Jeaidi Zaid Al
Dr. Zaid Al Jeaidi, Assistant Professor, Conservative Dental Science Department, College of Dentistry, Prince Sattam Bin Abdulaziz University, Al-Kharj, Saudi Arabia.
Pak J Med Sci. 2016 Nov-Dec;32(6):1474-1478. doi: 10.12669/pjms.326.11282.
To assess the fracture resistance of endodontically treated teeth with a novel Zirconia (Zr) nano-particle filler containing bulk fill resin composite.
Forty-five freshly extracted maxillary central incisors were endodontically treated using conventional step back preparation and warm lateral condensation filling. Post space preparation was performed using drills compatible for fiber posts (Rely X Fiber Post) on all teeth (n=45), and posts were cemented using self etch resin cement (Rely X Unicem). Samples were equally divided into three groups (n=15) based on the type of core materials, ZirconCore (ZC) MulticCore Flow (MC) and Luxacore Dual (LC). All specimens were mounted in acrylic resin and loads were applied (Universal testing machine) at 130° to the long axis of teeth, at a crosshead speed of 0.5 mm/min until failure. The loads and the site at which the failures occurred were recorded. Data obtained was tabulated and analyzed using a statistical program. The means and standard deviations were compared using ANOVA and Multiple comparisons test.
The lowest and highest failure loads were shown by groups LC (18.741±3.02) and MC (25.16±3.30) respectively. Group LC (18.741±3.02) showed significantly lower failure loads compared to groups ZC (23.02±4.21) and MC (25.16±3.30) (p<0.01). However groups ZC (23.02±4.21) and MC (25.16±3.30) showed comparable failure loads (p=0.23).
Fracture resistance of endodontically treated teeth restored with Zr filler containing bulk fill composite cores was comparable to teeth restored with conventional Zr free bulk fill composites. Zr filled bulk fill composites are recommended for restoration of endodontically treated teeth as they show comparable fracture resistance to conventional composite materials with less catastrophic failures.
使用一种新型含氧化锆(Zr)纳米颗粒填料的大块充填树脂复合材料,评估经根管治疗牙齿的抗折性能。
45颗新鲜拔除的上颌中切牙采用传统逐步后退法预备根管并热牙胶侧方加压充填进行根管治疗。所有牙齿(n = 45)均使用与纤维桩适配的钻针(Rely X Fiber Post)进行桩道预备,并用自酸蚀树脂水门汀(Rely X Unicem)粘结桩。根据核材料类型,将样本平均分为三组(n = 15),即ZirconCore(ZC)、MulticCore Flow(MC)和Luxacore Dual(LC)。所有标本均固定于丙烯酸树脂中,并在万能试验机上以0.5 mm/min的十字头速度,在与牙齿长轴呈130°的方向施加负荷直至破坏。记录负荷及破坏发生的部位。所得数据列表并用统计程序进行分析。使用方差分析和多重比较检验比较均值和标准差。
LC组(18.741±3.02)的破坏负荷最低,MC组(25.16±3.30)最高。与ZC组(23.02±4.21)和MC组(25.16±3.30)相比,LC组(18.741±3.02)的破坏负荷显著更低(p<0.01)。然而,ZC组(23.02±4.21)和MC组(25.16±3.30)的破坏负荷相当(p = 0.23)。
用含Zr填料的大块充填复合核修复的经根管治疗牙齿的抗折性能与用传统不含Zr的大块充填复合材料修复的牙齿相当。含Zr的大块充填复合材料推荐用于经根管治疗牙齿的修复,因为它们显示出与传统复合材料相当的抗折性能,且灾难性破坏较少。