Dong Xiaoqing, Ritts Andrew C, Staller Corey, Yu Qingsong, Chen Meng, Wang Yong
Department of Mechanical and Aerospace Engineering, Center for Surface Science and Plasma Technology, University of Missouri, Columbia, MO 65211, USA.
Eur J Oral Sci. 2013 Aug;121(4):355-62. doi: 10.1111/eos.12052. Epub 2013 May 4.
The objective of this study was to evaluate and verify the effectiveness of plasma treatment for improving adhesive-dentin interfacial bonding by performing microtensile bond-strength (μTBS) testing using the same-tooth controls and varying cross-sectional surface areas. Extracted unerupted human third molars were used after removal of the crowns to expose the dentin surface. One half of each dentin surface was treated with a non-thermal argon plasma brush, whilst the other was shielded with glass slide and used as an untreated control. Adper Single Bond Plus adhesive and Filtek Z250 dental composite were then applied as directed. The teeth thus prepared were further cut into micro-bar specimens, with cross-sectional sizes of 1 × 1 mm², 1 × 2 mm², and 1 × 3 mm², for μTBS testing. The test results showed that plasma-treated specimens gave substantially stronger adhesive-dentin bonding than their corresponding same-tooth controls. Compared with their untreated controls, plasma treatment gave statistically significant higher bonding strength for specimens with a cross-sectional area of 1 × 1 mm² and 1 × 2 mm², with mean increases of 30.8% and 45.1%, respectively. Interface examination using optical and electron microscopy verified that plasma treatment improved the quality of the adhesive-dentin interface by reducing defects/voids and increasing the resin tag length in dentin tubules.
本研究的目的是通过使用同牙对照并改变横截面表面积进行微拉伸粘结强度(μTBS)测试,来评估和验证等离子体处理对改善牙本质粘结界面粘结效果的有效性。在去除牙冠以暴露牙本质表面后,使用拔除的未萌出人类第三磨牙。每个牙本质表面的一半用非热氩等离子体刷进行处理,而另一半用载玻片覆盖作为未处理对照。然后按照说明应用Adper Single Bond Plus粘结剂和Filtek Z250牙科复合材料。将如此制备的牙齿进一步切割成横截面尺寸为1×1mm²、1×2mm²和1×3mm²的微条试样,用于μTBS测试。测试结果表明,经等离子体处理的试样比其相应的同牙对照具有更强的牙本质粘结效果。与未处理对照相比,等离子体处理使横截面面积为1×1mm²和1×2mm²的试样粘结强度在统计学上显著提高,平均分别提高了30.8%和45.1%。使用光学和电子显微镜进行的界面检查证实,等离子体处理通过减少缺陷/空隙并增加牙本质小管中的树脂突长度,改善了牙本质粘结界面的质量。