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TEM/SEM morphological analysis of dental tissue-resin bonding system in dry and wet conditions

机译:干湿条件下牙科组织树脂粘接系统的TEM / SEM形态学分析

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The formation of a dental tissue-composite resin interface that is resistant to fracture, reducing degradation by microleakage and nanoleakage, is fundamental to almost all restorative adhesive dentistry. For quite long time, an alternative resin substitute for amalgam has been searched unfortunately without much success. The polymeric shrinkage generally observed on the tissue-resin restoration interface causes the failure by microleakage degradation. In this work the interface formed between one bond system and the dental tissue at different conditions was analyzed. Twelve erupted pre-molars, non-carious, not fractured were selected and extracted for orthodontics procedures. Duplicate teeth samples of both groups were acid etched (37% phosphoric acid) for different time intervals: 5s, iSs or 30s. Half of the samples were prepared for transmission electron microscopy (TEM) analysis and the other half for scanning electron microscopy (SEM) analysis. Teeth samples for SEM evaluation were prepared by restoration using Tetric Ceram Vivadent resin. The specimens were stored in glutaraldehyde solution (2.5% PBS/0.1M, pH=7.3). The characterization procedure was carried out by TEM and SEM coupled to EDX microprobe. All SEM samples were previously covered with a thin conductive film of Au-Pd before observation. Photomicrographs were collected and evaluated regarding to the dental tissue-composite resin interface and morphology. Resin-infiltrate hybrid layer was investigated depending on acid etching under wet or dry conditions. The results strongly suggested a significant positive relationship between wet substrate and hybrid layer formation. The use of phosphoric acid etching for 15 or 30 sec produced similar micromorphological patterns. The acid etching for 5 sec resulted on a worse hybrid layer formation compromising the adhesion of the dental tissue-resin interface.
机译:形成牙科组织复合树脂界面,耐骨折,通过微透盖和纳米盖劣化降解,是几乎所有修复粘合剂牙科的根本。很长一段时间,遗憾的是,替代的替代树脂替代品已经搜索了Amalgam。在组织树脂恢复界面上通常观察到的聚合物收缩导致通过微透盖降解失败。在这项工作中,分析了在不同条件下在一个键合系统和牙科组织之间形成的界面。选择并阐述了12个爆发的前臼齿,未腐蚀,并提取正畸术手术。两组的重复牙齿样品是不同时间间隔的酸蚀刻(37%磷酸):5s,ISS或30s。为透射电子显微镜(TEM)分析和用于扫描电子显微镜(SEM)分析的另一半进行制备一半样品。通过使用Tetric Ceram Vievadent树脂通过恢复制备SEM评估的牙齿样品。将样品储存在戊二醛溶液(2.5%PBS / 0.1M,pH = 7.3)中。表征过程通过TEM和SEM耦合到EDX微探针进行。在观察之前,预先用Au-Pd的薄导电膜覆盖所有SEM样品。收集显微照片并评估牙科组织复合树脂界面和形态学。根据湿润或干燥条件下的酸蚀刻研究树脂渗透杂交层。结果强烈提出了湿底物和杂化层形成的显着阳性关系。使用磷酸蚀刻15或30秒产生了类似的微观形态图案。 5秒的酸蚀刻导致损害牙科组织树脂界面的粘附性的更差的杂化层。

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