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Influence of drying and HEMA treatment on dentin wettability

机译:干燥和HEMA处理对牙本质润湿性的影响

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Objectives: The aim of this study was to evaluate the effect of drying time and primer pre-application (35% HEMA in water) on water spreading/infiltration on dentin. Methods: Freshly extracted molars were embedded in resin and sectioned on their coronal side. Flat occlusal dentin surfaces were prepared using wet SiC paper from nos. 80-4000. A computerized contact angle device complementing a special software (Wingoutt~R) was used to measure the contact angle (θ) kinetics of a reference liquid (pure H_2O) in the ten groups each of ten dentin surfaces during 120 s: Gp1: etched (37% phosphoric acid for 15 s) and blot-dried; Gp2: 3 s dried; Gp3: 5 s air-dried; Gp4: 10 s air-dried; Gp5: 20 s air-dried; Gp6: 30 s air-dried; Gp7: 1 min dried with hair dryer; Gp8: 5 s air-dried and HEMA treated; Gp9: 30 s air-dried followed by HEMA treatment; Gp10: HEMA treated prior to 30 s air-drying. three drops were applied on each sample. 40 contact angles were recorded for each drop with a frequency of one measure every 3 s. A one-way ANOVA test was used for data analysis. A PLSD test was conducted to identify statistical differences between pairs of groups at a reliability level of 95%. Results: At each measurement time, air-drying, whatever its duration, significantly decreased the wetting ability of the pure water on the etched dentin in comparison with the blot-dried group. The contact angle increases with drying time. No significant differences in water contact angle were obtained between 3, 5 and 10 s in spite of a slight decrease in the spreading/infiltration ability of water the longer the drying time. HEMA increases the spreading/infiltration ability of water on 5 or 30 s air-dried etched dentin surfaces; 30 s air-drying did not alter the spreading/infiltration ability of the water on etched and HEMA treated dentin. Significance: Dentin hydrophobicity increases depending on air-drying time. HEMA-based primer allows to prevent collagen collapse, which may be created by air-drying and partly rewet the collapsed collagen network.
机译:目的:本研究的目的是评估干燥时间和底漆预涂(水中35%HEMA)对牙本质上水扩散/渗透的影响。方法:将新鲜提取的臼齿包埋在树脂中并在其冠状侧面切开。使用nos的湿SiC纸制备平坦的咬合牙本质表面。 80-4000。使用计算机辅助接触角装置和专用软件(Wingoutt-R)来测量120 s内十个牙本质表面中十组中每组十种参比液(纯H_2O)的接触角(θ)动力学:Gp1:蚀刻( 37%磷酸处理15 s)并吸干; Gp2:3 s干燥; GP3:风干5秒; GP4:风干10秒; GP5:风干20秒; GP6:风干30秒; GP7:用吹风机吹干1分钟; Gp8:​​5 s风干并经过HEMA处理; Gp9:风干30 s,然后进行HEMA处理; Gp10:在风干30 s之前经过HEMA处理。在每个样品上滴三滴。记录每个液滴的40个接触角,频率每3秒钟测量一次。单向方差分析测试用于数据分析。进行PLSD测试以识别成对的组之间的统计差异,可靠性水平为95%。结果:与印迹干燥组相比,在每个测量时间,风干无论其持续时间长短,都会显着降低纯水在蚀刻牙本质上的润湿能力。接触角随干燥时间而增加。尽管干燥时间越长,水的铺展/渗透能力略有下降,但在3、5和10 s之间,水的接触角却没有显着差异。 HEMA增加了水在5或30 s风干蚀刻的牙本质表面上的扩散/渗透能力;风干30 s不会改变水对蚀刻和HEMA处理过的牙本质的扩散/渗透能力。意义:牙本质的疏水性随风干时间而增加。基于HEMA的底漆可防止胶原蛋白塌陷,这可能是由于风干而产生的,并且会部分重新润湿塌陷的胶原蛋白网络。

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