Tanaka J, Inoue K, Masamura H, Matsumura K, Nakai H, Inoue K
Department of Operative Dentistry, Okayama University Dental School, Japan.
Dent Mater J. 1993 Jun;12(1):1-11. doi: 10.4012/dmj.12.1.
This study investigated the durability, especially the nonwaterdegradable qualities, of experimental light-cured composite resin containing barium-borosilicate glass filler. For this purpose, Bis-GMA, a typical component of base monomer in conventional composite resin, was replaced by Bis-GMA-F which is water-repellent. After over 20,000 thermal cycles, the composite resin containing Bis-GMA retained only 60 approximately 70% of its initial compressive, diametral tensile, flexural strength and flexural elastic modulus. However, the experimental composite resin containing Bis-GMA-F as a resin matrix showed no loss of compressive, diametral tensile strength or flexural elastic modulus, although flexural strength showed some deterioration. It was considered that the difference between Bis-GMA-F and Bis-GMA, as resin matrix, caused variation in the characteristics of water sorption.
本研究调查了含钡硼硅酸盐玻璃填料的实验性光固化复合树脂的耐久性,尤其是其非水降解特性。为此,传统复合树脂中作为基础单体典型成分的双酚A缩水甘油醚甲基丙烯酸酯(Bis-GMA)被具有防水性的双酚A缩水甘油醚甲基丙烯酸酯氟化物(Bis-GMA-F)所取代。经过20000多次热循环后,含Bis-GMA的复合树脂仅保留了其初始抗压强度、径向拉伸强度、弯曲强度和弯曲弹性模量的约60%至70%。然而,以Bis-GMA-F作为树脂基质的实验性复合树脂,尽管弯曲强度有所下降,但抗压强度、径向拉伸强度或弯曲弹性模量并未损失。据认为,作为树脂基质的Bis-GMA-F和Bis-GMA之间的差异导致了吸水特性的变化。