Rio Grande do Sul Federal University, Porto Alegre, RS, Brazil.
Microsc Res Tech. 2012 Jun;75(6):796-800. doi: 10.1002/jemt.21128. Epub 2011 Dec 6.
This study aimed to evaluate, ex vivo, the nanoleakage in dentinal tubules, the linear infiltration of silver nitrate in the dentin wall/root-end filling material interface, and the presence of gaps in this interface in root-end cavities filled with 4 filling materials. Forty-eight disto-buccal root canals of maxillary molars were instrumented and filled. Retrograde cavities were prepared with ultrasonic points (apical 2 mm). The samples were divided into 2 control groups (n = 4) and 4 experimental groups (n = 10): Group I--white mineral trioxide aggregate (MTA); Group II--Super EBA; Group III--Portland cement; and Group IV--Sealer 26. After 1 week, the specimens were subjected to silver nitrate and prepared for SEM (backscattered electrons). In the apical-apical segment, an area with significantly higher leakage was observed for Super EBA, followed by Portland cement, MTA, and Sealer 26 (P = 0.0054). In the medium and cervical segments, all materials showed the same leakage behavior (P = 0.1815 and P = 0.1723, respectively). The linear infiltration at the dentin wall/root-end filling material interface was higher with Super EBA than the other groups. No differences in the percentage of gaps along the 3 mm of dentin wall/root-end filling material interface between the 4 materials were evident (P > 0.05). Nanoleakage occurred mainly in the apical segment of the samples, and Super EBA showed the highest values. The area and linear leakage were lower in the middle and coronal segments, regardless of the root-end filling material. No material perfectly sealed the root-end cavities, which allowed for the leakage occurrence.
本研究旨在评估牙本质小管内的纳米渗漏、硝酸银在牙本质壁/根尖填充材料界面的线性渗透以及根尖腔中 4 种填充材料界面处的间隙存在情况。共对 48 颗上颌磨牙的远颊根管进行了器械和填充。用超声工作尖(根尖 2mm)制备倒充腔。将样本分为 2 个对照组(n=4)和 4 个实验组(n=10):组 I-白色矿物三氧化物聚合体(MTA);组 II- Super EBA;组 III-波特兰水泥;组 IV- Sealer 26。1 周后,将标本用硝酸银处理并准备进行 SEM(背散射电子)观察。在根尖-根尖段,Super EBA 的渗漏明显更高,其次是波特兰水泥、MTA 和 Sealer 26(P=0.0054)。在中颈段,所有材料的渗漏行为相同(P=0.1815 和 P=0.1723)。牙本质壁/根尖填充材料界面的线性渗透,Super EBA 高于其他组。在牙本质壁/根尖填充材料界面的 3mm 范围内,4 种材料之间的间隙百分比没有差异(P>0.05)。纳米渗漏主要发生在样本的根尖段,Super EBA 的值最高。中颈段的面积和线性渗漏较低,与根尖填充材料无关。没有一种材料能完全密封根尖腔,因此会发生渗漏。