树脂改性硅酸钙光固化材料与牙本质的结合强度

R. Fares, Nancy Kudsi de Carvalho, Marina Carvalho Prado, Erick Miranda Souza, Plínio Mendes Senna, Emmanuel João Nogueira Leal da Silva
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引用次数: 1

摘要

目的:本研究旨在比较树脂改性光固化硅酸钙基材料(TheraCal LC®;Bisco, Schaumburg, IL, USA)与White MTA (WMTA®;Angelus, Londrina, PR,巴西)。材料与方法:选择16个人上颌门牙和犬齿,从每根中间三分之一处取3个1 mm的圆盘。在每个牙盘的冠状面钻两个1.2 mm宽的孔,穿过牙本质。然后,用一种测试材料:WMTA®和TheraCal LC®填充人工孔。填充后的牙片在37°C的磷酸盐缓冲盐水(PBS)溶液(pH 7.2)中保存7天。之后,使用1.0 mm柱塞尖端进行推出评估。载荷以0.5 mm/min的十字速度施加,直到封口器位移。结果以MPa表示。采用Mann-Whitney U检验对材料的牙本质推出粘结强度进行排序。显著性水平设为a = 5%。结果:所有标本均显示可测量的结果,未发生过早失效。与WMTA®相比,TheraCal LC®与牙本质的推出结合强度值更高(P<0.0001)。结论:TheraCal LC®在推出结合强度方面优于WMTA®,因此它可能被视为一种有前途的创新修复材料
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Resistência de união à dentina de um material fotopolimerizável à base de silicato de cálcio e modificado por resina
Objective: this study aimed to compare the dentin bond strength of a resin-modified light-curable calcium-silicate-based material (TheraCal LC®; Bisco, Schaumburg, IL, USA) with White MTA (WMTA®; Angelus, Londrina, PR, Brazil). Materials and Methods: sixteen human maxillary incisors and canines were selected and three 1-mm-discs were obtained from the middle third of each root. On the coronal surface of each disc, two 1.2-mm-wide-holes were drilled through the dentin. Then, artificial holes were filled with one of the tested materials: WMTA® and TheraCal LC®. The filled dental slices were stored in a phosphate-buffered saline (PBS) solution (pH 7.2) for 7 days at 37°C. After that, push-out assessment was performed with a 1.0-mm-plunger-tip. Load was applied at a crosshead speed of 0.5 mm/min until sealer displacement. The results were expressed in MPa. Mann-Whitney U test was applied to rank materials regarding dentin push-out bond strength. Significance level was set at a = 5%. Results: All specimens showed measurable results and no premature failure occurred. TheraCal LC® demonstrated superior push-out bond strength values to dentin when compared to WMTA® (P<0.0001). Conclusions: there is advantage of TheraCal LC® over WMTA® as regards to the push-out bond strength and, therefore it may be taken as a promising and innovative reparative material
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