Kazemipoor Maryam, Sanati Ehsan
Department of Endodontics, School of Dentistry, Shahid Sadoughi University of Medical Sciences, Yazd, Iran.
Int J Dent. 2023 Mar 6;2023:7130619. doi: 10.1155/2023/7130619. eCollection 2023.
The pH of the setting environment could alter the surface characteristics of bioceramics. The present study aimed to assess the surface microstructure of calcium-enriched mixture (CEM cement) and cold ceramic (CC) in setting environments with different pH values.
12 dentin blocks with 3 mm height and internal diameter were prepared. CEM cement and CC were prepared and packed into the blocks. Samples in each bioceramics group ( = 6) were divided into 3 subgroups ( = 2) and exposed to acid, pH of 7.4, and alkaline pH for 1 week. Specimens were prepared for evaluation under a scanning electron microscope using backscattered electron (BSE) detectors. Monitoring of pH changes was rendered with a pH meter through the setting process.
BSE detection in an acidic environment showed more amorphous microstructures in CC specimens in comparison to CEM cement. In pH of 7.4 and alkaline pH, more unhydrated structures were observed in CEM cement compared with CC samples. During the first 48 h of the setting process, the pH changes of setting environments were more rapid in the CEM cement group in comparison to CC samples.
pH changes during the setting process of cement could affect the surface microstructure and physical properties. In acidic environments, the crystallization of CC cement is more disrupted than that of CEM cement.
凝固环境的pH值会改变生物陶瓷的表面特性。本研究旨在评估不同pH值凝固环境下富钙混合物(CEM水泥)和冷陶瓷(CC)的表面微观结构。
制备12个高度和内径均为3毫米的牙本质块。制备CEM水泥和CC并填充到块中。每个生物陶瓷组(n = 6)的样本分为3个亚组(n = 2),并分别置于酸性、pH值为7.4的环境和碱性环境中1周。使用背散射电子(BSE)探测器制备样本,以便在扫描电子显微镜下进行评估。在凝固过程中用pH计监测pH值变化。
与CEM水泥相比,酸性环境中的BSE检测显示CC样本中的非晶态微观结构更多。在pH值为7.4和碱性pH环境中,与CC样本相比,CEM水泥中观察到更多未水化结构。在凝固过程的前48小时内,与CC样本相比,CEM水泥组凝固环境的pH值变化更快。
水泥凝固过程中的pH值变化会影响表面微观结构和物理性能。在酸性环境中,CC水泥的结晶比CEM水泥更易受到破坏。