Postgraduate student, Department of Dental Materials and Prosthodontics, Araçatuba School of Dentistry, São Paulo State University (UNESP), Araçatuba, Brazil.
Dentistry graduate, Department of Restorative Dentistry, Araçatuba School of Dentistry, São Paulo State University (UNESP), Araçatuba, Brazil.
J Prosthet Dent. 2018 Aug;120(2):317.e1-317.e7. doi: 10.1016/j.prosdent.2018.05.009.
The use of photosensitizers in photodynamic therapy promotes intraradicular microbial reduction during nonsurgical endodontic therapy. However, studies are lacking on the consequences of the application of these agents on the mechanical properties of intraradicular dentin and on the bond strength of glass-fiber posts.
The purpose of this in vitro study was to evaluate the influence of photodynamic therapy on the bond strength of glass-fiber posts using a push-out test and, additionally, to measure the Martens hardness (MH) and elastic indentation modulus (Eit) of intraradicular dentin when different photosensitizers are used.
Eighty bovine teeth were used to simulate experimental endodontic treatments. Biomechanical instrumentation was performed for all root canals, and the teeth were distributed into 5 groups: control-deionized water; methylene blue 50 mg/L + red laser; methylene blue 100 mg/L + red laser; curcumin 500 mg/L + blue LED; and curcumin 1000 mg/L + blue LED. The MH and Eit of intraradicular dentin were measured using an ultramicrohardness tester under a load of 3 mN (n=8). The push-out bond strength of glass-fiber posts to dentin was measured using a universal testing machine (n=8). Mechanical properties and bond strength data were subjected to the Kruskal-Wallis test, ANOVA, and Fisher least significant difference test (α=.05). Images of representative specimens were obtained using a scanning electron microscope.
The MH, Eit, and bond strength of intraradicular dentin were influenced by the photosensitizer used. In general, curcumin promoted lower mechanical properties values but higher bond strength values.
Photosensitizers influenced the mechanical properties of intraradicular dentin and the bond strength of glass-fiber posts, and methylene blue at 50 mg/L had no marked effect on the mechanical properties of the dentin or the bond strength values.
光动力疗法中使用光敏剂可在非手术性根管治疗期间促进根管内微生物减少。然而,关于这些药物应用于根管内牙本质的机械性能以及玻璃纤维桩的粘结强度的后果的研究尚缺乏。
本体外研究的目的是使用推出试验评估光动力疗法对玻璃纤维桩粘结强度的影响,此外,当使用不同的光敏剂时,测量根管内牙本质的马氏体硬度(MH)和弹性压痕模量(Eit)。
使用 80 颗牛牙模拟实验性根管治疗。所有根管均进行生物力学仪器处理,牙齿分为 5 组:对照组-去离子水;亚甲蓝 50mg/L+红光;亚甲蓝 100mg/L+红光;姜黄素 500mg/L+蓝光;姜黄素 1000mg/L+蓝光。使用 3mN 负载的超微硬度计测量根管内牙本质的 MH 和 Eit(n=8)。使用万能试验机测量玻璃纤维桩与牙本质的推出粘结强度(n=8)。使用 Kruskal-Wallis 检验、方差分析和 Fisher 最小显著差异检验(α=.05)对机械性能和粘结强度数据进行分析。使用扫描电子显微镜获得代表性样本的图像。
所使用的光敏剂影响根管内牙本质的 MH、Eit 和粘结强度。一般来说,姜黄素会降低机械性能值,但会提高粘结强度值。
光敏剂会影响根管内牙本质的机械性能和玻璃纤维桩的粘结强度,50mg/L 的亚甲蓝对牙本质的机械性能或粘结强度值没有明显影响。