Sauro Salvatore, Watson Timothy F, Mannocci Francesco, Miyake Katsuya, Huffman Bradford P, Tay Franklin R, Pashley David H
Dental Biomaterials Science, Biomimetics and Biophotonics, King's College London Dental Institute at Guy's, King's College, St. Thomas' Hospitals, London, United Kingdom.
J Biomed Mater Res B Appl Biomater. 2009 Jul;90(1):327-37. doi: 10.1002/jbm.b.31290.
This study evaluated the micropermeability of six etch-and-rinse adhesives bonded to dentin. There were two principal groups: wet bonding with water or wet bonding with absolute ethyl alcohol. After bonding and the creation of composite build-ups, the pulp chambers were filled with 0.1% lucifer yellow. The contents of the pulp chamber were kept under 20 cm H(2)O pressure to simulate pulpal pressure for 3 h. The specimens were vertically sectioned into multiple 0.5-mm thick slabs that were polished and then examined using a two-photon confocal laser scanning microscope (TPCLSM). The results showed that specimens bonded with adhesives using the water wet-bonding condition all showed tracer taken up uniformly by the hybrid layer. This uptake of fluorescent tracer into the hybrid layer was quantified by computer software. The most hydrophobic experimental resins showed the highest fluorescent tracer uptake (ca. 1800 +/- 160 arbitrary fluorescent units/std. surface area). The most hydrophilic experimental resins showed the lowest tracer uptake into water-saturated hybrid layers. When ethanol wet-bonding was used, significantly less fluorescent tracer was seen in hybrid layers. The most hydrophilic experimental resins and Single Bond Plus showed little micropermeability. Clearly, ethanol wet-bonding seals dentin significantly better than water-wet dentin regardless of the adhesive in etch-and-rinse systems.
本研究评估了六种酸蚀冲洗粘结剂与牙本质粘结后的微渗透性。主要分为两组:用水进行湿粘结或用无水乙醇进行湿粘结。粘结并制作复合树脂充填体后,髓腔用0.1%的荧光素黄填充。将髓腔内的物质保持在20 cm H₂O压力下以模拟牙髓压力3小时。将标本垂直切成多个0.5毫米厚的薄片,进行抛光,然后使用双光子共聚焦激光扫描显微镜(TPCLSM)进行检查。结果表明,在水湿粘结条件下用粘结剂粘结的标本,其杂化层均均匀摄取示踪剂。通过计算机软件对荧光示踪剂在杂化层中的摄取进行定量。疏水性最强的实验树脂显示出最高的荧光示踪剂摄取量(约1800±160任意荧光单位/标准表面积)。亲水性最强的实验树脂在水饱和杂化层中的示踪剂摄取量最低。当使用乙醇湿粘结时,在杂化层中观察到的荧光示踪剂明显减少。亲水性最强的实验树脂和Single Bond Plus显示出极低的微渗透性。显然,在酸蚀冲洗系统中,无论使用何种粘结剂,乙醇湿粘结对牙本质的封闭效果都明显优于水湿粘结。