Department of Dental Prosthodontics, School of Medicine, Ewha Womans University, Seoul, Korea.
J Prosthet Dent. 2010 Jun;103(6):362-8. doi: 10.1016/S0022-3913(10)60078-9.
Surface treatment of fiber-reinforced posts may not always increase adhesion, especially on the post/resin-based luting agent interface, which is a weaker interface than the dentin/adhesive interface.
The purpose of this in vitro study was to evaluate the influence of different post surface treatments on the bond strength of a luting agent to a fiber post.
Sixty-eight fiber-reinforced posts (D. T. Light-Post) were divided into 4 groups and treated with 1 of the following surface treatment procedures: no treatment (NS) (control), silanization (SA) (Monobond-S), airborne-particle abrasion (AB) (Airsonic Alu-Oxyd), or silanization subsequent to airborne-particle abrasion (AB plus SA). Specimens were bonded with dual-polymerizing resin-based luting material (Variolink II) and stored in water at 37 degrees C for 24 hours. Shear bond strength (MPa) was measured using a universal testing machine. Data were analyzed with 1-way ANOVA and the multiple comparisons Scheffé test with Bonferroni correction (alpha=.05).
Shear bond strength of the luting agent to the post was significantly affected by surface treatment (P<.05). Treating the surface of the post with airborne-particle abrasion resulted in a significantly higher bond strength compared with other treatments. There was no significant difference in bond strength between the silanization group and the no treatment group or the silanization plus airborne-particle abrasion group.
Airborne-particle abrasion provided a significant increase in bond strength between the post and the luting agent evaluated, without additional treatments.
纤维增强桩的表面处理并不总是能增加黏附力,尤其是在桩/树脂基黏结剂界面上,该界面比牙本质/黏结剂界面弱。
本体外研究的目的是评估不同桩表面处理对纤维桩黏结剂黏结强度的影响。
将 68 根纤维增强桩(D. T. Light-Post)分为 4 组,分别用以下表面处理程序中的 1 种进行处理:未处理(NS)(对照组)、硅烷化(SA)(Monobond-S)、气砂喷砂处理(AB)(Airsonic Alu-Oxyd)或气砂喷砂处理后硅烷化(AB 加 SA)。用双固化树脂基黏结材料(Variolink II)将标本黏结,并在 37°C 的水中储存 24 小时。使用万能试验机测量剪切黏结强度(MPa)。用单因素方差分析和Scheffé 多重比较检验,并用 Bonferroni 校正进行数据分析(α=.05)。
黏结剂与桩的剪切黏结强度受表面处理的显著影响(P<.05)。与其他处理相比,对桩表面进行气砂喷砂处理可显著提高黏结强度。硅烷化组与未处理组或硅烷化加气砂喷砂组之间的黏结强度无显著差异。
气砂喷砂处理在不进行其他处理的情况下,显著提高了桩与黏结剂之间的黏结强度。