Shimizu Kota, Satoh Tomonori, Shinkai Koichi
Advanced Operative Dentistry-Endodontics, The Nippon Dental University Graduate School of Life Dentistry at Niigata, Niigata 951-8580, Japan.
Department of Endodontics, The Nippon Dental University School of Life Dentistry at Niigata, Niigata 951-8580, Japan.
Materials (Basel). 2021 Apr 21;14(9):2099. doi: 10.3390/ma14092099.
The purpose of this study was to examine the effects of combining specific adhesive materials and various surface treatments on bonding durability and microleakage of vertically fractured roots. Adhesive models were prepared using bovine lower incisors. The experiment included the following five groups: SB-G group (control) (10% citric acid with 3% ferric chloride solution (10-3 solution) + an adhesive resin cement (4-META/MMA-TBB; Super-Bond)), EC group (self-cure bonding agent (UB) + core composite resin (EC)), EC-G group (10-3 solution + UB + EC), EC-P group (40% phosphate solution + UB + EC), and EC-E group (18% ethylenediaminetetraacetic acid (EDTA) solution + UB + EC). After applying a load of 50,000 cycles, microleakage, microtensile bond strength (μTBS), and failure modes were examined. Microleakage of the EC, EC-G, and EC-E groups was significantly lower than that of the EC-P group. The μTBS of the EC-G group was significantly higher than that of the other groups. All EC groups showed that mixed (cohesive and adhesive) and adhesive failures were the most prevalent types of failure modes. The EC-G group showed the highest bonding durability and the lowest microleakage results, which indicates a possible alternative to current adhesive and tooth surface treatments.
本研究的目的是检验特定粘结材料与各种表面处理相结合对垂直根折粘结耐久性和微渗漏的影响。使用牛下颌切牙制备粘结模型。实验包括以下五组:SB - G组(对照组)(10%柠檬酸与3%氯化铁溶液(10 - 3溶液)+粘结树脂水门汀(4 - META/MMA - TBB;Super - Bond))、EC组(自凝粘结剂(UB)+核复合树脂(EC))、EC - G组(10 - 3溶液+ UB + EC)、EC - P组(40%磷酸溶液+ UB + EC)和EC - E组(18%乙二胺四乙酸(EDTA)溶液+ UB + EC)。施加50000次循环载荷后,检测微渗漏、微拉伸粘结强度(μTBS)和失效模式。EC组、EC - G组和EC - E组的微渗漏显著低于EC - P组。EC - G组的μTBS显著高于其他组。所有EC组均显示混合(粘结和粘结性)和粘结性失效是最常见的失效模式类型。EC - G组显示出最高的粘结耐久性和最低的微渗漏结果,这表明它可能是当前粘结剂和牙齿表面处理方法的一种替代方案。