Tzanakakis Emmanouil-George C, Tzoutzas Ioannis G, Koidis Petros T
Doctoral student, School of Dentistry, National and Kapodistrian University of Athens, Athens, Greece.
Professor, Department of Operative Dentistry, National and Kapodistrian University of Athens, Athens, Greece.
J Prosthet Dent. 2016 Jan;115(1):9-19. doi: 10.1016/j.prosdent.2015.09.008. Epub 2015 Nov 6.
With a number of zirconia ceramic materials currently available for clinical use, an overview of the scientific literature on the adhesion methods and their potential influence is indicated.
The purpose of this systematic review was to classify and analyze the existing methods and materials proposed to improve adhesion to zirconia surfaces.
The current literature of in vitro studies examining the bond strength on zirconia ceramics, including clinical studies from 1998 until 2014, was analyzed. A search of the English language literature was undertaken using MEDLINE and PubMed, and a hand search was made for any relevant research paper from the library of a dental school. Papers evaluating only alumina restoration bond or ceramic-zirconia bond were excluded.
A total of 134 publications were identified for analysis. Different adhesive techniques with different testing methods were reviewed. Results were difficult to compare in that the parameters varied in each research protocol.
Airborne-particle abrasion and tribochemical silica coating are reference pretreatment methods. Adhesive monomers are necessary for chemical bonding. Surface contamination and aging have negative effects on adhesion to zirconia. Many factors influence each combination of zirconia material, such as surface treatment, adhesive medium, and aging conditions. Laboratory studies should be confirmed by clinical trials.
鉴于目前有多种氧化锆陶瓷材料可供临床使用,有必要对有关粘结方法及其潜在影响的科学文献进行综述。
本系统评价的目的是对为提高与氧化锆表面的粘结力而提出的现有方法和材料进行分类和分析。
分析了1998年至2014年期间有关氧化锆陶瓷粘结强度的体外研究的现有文献,包括临床研究。使用MEDLINE和PubMed对英文文献进行检索,并对一所牙科学院图书馆的所有相关研究论文进行手工检索。仅评估氧化铝修复体粘结或陶瓷-氧化锆粘结的论文被排除。
共确定134篇出版物进行分析。对采用不同测试方法的不同粘结技术进行了综述。由于每个研究方案中的参数各不相同,结果难以比较。
空气颗粒喷砂和摩擦化学硅涂层是参考预处理方法。粘结单体对于化学键合是必需的。表面污染和老化对与氧化锆的粘结有负面影响。许多因素会影响氧化锆材料的每种组合,如表面处理、粘结介质和老化条件。实验室研究应通过临床试验加以证实。