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内源性水渗透对不同牙本质粘结界面形成的影响。

The influence of intrinsic water permeation on different dentin bonded interfaces formation.

作者信息

Sartori Neimar, Peruchi Lais Dalmagro, Phark Jin-Ho, Duarte Sillas

机构信息

Ostrow School of Dentistry of University of Southern California, Division of Restorative Sciences, Los Angeles, CA, USA.

Ostrow School of Dentistry of University of Southern California, Division of Restorative Sciences, Los Angeles, CA, USA.

出版信息

J Dent. 2016 May;48:46-54. doi: 10.1016/j.jdent.2016.03.005. Epub 2016 Mar 11.

Abstract

OBJECTIVES

To determine the effects of intrinsic wetness on the formation of dentin bonding interfaces of four resin cement systems bonded to dentin under different pulpal pressures.

METHODS

Thirty-six freshly extracted third molars were selected and processed for dentin μTBS. The teeth were randomly assigned into 12 experimental groups, according to the adhesive luting system [Adper Single Bond Plus (3M ESPE) combined with two luting agents RelyX ARC (3M ESPE) and heated Filtek Z250 Universal Restorative (3M ESPE), Clearfil CD Bond (Kuraray) combined with Clearfil Esthetic Cement (Kuraray), and RelyX Unicem 2 Automix (3M ESPE)] and pulpal pressure (0, 5, and 20 cm of simulated pulpal pressure). Leucite-reinforced glass-ceramic slabs (IPS Empress CAD, Ivoclar Vivadent) of 3mm thickness were bonded to dentin. The samples were stored in distilled water for 24h and then sectioned in X/Y directions across the adhesive interface to obtain specimens with a cross section of 0.8 ± 0.2mm(2). All sticks were fractured by tension at a crosshead speed of 1.0mm/min and the data were submitted to Kruskal-Wallis and Mann-Whitney Tests (α=0.05). Ultrastructural analysis of the interfaces was performed using Confocal Laser Scanning Microscopy (CLSM) and Scanning Electron Microscopy (SEM).

RESULTS

The statistical analyses showed that pulpal pressure decreased μTBS for all groups. Significantly higher μTBS values were obtained in heated Z250 group restored without any pulpal pressure. CLSM showed that the uptake of water through the dentin tubuli and their anastomosis of lateral branches during the adhesive luting procedures prevented adequate formation of the dentin bonding interfaces. SEM showed that the luting film created is material- dependent and all adhesive failure occurred at the resin-dentin interface.

CONCLUSION

The constant intrinsic wetness replenishment prevents adequate formation of the hybrid layer.

CLINICAL SIGNIFICANCE

Intrinsic moisture during adhesive luting procedures significantly affects the interaction between luting materials and dentin subtract and decreases the quality and bonding strength of the resin-dentin bond.

摘要

目的

确定在不同牙髓压力下,固有湿度对四种树脂水门汀系统与牙本质粘结形成的牙本质粘结界面的影响。

方法

选取36颗新鲜拔除的第三磨牙,制备用于牙本质微拉伸粘结强度(μTBS)测试的样本。根据粘结性粘固系统[Adper Single Bond Plus(3M ESPE)与两种粘固剂RelyX ARC(3M ESPE)和加热后的Filtek Z250通用修复材料(3M ESPE)、Clearfil CD Bond(可乐丽)与Clearfil Esthetic Cement(可乐丽)以及RelyX Unicem 2 Automix(3M ESPE)]和牙髓压力(0、5和20 cm模拟牙髓压力),将牙齿随机分为12个实验组。将3mm厚的白榴石增强型玻璃陶瓷板(IPS Empress CAD,义获嘉伟瓦登特)粘结到牙本质上。样本在蒸馏水中储存24小时,然后沿X/Y方向在粘结界面处切片,以获得横截面为0.8±0.2mm²的标本。所有样本棒以1.0mm/min的十字头速度进行拉伸断裂,数据进行Kruskal-Wallis和Mann-Whitney检验(α=0.05)。使用共聚焦激光扫描显微镜(CLSM)和扫描电子显微镜(SEM)对界面进行超微结构分析。

结果

统计分析表明,牙髓压力降低了所有组的μTBS值。在无任何牙髓压力恢复的加热Z250组中获得了显著更高的μTBS值。CLSM显示,在粘结性粘固过程中,水通过牙本质小管及其侧支吻合处的吸收阻止了牙本质粘结界面的充分形成。SEM显示,形成的粘固膜取决于材料,所有粘结失败均发生在树脂-牙本质界面。

结论

持续的固有湿度补充会阻止混合层的充分形成。

临床意义

粘结性粘固过程中的固有湿度会显著影响粘固材料与牙本质基质之间的相互作用,并降低树脂-牙本质粘结的质量和粘结强度。

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