不同黏合剂世代直接修复牙齿耐酸碱性区:系统回顾

Zurab Khabadze, Ekaterina Shilyaeva, Alexandra Kotelnikova, David Todua, Yusup Bakaev, Saida Abdulkerimova, Oleg Mordanov
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引用次数: 0

摘要

目的:了解耐酸碱区(ABRZ)是什么及其形成机制。材料和方法:本系统综述是基于实验室研究的搜索,其中使用了自抓取粘合剂系统。电子数据库PubMed被用于搜索。搜寻工作于2021年8月开始,于2022年6月结束。我们分析了每项研究的材料和方法,并将其输入相应的表格中,以便对所获得的结果进行更清晰的评估。结果:本系统综述纳入了2011 - 2019年发表的15篇全文文章。ABRZ在牙本质和牙釉质上形成。在牙本质上,只有在使用自蚀刻粘合剂系统时才能形成ABRZ;在珐琅上,相反,初步蚀刻和冲洗的步骤有助于形成较厚的ABRZ。功能单体MDP和氟增加了ABRZ的厚度,并提供了一个没有缺陷和侵蚀的杂化层/ABRZ边界。结论:自蚀刻胶粘剂体系确保了耐酸碱试验的ABRZ的产生。这种现象可以提供牙齿组织对脱矿的抵抗力,从而增加它们对蛀牙的抵抗力。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Acid-Base Resistant Zone in Teeth with the Direct Restoration Using Different Adhesive System Generations: A Systematic Review
Objective: To find out what the acid-base resistant zone (ABRZ) is and the mechanism of its formation. Material and Methods: This systematic review was based on the search of laboratory studies in which selfetching adhesive systems were used. The electronic database PubMed was used for the search. The search began on August 2021 and ended on June 2022. We have analyzed the materials and methods of each research and entered them in the appropriate tables to give a clearer assessment of the obtained results. Results: This systematic review included 15 full-text articles published from 2011 to 2019. The ABRZ is formed on both dentine and enamel. On dentine, the ABRZ is formed only when using self-etching adhesive systems; on the enamel, on the contrary, the step of preliminary etch and rinse contributes to the formation of a thicker ABRZ. The functional monomer MDP and fluorine increase the thickness of the ABRZ and provide a hybrid layer /ABRZ boundary without defects and erosions. Conclusion: Self-etching adhesive systems ensure the creation of an ABRZ resistant to acid-base tests. This phenomenon can provide the resistance of tooth tissues to demineralization, and therefore increase their resistance to caries.
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