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根据石膏含水量对预混硅酸钙基三氧化物聚合体凝固时间差异的体外比较

In Vitro Comparison of Differences in Setting Time of Premixed Calcium Silicate-Based Mineral Trioxide Aggregate According to Moisture Content of Gypsum.

作者信息

Kim Hyun-Jin, Lee Jun-Seok, Gwak Dong-Hoon, Ko Yong-Seok, Lim Chun-Il, Lee Seung-Youl

机构信息

Medical Device Research Division, National Institute of Food and Drug Safety Evaluation, Cheongju 28159, Republic of Korea.

出版信息

Materials (Basel). 2023 Dec 21;17(1):35. doi: 10.3390/ma17010035.

Abstract

Recently, a paste-type premixed calcium silicate-based mineral trioxide aggregate (MTA) product that quickly solidifies through a pozzolanic reaction was introduced to replace existing MTA, which has the disadvantage of a long setting time. In this study, we evaluated the effect of moisture content in the root canal on the setting time of premixed calcium silicate-based MTA in a simulated root canal environment using Endoseal MTA and Well-Root ST, among commercially available products. The setting time was measured according to ISO 6876/2012. A mold made using grades 2, 3, and 4 dental gypsum according to the classification of ISO 6873/2013 was used to reproduce the difference in moisture environment. Differences in moisture content were measured using micro-computed X-ray tomography (micro-CT). The micro-CT results showed that the moisture content was the highest and lowest in the grade 2 and 4 gypsum molds, respectively. Moreover, the setting time indicated by the manufacturer was the shortest for the grade 2 gypsum mold. Hence, the differences in moisture content significantly affect the setting time of MTA. This result can help set future experimental conditions and develop premixed calcium silicate-based MTA products.

摘要

最近,一种通过火山灰反应快速凝固的膏状预混硅酸钙基三氧化矿物凝聚体(MTA)产品被引入,以取代现有凝固时间长的缺点的MTA。在本研究中,我们在模拟根管环境中,使用市售产品中的Endoseal MTA和Well-Root ST,评估根管内水分含量对预混硅酸钙基MTA凝固时间的影响。凝固时间根据ISO 6876/2012进行测量。根据ISO 6873/2013的分类,使用2级、3级和4级牙科石膏制作模具,以再现水分环境的差异。使用微计算机X射线断层扫描(micro-CT)测量水分含量的差异。微CT结果表明,水分含量在2级和4级石膏模具中分别最高和最低。此外,制造商指示的凝固时间在2级石膏模具中最短。因此,水分含量的差异显著影响MTA的凝固时间。这一结果有助于设定未来的实验条件,并开发预混硅酸钙基MTA产品。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8bee/10779729/9e5ab938eaed/materials-17-00035-g001.jpg

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