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Long-term nanomechanical properties and gelatinolytic activity of titanium tetrafluoride-treated adhesive dentin interface

机译:四氟化钛处理的牙本质界面的长期纳米力学性能和明胶分解活性

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Objective. This study investigated the effects of dentin pretreatment with 2.5% titanium tetrafluoride ( TiF4) on nanomechanical properties, and the in situ gelatinolytic activity of the dentin-resin interface, for up to 6 months.Methods. Twenty-four human teeth were prepared by exposing occlusal flat dentin surfaces, and were randomly assigned to experimental groups, according to application or non-application of a TiF4 pretreatment, and to the adhesive systems (Clearfil SE Bond or Scotchbond Universal). Resin composite (Filtek Supreme Ultra) was built up incrementally on the teeth in all the groups. Then, the specimens were sectioned and randomly selected for evaluation at 24 h, 3 months and 6 months of storage time. The reduced modulus of elasticity (E-r) and the nanohardness of the underlying dentin, as well as the hybrid layer and the adhesive layer were measured using a nanoindenter. Gelatinolytic activity at the dentin-resin interfaces was assessed by in situ zymography using quenched fluorescein-conjugated gelatin at 24 h and 6 months. Statistical analyses were performed with ANOVA and Tukey's tests.Results. There were no differences in E-r and nanohardness values between adhesives systems and pretreatment (p = 0.1250). In situ zymography showed significantly higher gelatinolytic activity after 6 months for all the experimental groups (p = 0.0004), but no differences between the adhesive systems (p = 0.7708) and the surface pretreatment (p = 0.4877).Significance: Dentin pretreatment with 2.5% TiF4 followed by self-etching adhesive systems did not influence nanomechanical properties or gelatinolytic activity of the adhesive-dentin interface layers, over time. (C) 2019 The Academy of Dental Materials. Published by Elsevier Inc. All rights reserved.
机译:目的。这项研究调查了2.5%的四氟化钛(TiF4)预处理的牙本质对纳米力学性能的影响,以及牙本质-树脂界面的原位明胶分解活性长达6个月的方法。通过暴露牙合平的牙本质表面来制备二十四颗人类牙齿,并根据是否应用TiF4预处理将其随机分为实验组和黏合剂系统(Clearfil SE Bond或Scotchbond Universal)。在所有组的牙齿上都逐渐增加了树脂复合材料(Filtek Supreme Ultra)。然后,将标本切成薄片并在24 h,3个月和6个月的存储时间中随机选择进行评估。使用纳米压头测量降低的弹性模量(E-r)和下面的牙本质以及混合层和粘合剂层的纳米硬度。通过在24小时和6个月使用荧光素偶联的明胶淬灭的原位酶谱法评估在牙本质-树脂界面的明胶分解活性。使用方差分析和Tukey检验进行统计分析。胶粘剂系统和预处理之间的E-r和纳米硬度值没有差异(p = 0.1250)。对于所有实验组,原位酶谱分析显示6个月后明胶分解活性显着提高(p = 0.0004),但粘合系统(p = 0.7708)和表面预处理之间无差异(p = 0.4877)。意义:牙本质预处理2.5随时间推移,%TiF4继之以自蚀刻胶粘剂体系不会影响胶粘剂-牙本质界面层的纳米机械性能或明胶分解活性。 (C)2019牙科材料学院。由Elsevier Inc.出版。保留所有权利。

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