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首页> 外文期刊>Photodiagnosis and Photodynamic Therapy >Influence of curcumin photosensitizer in photodynamic therapy on the mechanical properties and push-out bond strength of glass-fiber posts to intraradicular dentin
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Influence of curcumin photosensitizer in photodynamic therapy on the mechanical properties and push-out bond strength of glass-fiber posts to intraradicular dentin

机译:姜黄素光敏剂在光动力治疗中对玻璃纤维桩与根管内牙本质的力学性能和推挤结合强度的影响

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摘要

Background: The effects of using curcumin as photosensitizer on the mechanical properties of intraradicular dentin and on the bond strength of glass-fiber posts are unknown. Thus, this in vitro study evaluated the influence of using curcumin as photosensitizer during photodynamic therapy on the Martens hardness, elastic modulus, and bond strength of glass-fiber posts luted to intraradicular dentin, in different tooth root thirds.Methods: Eighty bovine teeth were divided into 5 groups according to the concentration of curcumin applied, with or without blue LED light activation: Control-deionized water; Curcumin 500 mg/L; Curcumin 500 mg/L + blue LED; Curcumin 1000 mg/L; and Curcumin 1000 mg/L + blue LED. Mechanical properties were measured in different thirds of the radicular dentin using an ultramicrohardness tester (n = 8). A universal testing machine was used to evaluate the push-out bond strength (n = 8). Mechanical properties were compared across groups with the Kruskal-Wallis test, and across regions with the Friedman test. Bond strength data were subjected to ANOVA, followed by Tukey's test (alpha = 0.05). Scanning electron microscopy was used to analyze the failure mode of the specimens.Results: The use of curcumin photosensitizer, with or without blue LED light, improved mechanical properties compared to those of the control group (P 0.05), and promote no statistically significant difference in bond strength values (P 0.05). Overall, there was no difference among the intraradicular thirds for Martens hardness and push-out bond strength values (P 0.05).Conclusions: Curcumin photosensitizer, with or without photodynamic therapy, changed the mechanical properties of intraradicular dentin; however, the Martens hardness and bond strength values did not differ with the depth of the dentin.
机译:背景:使用姜黄素作为光敏剂对放射状牙本质牙本质的机械性能以及对玻璃纤维桩的粘结强度的影响尚不清楚。因此,这项体外研究评估了在光动力治疗过程中使用姜黄素作为光敏剂对不同牙根中三分之一的胶束硬度,弹性模量和粘合到放射状牙本质的玻璃纤维桩的粘结强度的影响。方法:80头牛牙齿根据所施加姜黄素的浓度分为5组,有无蓝色LED灯激活:对照去离子水;姜黄素500 mg / L;姜黄素500 mg / L +蓝色LED;姜黄素1000 mg / L;和姜黄素1000 mg / L +蓝色LED。使用超显微硬度测试仪(n = 8)在放射状牙本质的三分之二处测量机械性能。使用通用测试机评估推出强度(n = 8)。使用Kruskal-Wallis检验比较各组的机械性能,使用Friedman检验比较各区域的机械性能。对粘合强度数据进行方差分析,然后进行Tukey检验(α= 0.05)。结果:使用姜黄素光敏剂(有或没有蓝光LED)与对照组相比具有更好的机械性能(P <0.05),且无统计学意义。粘结强度值的差异(P> 0.05)。总体而言,三分之二的马氏硬度和推挤结合强度值之间无差异(P> 0.05)。结论:姜黄素光敏剂,在有或没有光动力疗法的情况下改变了牙本质牙本质的机械性能;但是,马氏硬度和粘结强度值与牙本质的深度没有区别。

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