评估初始凝固时间。pH值每隔7天测量一次。对46颗拔除的上颌切牙进行牙髓腔充填,观察其变色潜力。每隔7天获得一次分光光度读数,并记录颜色变化率(ΔE)。在推出粘结强度测试中,将水泥应用于48个根样切片中,在万能试验机上以0.5 mm/min的十字速度进行测试,直至粘结破坏。根据每组数据性质使用SPSS 26进行统计分析。结果:CaCl2.2H2O的加入显著减少了RMPC和WMTA的初凝时间(p)结论:CaCl2.2H2O的加入改善了新配制的RMPC和WMTA的物理力学性能。RMPC配方克服了WMTA的变色潜力。(eej - 2022 - 12 - 155)。
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来源期刊
European Endodontic Journal
European Endodontic Journal DENTISTRY, ORAL SURGERY & MEDICINE-
CiteScore
3.40
自引率
5.60%
发文量
25
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