深入了解多功能牙本质粘结剂的开发,以提高粘结界面的耐久性

IF 1.5 Q3 DENTISTRY, ORAL SURGERY & MEDICINE Frontiers in dental medicine Pub Date : 2023-02-16 DOI:10.3389/fdmed.2023.1127368
I. Porto, Teresa de Lisieux Guedes Ferreira Lôbo, R. Rodrigues, R. Lins, Marcos Aurélio Bomfim da Silva
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引用次数: 0

摘要

尽管在过去的50年里,粘合剂技术取得了巨大的进步,但在粘合剂界面的耐久性方面仍然存在一些尚未解决的问题。树脂和牙本质基质之间的界面的完全密封仍然难以实现,并且是否能够以完全和均匀的方式产生软化胶原框架内的粘合剂系统的最佳相互扩散是值得怀疑的。事实上,有人认为,水解降解与牙本质基质酶的作用相结合,会破坏牙齿的粘合,破坏未受保护的胶原原纤维。虽然通常可以立即获得足够的树脂-牙本质粘合,但粘合效率会随着时间的推移而下降。因此,在这里,将通过对过去几年发表的科学文章的目录调查进行审查,以提出改进和/或开发有助于防止粘合剂界面降解的新粘合剂系统的策略。它将特别关注新的临床技术或具有特性的新材料,这些技术或材料有助于提高粘性修复体的耐久性,避免重复性的替代修复周期和随之而来的牙齿损伤增加。
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Insight into the development of versatile dentin bonding agents to increase the durability of the bonding interface
Despite the huge improvements made in adhesive technology over the past 50 years, there are still some unresolved issues regarding the durability of the adhesive interface. A complete sealing of the interface between the resin and the dentin substrate remains difficult to achieve, and it is doubtful whether an optimal interdiffusion of the adhesive system within the demineralized collagen framework can be produced in a complete and homogeneous way. In fact, it is suggested that hydrolytic degradation, combined with the action of dentin matrix enzymes, destabilizes the tooth-adhesive bond and disrupts the unprotected collagen fibrils. While a sufficient resin–dentin adhesion is usually achieved immediately, bonding efficiency declines over time. Thus, here, a review will be carried out through a bibliographic survey of scientific articles published in the last few years to present strategies that have been proposed to improve and/or develop new adhesive systems that can help prevent degradation at the adhesive interface. It will specially focus on new clinical techniques or new materials with characteristics that contribute to increasing the durability of adhesive restorations and avoiding the recurrent replacement restorative cycle and the consequent increase in damage to the tooth.
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CiteScore
2.10
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审稿时长
13 weeks
期刊最新文献
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