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首页> 外文期刊>Journal of Materials Science >Biofilm formation on different materials for tooth restoration: analysis of surface characteristics
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Biofilm formation on different materials for tooth restoration: analysis of surface characteristics

机译:在不同的牙齿修复材料上形成生物膜:表面特性分析

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The purpose of this study was to evaluate the effect of roughness parameters and hydrophobicity of restorative material used to restore non-carious cervical lesions on the biofilm formation. Four restorative materials were investigated: conventional glass ionomer cement (KF, Ketac Fill Plus, 3M ESPE), resin-modified glass ionomer cement (VT, Vitremer, 3M ESPE), nanofilled resin-modified glass ionomer cement (KN, Ketac Nano, 3M ESPE), and nanofilled resin composite (FZ, Filtek Z350 XT, 3M ESPE). Forty disk specimens were prepared from each material, dived in four groups. Five samples were used for topography parameters analysis using a 3D profilometry. The amplitude parameters (Sa and Sq), spatial parameter (Sds), and hybrid parameter (Ssc) were extracted in area using cut-off of 0.25 mm. Hydrophobicity was determined by the contact angle measurement of deionized water on the surface. The biofilm collected from a 24-year-old subject was grown on modified brain-heart infusion agar under aerobic conditions at 37 °C for 24 h. Each test disk was immersed in 200 lL of biofilm suspension (n = 10) and incubated for 24 h at 37 °C. Biofilm was evaluated after 24 h formation on each disk after stained with 1 % fluorescein using confocal laser-scanning microscopy. Data were analyzed using one-way ANOVA and Tukey test (a = 0.05), Pearson correlation was used to compare topography parameters with biofilm formation. Significant differences were found in related amplitude parameters (Sa and Sq, FZ = KN[VT[KF). KN presented the highest hydrophobicity. FZ and KN presented the lowest thickness and biovolume of biofilm when compared with VT and KF. All topography parameters were significantly correlated with biofilm formation. FZ and KN, material with nanoparticles presented better performance-related topography parameters and biofilm formation. Clinical relevance: The incorporation of nanotechnology into restorative materials promotes better surface topography with lower biofilm formation.
机译:这项研究的目的是评估粗糙度参数和用于恢复非龋性宫颈病变的修复材料的疏水性对生物膜形成的影响。研究了四种修复材料:常规玻璃离聚物水泥(KF,Ketac Fill Plus,3M ESPE),树脂改性玻璃离聚物水泥(VT,Vitremer,3M ESPE),纳米填充树脂改性玻璃离聚物水泥(KN,Ketac Nano,3M) ESPE)和纳米填充树脂复合材料(FZ,Filtek Z350 XT,3M ESPE)。用每种材料准备了40个圆盘标本,分为4组。使用3D轮廓仪将五个样品用于形貌参数分析。使用0.25 mm的临界值在区域中提取振幅参数(Sa和Sq),空间参数(Sds)和混合参数(Ssc)。通过去离子水在表面上的接触角测量来确定疏水性。从一名24岁受试者收集的生物膜在需氧条件下于37°C的改良型脑-心浸液琼脂上生长24 h。将每个测试盘浸入200μL生物膜悬浮液(n = 10)中,并在37℃下孵育24小时。使用共聚焦激光扫描显微镜在每个磁盘上形成24小时后,用1%荧光素染色后评估生物膜。使用单向方差分析和Tukey检验(a = 0.05)分析数据,皮尔森相关性用于比较地形参数与生物膜形成。在相关的振幅参数(Sa和Sq,FZ = KN [VT [KF])中发现了显着差异。 KN具有最高的疏水性。与VT和KF相比,FZ和KN呈现出最低的生物膜厚度和生物体积。所有地形参数均与生物膜形成显着相关。 FZ和KN,具有纳米颗粒的材料具有更好的性能相关的形貌参数和生物膜形成。临床意义:将纳米技术结合到修复材料中可促进更好的表面形貌并减少生物膜形成。

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