Albeshir Ebtehal G, Alsahafi Rashed, Albluwi Reem, Balhaddad Abdulrahman A, Mitwalli Heba, Oates Thomas W, Hack Gary D, Sun Jirun, Weir Michael D, Xu Hockin H K
Program in Dental Biomedical Sciences, University of Maryland School of Dentistry, Baltimore, MD 21201, USA.
Department of Restorative Dentistry, King Abdul-Aziz Medical City, Ministiry of National Guard-Health Affairs, Riyadh 11426, Saudi Arabia.
Materials (Basel). 2022 Apr 18;15(8):2951. doi: 10.3390/ma15082951.
Dimethacrylate-based resin composites restorations have become widely-used intraoral materials in daily dental practice. The increasing use of composites has greatly enhanced modern preventive and conservative dentistry. They have many superior features, especially esthetic properties, bondability, and elimination of mercury and galvanic currents. However, polymeric materials are highly susceptible to polymerization shrinkage and stresses that lead to microleakage, biofilm formation, secondary caries, and restoration loss. Several techniques have been investigated to minimize the side effects of these shrinkage stresses. The primary approach is through fabrications and modification of the resin matrices. Therefore, this review article focuses on the methods for testing the shrinkage, as well as formulations of resinous matrices available to reduce polymerization shrinkage and its associated stress. Furthermore, this article reviews recent cutting-edge developments on bioactive low-shrinkage-stress nanocomposites to effectively inhibit the growth and activities of cariogenic pathogens and enhance the remineralization process.
基于二甲基丙烯酸酯的树脂复合材料修复体已成为日常牙科实践中广泛使用的口腔内材料。复合材料使用的增加极大地促进了现代预防和保守牙科的发展。它们具有许多优越的特性,特别是美学性能、粘结性以及消除汞和电流。然而,聚合材料极易受到聚合收缩和应力的影响,这些会导致微渗漏、生物膜形成、继发龋和修复体脱落。已经研究了几种技术来尽量减少这些收缩应力的副作用。主要方法是通过树脂基体的制造和改性。因此,这篇综述文章重点关注测试收缩的方法,以及可用于减少聚合收缩及其相关应力的树脂基体配方。此外,本文还综述了生物活性低收缩应力纳米复合材料的最新前沿进展,以有效抑制致龋病原体的生长和活性,并增强再矿化过程。