Wang Z, Ma J, Shen Y, Haapasalo M
Division of Endodontics, Department of Oral Biological & Medical Sciences, Faculty of Dentistry, University of British Columbia, Vancouver, BC, Canada; The State Key Laboratory Breeding Base of Basic Science of Stomatology (Hubei-MOST) & Key Laboratory of Oral Biomedicine Ministry of Education, School & Hospital of Stomatology, Wuhan University, Wuhan, China.
Int Endod J. 2015 Apr;48(4):323-32. doi: 10.1111/iej.12318. Epub 2014 Jun 28.
To investigate the microhardness and microstructural features of three tricalcium silicate materials: mineral trioxide aggregate (MTA), Endosequence Root Repair Material Putty (ERRM Putty) and Endosequence Root Repair Material Paste (ERRM Paste), after exposure to a range of acidic environments in comparison with intermediate restorative material (IRM).
Endosequence Root Repair Material Putty (Brasseler, Savannah, GA, USA), ERRM Paste (Brasseler, Savannah, GA, USA), MTA (ProRoot; Dentsply Tulsa Dental, Johnson City, TN, USA) and IRM (Dentsply Caulk, Milford, DE, USA) were set in cylindrical rubber moulds as four groups containing twenty specimens each. Fifteen specimens per each material were randomly distributed into three groups (n = 5) to be exposed to butyric acid buffered at three different pH levels (5.4, 6.4 and 7.4) for 7 days. The remaining five specimens were exposed to distilled water as a control group. The surface microhardness after exposure either to acid or to water was measured after 7-days at 37 °C. The morphology of the internal microstructure was observed using a scanning electron microscope (SEM). Two-way univariate analysis of variance (anova) was applied to evaluate the Vickers microhardness value (VHN).
The microhardness values of the materials were significantly higher in the neutral environment of butyric acid at pH 7.4 compared to those in the acidic condition of pH 5.4 for all groups (P < 0.001). MTA, ERRM Putty and ERRM Paste had higher microhardness values than IRM at all pH levels (P < 0.001). Specimens exposed to distilled water displayed significantly higher microhardness values than those values obtained in the presence of butyric acid buffered to all pH levels (P < 0.001). A more porous microstructure was observed following exposure to butyric acid at pH 5.4 than at pH 7.4. Several types of crystalline structures were formed by recrystallization, especially at pH 7.4 in all groups except for IRM.
The microhardness values of ERRM Putty, ERRM Paste and MTA were reduced in an acidic environment, which resulted in these materials having more porous and less crystalline microstructures. MTA seems the most suitable material for application to an area of inflammation where a low pH value may exist.
研究三种硅酸三钙材料:矿物三氧化物凝聚体(MTA)、Endosequence根充修复材料油灰(ERRM油灰)和Endosequence根充修复材料糊剂(ERRM糊剂),在暴露于一系列酸性环境后的显微硬度和微观结构特征,并与中间修复材料(IRM)进行比较。
将Endosequence根充修复材料油灰(美国佐治亚州萨凡纳市Brasseler公司)、ERRM糊剂(美国佐治亚州萨凡纳市Brasseler公司)、MTA(ProRoot;美国田纳西州约翰逊市登士柏塔尔萨牙科公司)和IRM(美国特拉华州米尔福德市登士柏卡克公司)置于圆柱形橡胶模具中,分为四组,每组20个样本。每种材料的15个样本随机分为三组(n = 5),分别暴露于三种不同pH值(5.4、6.4和7.4)缓冲的丁酸中7天。其余5个样本作为对照组暴露于蒸馏水中。在37℃下暴露于酸或水7天后,测量表面显微硬度。使用扫描电子显微镜(SEM)观察内部微观结构的形态。应用双向单因素方差分析(anova)评估维氏显微硬度值(VHN)。
对于所有组,在pH 7.4的丁酸中性环境中,材料的显微硬度值显著高于pH 5.4的酸性条件下的显微硬度值(P < 0.001)。在所有pH值水平下,MTA、ERRM油灰和ERRM糊剂的显微硬度值均高于IRM(P < 0.001)。暴露于蒸馏水的样本显示出的显微硬度值显著高于在所有pH值水平缓冲的丁酸存在下获得的值(P < 0.001)。与pH 7.4相比,暴露于pH 5.4的丁酸后观察到更多孔的微观结构。通过重结晶形成了几种类型的晶体结构,特别是在除IRM外的所有组中pH 7.4时。
ERRM油灰、ERRM糊剂和MTA的显微硬度值在酸性环境中降低,这导致这些材料具有更多孔且晶体更少的微观结构。MTA似乎是应用于可能存在低pH值炎症区域的最合适材料。