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空气喷砂抛光对粘结系统与牙齿基质粘结力的影响。

Effect of air-powder polishing on adhesion of bonding systems to tooth substrates.

作者信息

Nikaido T, Yamada T, Koh Y, Burrow M F, Takatsu T

机构信息

Department of Operative Dentistry, Faculty of Dentistry, Tokyo Medical and Dental University, Japan.

出版信息

Dent Mater. 1995 Jul;11(4):258-64. doi: 10.1016/0109-5641(95)80059-X.

Abstract

OBJECTIVES

The air-powder polisher was introduced to provide a method to quickly remove stains and plaque. The purpose of this study was to evaluate what effect preparing teeth with an air-powder polisher (Air-flow 2, Shofu) has on bonding to enamel and dentin substrates.

METHODS

The bonding systems used in this study were one-step etching/priming systems (KBT-5, Kanebo; and Clearfil Liner Bond II, Kuraray) and a two-step etching/priming system (Superbond D-Liner Plus, Sun Medical). Bovine enamel and dentin surfaces were prepared and finished with 600-grit silicon carbide paper. Then the surfaces were either not treated (control) or air-powder polished for 15 s. A 4-mm bonding area was demarcated, and the tooth substrates were bonded with the three bonding systems according to the manufacturers' instructions. Tensile bond strengths were measured 24 h after storage in water at 37 degrees C. Scanning electron microscopy (SEM) and energy dispersive spectroscopy (EDS) analyses were performed on air-powder polished specimens to determine changes in the surface morphology and detect residual material from the air-powder polisher. SEM and transmission electron microscopic (TEM) observations of the interface between the bonding resins and dentin were performed to detect variations in the hybrid layers of the control and treated specimens.

RESULTS

The results indicated that air-powder polishing did not influence the tensile bond strength to enamel, but adversely affected the tensile bond strength to dentin for the one-step systems, but not for the two-step system. Changes to the enamel surface after air-powder polishing were minimal, but an increase in surface roughness and complete removal of the smear layer were observed on dentin. SEM and TEM observations of the resin/dentin interface suggested that the air-powder polisher might cause superficial maceration of the collagen fibers on the dentin surface. This change may have decreased the ability of the etching/priming agents and bonding resin to penetrate into the dentin, which would have resulted in a poor quality hybrid layer.

SIGNIFICANCE

For those systems that contain only an acidic primer for dentin conditioning, the use of air-powder polishing for surface preparation prior to restoration of dentin margin cavities is contraindicated because of the loss of reliable bonding.

摘要

目的

空气动力抛光机被引入以提供一种快速去除污渍和牙菌斑的方法。本研究的目的是评估使用空气动力抛光机(Air-flow 2,松风)对牙齿进行预备后,对牙釉质和牙本质基质粘结的影响。

方法

本研究中使用的粘结系统为一步酸蚀/底漆系统(KBT-5,佳丽宝;和Clearfil Liner Bond II,可乐丽)以及两步酸蚀/底漆系统(Superbond D-Liner Plus,日进医疗)。牛牙釉质和牙本质表面用600目碳化硅砂纸进行预备和打磨。然后,表面要么不进行处理(对照组),要么进行15秒的空气动力抛光。划定一个4毫米的粘结区域,并根据制造商的说明用三种粘结系统对牙齿基质进行粘结。在37摄氏度的水中储存24小时后测量拉伸粘结强度。对空气动力抛光后的标本进行扫描电子显微镜(SEM)和能量色散光谱(EDS)分析,以确定表面形态的变化并检测空气动力抛光机残留的物质。对粘结树脂与牙本质之间的界面进行SEM和透射电子显微镜(TEM)观察,以检测对照组和处理组标本混合层的变化。

结果

结果表明,空气动力抛光对牙釉质的拉伸粘结强度没有影响,但对一步系统的牙本质拉伸粘结强度有不利影响,而对两步系统则没有影响。空气动力抛光后牙釉质表面的变化最小,但在牙本质上观察到表面粗糙度增加且玷污层完全去除。树脂/牙本质界面的SEM和TEM观察表明,空气动力抛光机可能会导致牙本质表面胶原纤维的表面浸软。这种变化可能会降低酸蚀/底漆剂和粘结树脂渗入牙本质的能力,从而导致混合层质量不佳。

意义

对于那些仅含有用于牙本质预处理的酸性底漆的系统,由于失去可靠的粘结性,在修复牙本质边缘洞之前使用空气动力抛光进行表面预备是禁忌的。

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