Department of Medical Sciences, University of Trieste, Piazza dell'Ospitale 1, 5 Trieste, Italy.
J Dent. 2012 Sep;40(9):711-7. doi: 10.1016/j.jdent.2012.05.001. Epub 2012 May 11.
DC of three commercial two-step etch-and-rinse adhesives across the dentine-adhesive interface was investigated using micro-Raman spectroscopy. The hypothesis tested was that no difference in DC would exist among the adhesives tested.
Adper Scotchbond 1XT (3M ESPE), Prime&Bond NT (Dentsply DeTrey), and Ambar (FGM) were applied on human dentine disks (n=9). Composite increments of 2mm were then applied on the adhesive surface. Raman spectra were collected along the dentine-adhesive interface. The relative intensities of the peaks associated with the mineral (PO(4)(3-) at 960cm(-1)) and the adhesive (CC at 1640cm(-1); phenyl CC at 1610cm(-1)) were used to identify the adhesive within the hybrid layer and calculate its DC.
Adper Scotchbond 1XT and Ambar showed similar DC (79±7% and 77±7%, respectively), while a lower DC was found for Prime&Bond NT (70±7%; p<0.05).
The hypothesis tested was rejected because differences were found among the adhesives tested. The difference in DC among the three adhesive systems can be attributed to different monomer compositions and solvents. Further studies are needed to correlate DC with other mechanical properties of these adhesives.
Insufficient polymerization of an adhesive can result in a weak hybrid layer, and the presence of unreacted monomers may result in degradation of the polymeric network, decreasing the strength and longevity of the bond. In the present study, Adper Scotchbond 1XT and Ambar performed significantly better than Prime&Bond NT.
使用微拉曼光谱研究三种商业两步酸蚀-冲洗型黏结剂在牙本质-黏结剂界面的 DC。测试的假设是,测试的黏结剂之间不会存在 DC 差异。
将 Adper Scotchbond 1XT(3M ESPE)、Prime&Bond NT(登士柏迪特利)和 Ambar(FGM)应用于人类牙本质圆盘(n=9)。然后在黏结剂表面添加 2mm 的复合增量。沿着牙本质-黏结剂界面采集拉曼光谱。与矿物质(960cm(-1)处的 PO(4)(3-))和黏结剂(1640cm(-1)处的 CC;1610cm(-1)处的苯基 CC)相关的峰的相对强度用于识别混合层内的黏结剂并计算其 DC。
Adper Scotchbond 1XT 和 Ambar 显示出相似的 DC(分别为 79±7%和 77±7%),而 Prime&Bond NT 的 DC 较低(70±7%;p<0.05)。
测试的假设被拒绝,因为测试的黏结剂之间存在差异。三种黏结系统之间的 DC 差异可归因于不同的单体组成和溶剂。需要进一步的研究将 DC 与这些黏结剂的其他机械性能相关联。
黏结剂聚合不足会导致弱的混合层,如果存在未反应的单体,可能会导致聚合网络降解,降低黏结的强度和耐久性。在本研究中,Adper Scotchbond 1XT 和 Ambar 的表现明显优于 Prime&Bond NT。