Kowalska Andrea, Sokolowski Jerzy, Bociong Kinga
Department of General Dentistry, Medical University of Lodz, 92-213 Lodz, Poland.
Polymers (Basel). 2021 Feb 2;13(3):470. doi: 10.3390/polym13030470.
The presented paper concerns current knowledge of commercial and alternative photoinitiator systems used in dentistry. It discusses alternative and commercial photoinitiators and focuses on mechanisms of polymerization process, in vitro measurement methods and factors influencing the degree of conversion and hardness of dental resins. PubMed, Academia.edu, Google Scholar, Elsevier, ResearchGate and Mendeley, analysis from 1985 to 2020 were searched electronically with appropriate keywords. Over 60 articles were chosen based on relevance to this review. Dental light-cured composites are the most common filling used in dentistry, but every photoinitiator system requires proper light-curing system with suitable spectrum of light. Alternation of photoinitiator might cause changing the values of biomechanical properties such as: degree of conversion, hardness, biocompatibility. This review contains comparison of biomechanical properties of dental composites including different photosensitizers among other: camphorquinone, phenanthrenequinone, benzophenone and 1-phenyl-1,2 propanedione, trimethylbenzoyl-diphenylphosphine oxide, benzoyl peroxide. The major aim of this article was to point out alternative photoinitiators which would compensate the disadvantages of camphorquinone such as: yellow staining or poor biocompatibility and also would have mechanical properties as satisfactory as camphorquinone. Research showed there is not an adequate photoinitiator which can be as sufficient as camphorquinone (CQ), but alternative photosensitizers like: benzoyl germanium or novel acylphosphine oxide photoinitiators used synergistically with CQ are able to improve aesthetic properties and degree of conversion of dental resin.
本文介绍了牙科中使用的商业和替代光引发剂体系的当前知识。它讨论了替代和商业光引发剂,并重点关注聚合过程的机制、体外测量方法以及影响牙科树脂转化率和硬度的因素。使用适当的关键词对1985年至2020年期间的PubMed、Academia.edu、谷歌学术、爱思唯尔、ResearchGate和Mendeley进行了电子搜索。根据与本综述的相关性选择了60多篇文章。牙科光固化复合材料是牙科中最常用的填充物,但每个光引发剂体系都需要具有合适光谱的适当光固化体系。光引发剂的改变可能会导致生物力学性能值的变化,如:转化率、硬度、生物相容性。本综述比较了牙科复合材料的生物力学性能,包括不同的光敏剂,如:樟脑醌、菲醌、二苯甲酮和1-苯基-1,2-丙二酮、三甲基苯甲酰二苯基氧化膦、过氧化苯甲酰。本文的主要目的是指出替代光引发剂,以弥补樟脑醌的缺点,如:黄色染色或生物相容性差,并且还具有与樟脑醌一样令人满意的机械性能。研究表明,没有一种足够的光引发剂能像樟脑醌(CQ)那样有效,但替代光敏剂,如:苯甲酰锗或与CQ协同使用的新型酰基氧化膦光引发剂,能够改善牙科树脂的美学性能和转化率。