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当前自酸蚀和酸蚀冲洗粘结剂与深层牙本质粘结的微渗透性:一项使用双重染色/共聚焦显微镜技术的比较研究。

Micropermeability of current self-etching and etch-and-rinse adhesives bonded to deep dentine: a comparison study using a double-staining/confocal microscopy technique.

作者信息

Sauro Salvatore, Pashley David H, Mannocci Francesco, Tay Franklin R, Pilecki Peter, Sherriff Martyn, Watson Timothy F

机构信息

Dental Biomaterials Science, Biomimetics and Biophotonics, King's College London Dental Institute at Guy's, St Thomas Hospitals, London, UK.

出版信息

Eur J Oral Sci. 2008 Apr;116(2):184-93. doi: 10.1111/j.1600-0722.2007.00518.x.

Abstract

Water sorption decreases the mechanical properties and the bond strengths of resin-bonded dentine. The aim of this study was to evaluate the micropermeability of several self-etching and etch-and-rinse adhesives. Optibond FL, Silorane, Scotchbond 1XT, G-Bond, and DC-Bond were bonded under simulated pulpal pressure. A 10 wt% solution of ammoniacal silver nitrate and a 1 wt% solution of rhodamine B were injected into the pulp chamber at 20 cm of water pressure. The dentine-adhesive interfaces were examined using a confocal scanning microscope. Micropermeability was detected in all the adhesives. DC-Bond, G-Bond, and Scotchbond 1XT showed voids along the resin-bonded interface. Silorane and Optibond FL showed an adhesive layer that was free from water trees and micropermeability. The double staining technique is a method that gives accurate results in the study of the resin-dentine micropermeability. Each class of adhesive has a different distribution of micropermeability. The higher the micropermeability, the higher the risk of defects at the resin-dentine interface, which may represent the pathway for hydrolytic and enzymatic degradation of resin-dentine bonds over time.

摘要

水分吸附会降低树脂粘结牙本质的力学性能和粘结强度。本研究的目的是评估几种自酸蚀和酸蚀冲洗粘结剂的微渗漏情况。Optibond FL、Silorane、Scotchbond 1XT、G-Bond和DC-Bond在模拟牙髓压力下进行粘结。在20 cm水柱压力下,将10 wt%的氨硝酸银溶液和1 wt%的罗丹明B溶液注入髓腔。使用共聚焦扫描显微镜检查牙本质-粘结剂界面。在所有粘结剂中均检测到微渗漏。DC-Bond、G-Bond和Scotchbond 1XT在树脂粘结界面处出现空隙。Silorane和Optibond FL显示出无水性树突和微渗漏的粘结层。双重染色技术是一种在树脂-牙本质微渗漏研究中能给出准确结果的方法。每类粘结剂的微渗漏分布不同。微渗漏越高,树脂-牙本质界面出现缺陷的风险越高,随着时间推移,这可能代表树脂-牙本质粘结水解和酶解降解的途径。

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