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New strategy to create ''Super Dentin'' using adhesive technology: Reinforcement of adhesive-dentin interface and protection of tooth structures

机译:使用粘合剂技术创建“超级牙本质”的新策略:增强粘合剂-牙本质界面并保护牙齿结构

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Dentin bonding systems have been dramatically simplified and improved during the recent decades. Monomer penetration into dentin and its polymerization in situ creates a hybrid layer, which is essential to obtain good bonding to dentin. Moreover, the presence of an acid-base resistant zone below the hybrid layer has been documented with self-etching adhesive systems in an artificial secondary caries attack. When ultrastructure of the acid-base resistant zone is assessed by SEM and TEM observations, formation of the acid-base resistant zone is considered to be due to the monomer penetration potential and fluoride release in the adhesive systems. Natural dentin has a limited potential to resist an acid attack of secondary caries; however, the acid-base resistant zone does not purely consist of dentin in morphology, it is rather a combination of dentin and the adjacent hybrid layer. Therefore, the reinforced dentin has been called ''Super Dentin'' bearing the ability to prevent primary and secondary caries. Prospectively, the great potential of adhesive technology in creation of the ''Super Dentin'' would lead to the development of new materials for mechanical, chemical and biological protection of the dental structures.
机译:在最近的几十年中,牙本质粘合系统得到了极大的简化和改进。单体渗透到牙本质中并在原位聚合产生杂化层,这对于获得与牙本质的良好结合至关重要。此外,在人工继发性龋齿发作中,利用自蚀刻粘合剂系统已经记录了在杂化层下方存在耐酸碱区域。当通过SEM和TEM观察评估耐酸碱区域的超微结构时,认为耐酸碱区域的形成是由于单体渗透潜能和氟化物在粘合剂体系中的释放。天然牙本质抵抗继发性龋齿的酸侵袭的潜力有限。然而,耐酸碱区域在形态上并不完全由牙本质组成,而是牙本质和相邻杂化层的组合。因此,增强型牙本质被称为“超级牙本质”,具有预防原发性和继发性龋齿的能力。潜在地,粘合剂技术在创造“超级牙本质”方面的巨大潜力将导致开发用于牙科结构的机械,化学和生物保护的新材料。

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