Reis Kátia Rodrigues, Spyrides George Miguel, Oliveira Jonas Alves de, Jnoub Alexandre Abrão, Dias Kátia Regina Hostilio Cervantes, Bonfantes Gerson
Department of Prosthodontics, Dental School, Federal University of Rio de Janeiro, Rio de Janeiro, RJ, Brazil.
Braz Dent J. 2011;22(5):359-64. doi: 10.1590/s0103-64402011000500002.
This study investigated the effects of the cement type and the water storage time on the push-out bond strength of a glass fiber post. Glass fiber posts (Fibrekor, Jeneric Pentron) were luted to post spaces using a self-cured resin cement (C&B Cement [CB]), a glass ionomer cement (Ketac Cem [KC]) or a resin-modified glass ionomer cement (GC FujiCEM [FC]) according to the manufacturers' instructions. For each luting agent, the specimens were exposed to one of the following water storage times (n=5): 1 day (T1), 7 days (T7), 90 days (T90) and 180 days (T180). Push-out tests were performed after the storage times. Control specimens were not exposed to water storage, but subjected to the push-out test 10 min after post cementation. Data (in MPa) were analyzed by Kruskal-Wallis and Dunn`s test (α=0.05). Cement type and water storage time had a significant effect (p<0.05) on the push-out bond strength. CB showed significantly higher values of retention (p<0.05) than KC and FC, irrespective of the water storage time. Water storage increased significantly the push-out bond strength in T7 and T90, regardless of the cement type (p<0.05). The results showed that fiber posts luted to post spaces with the self-cured resin cement exhibited the best bonding performance throughout the 180-day water storage period. All cements exhibited a tendency to increase the bond strength after 7 and 90 days of water storage, decreasing thereafter.
本研究调查了粘结剂类型和水储存时间对玻璃纤维桩推出粘结强度的影响。根据制造商的说明,使用自固化树脂粘结剂(C&B Cement [CB])、玻璃离子粘结剂(Ketac Cem [KC])或树脂改性玻璃离子粘结剂(GC FujiCEM [FC])将玻璃纤维桩(Fibrekor,Jeneric Pentron)粘结到桩道中。对于每种粘结剂,将样本暴露于以下水储存时间之一(n = 5):1天(T1)、7天(T7)、90天(T90)和180天(T180)。在储存时间结束后进行推出试验。对照样本不进行水储存,但在桩粘结后10分钟进行推出试验。数据(以MPa为单位)采用Kruskal-Wallis和Dunn检验进行分析(α = 0.05)。粘结剂类型和水储存时间对推出粘结强度有显著影响(p < 0.05)。无论水储存时间如何,CB的保留值均显著高于KC和FC(p < 0.05)。无论粘结剂类型如何,水储存均显著提高了T7和T90时的推出粘结强度(p < 0.05)。结果表明,在整个180天的水储存期内,用自固化树脂粘结剂粘结到桩道中的纤维桩表现出最佳的粘结性能。所有粘结剂在水储存7天和90天后均呈现粘结强度增加的趋势,此后降低。