Zhang Zihou, Beitzel Dylan, Mutluay Mustafa, Tay Franklin R, Pashley David H, Arola Dwayne
Department of Mechanical Engineering, University of Maryland Baltimore County, Baltimore, MD, USA.
Adhesive Dentistry Research Group, Department of Cariology, Institute of Dentistry, University of Turku, Turku, Finland.
Dent Mater. 2015 Sep;31(9):1109-18. doi: 10.1016/j.dental.2015.06.011. Epub 2015 Jul 10.
Fatigue of resin-dentin adhesive bonds is critical to the longevity of resin composite restorations.
The objectives were to characterize the fatigue and fatigue crack growth resistance of resin-dentin bonds achieved using two different commercial adhesives and to identify apparent "weak-links".
Bonded interface specimens were prepared using Adper Single Bond Plus (SB) or Adper Scotchbond Multi-Purpose (SBMP) adhesives and 3M Z100 resin composite according to the manufacturers' instructions. The stress-life fatigue behavior was evaluated using the twin bonded interface approach and the fatigue crack growth resistance was examined using bonded interface Compact Tension (CT) specimens. Fatigue properties of the interfaces were compared to those of the resin-adhesive, resin composite and coronal dentin.
The fatigue strength of the SBMP interface was significantly greater than that achieved by SB (p≤0.01). Both bonded interfaces exhibited significantly lower fatigue strength than that of the Z100 and dentin. Regarding the fatigue crack growth resistance, the stress intensity threshold (ΔKth) of the SB interface was significantly greater (p≤0.01) than that of the SBMP, whereas the ΔKth of the interfaces was more than twice that of the parent adhesives.
Collagen fibril reinforcement of the resin adhesive is essential to the fatigue crack growth resistance of resin-dentin bonds. Resin tags that are not well hybridized into the surrounding intertubular dentin and/or poor collagen integrity are detrimental to the bonded interface durability.
树脂 - 牙本质粘结的疲劳对树脂复合材料修复体的寿命至关重要。
目的是表征使用两种不同商用粘合剂获得的树脂 - 牙本质粘结的疲劳和抗疲劳裂纹扩展性能,并识别明显的“薄弱环节”。
根据制造商说明,使用Adper Single Bond Plus(SB)或Adper Scotchbond Multi - Purpose(SBMP)粘合剂以及3M Z100树脂复合材料制备粘结界面标本。使用双粘结界面方法评估应力 - 寿命疲劳行为,并使用粘结界面紧凑拉伸(CT)标本检查抗疲劳裂纹扩展性能。将界面的疲劳性能与树脂 - 粘合剂、树脂复合材料和冠部牙本质的疲劳性能进行比较。
SBMP界面的疲劳强度明显高于SB界面(p≤0.01)。两种粘结界面的疲劳强度均明显低于Z100和牙本质。关于抗疲劳裂纹扩展性能,SB界面的应力强度阈值(ΔKth)明显高于SBMP界面(p≤0.01),而界面的ΔKth是母体粘合剂的两倍多。
树脂粘合剂的胶原纤维增强对于树脂 - 牙本质粘结的抗疲劳裂纹扩展至关重要。未很好地与周围管间牙本质杂交的树脂突和/或较差的胶原完整性对粘结界面耐久性有害。