Department of Dental Materials and Fixed Prosthodontics, University of Siena, Policlinico "Le Scotte", viale Bracci, Siena 53100, Italy.
Dent Mater. 2011 Oct;27(10):e197-204. doi: 10.1016/j.dental.2011.07.003. Epub 2011 Aug 5.
To assess by means of "thin-slice" push-out test, light and scanning electron microscopy, the interfacial strength and sealing ability of new self-adhesive resin cements when used to lute fiber posts into endodontically treated teeth.
RelyX Unicem 2 Automix (3M ESPE, RUA), Maxcem Elite (Kerr, ME) and seT (SDI, S) were utilized in combination with RelyX Fiber Posts (3M ESPE). In each group 5 posted roots were used for push-out testing and 5 were processed for observations of interfacial morphology and nanoleakage under light microscope and scanning electron microscope. Five to six slices were obtained from each posted root. The statistical significance of the influence on post push-out strength of luting agent, dowel space level, and between-factor interaction was assessed using Two-Way Analysis of Variance (ANOVA) and Tukey test as needed. Differences in nanoleakage scores were also statistically evaluated (Kruskal-Wallis ANOVA) (p<0.05).
Luting agent was a significant factor for post push-out strength. The interfacial strength achieved by RUA (9.3±2.6MPa) was significantly higher than that of ME (6.7±2.7MPa) and that of S (5.4±3.1MPa), which were comparable to each other. Dowel space level and between factor interaction were not statistically significant. Statistically comparable interfacial nanoleakage was observed in all the groups.
The three new self-adhesive resin cements exhibited similar sealing properties, although the post retentive ability was superior with RUA.
通过“薄片”推出试验、光镜和扫描电镜评估新型自粘结树脂水门汀黏结纤维桩至根管治疗牙的界面强度和密封能力。
RelyX Unicem 2 Automix(3M ESPE,RUA)、Maxcem Elite(Kerr,ME)和 seT(SDI,S)与 RelyX Fiber Posts(3M ESPE)联合使用。每组 5 个黏结后的牙根用于推出试验,5 个牙根用于光镜和扫描电镜下观察界面形态和纳米渗漏。从每个黏结后的牙根中获得 5-6 个切片。使用双因素方差分析(ANOVA)和必要时的 Tukey 检验评估黏结剂、核桩间隙水平和组间因素相互作用对桩推出强度的影响的统计学意义。纳米渗漏评分的差异也进行了统计学评估(Kruskal-Wallis ANOVA)(p<0.05)。
黏结剂是桩推出强度的重要因素。RUA(9.3±2.6MPa)的界面强度显著高于 ME(6.7±2.7MPa)和 S(5.4±3.1MPa),但彼此之间无统计学差异。核桩间隙水平和组间因素相互作用无统计学意义。所有组的界面纳米渗漏均具有统计学可比性。
三种新型自粘结树脂水门汀表现出相似的密封性能,尽管 RUA 的桩固位能力更好。