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Water movement in the hybrid layer after different dentin treatments

机译:不同牙本质处理后杂合层中的水分运动

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The aim of this study was to examine the morphology of the hybrid layer (HL) of bonded water-stored specimens after different chemical pre-treatments of dentin. Materials and methods. Twenty-seven recently extracted human molars were selected. Fifty-four dentin disks in middle/deep dentin were obtained with a slow speed saw with a diamond-impregnated disk under water lubrication. Smear layers were created with 180 grit silicon carbide under running water for 1 min. Different pre-treatments of dentin were: Group (1) no treatment; Group (2) 35% H_3PO_4 etch for 15 s followed by 10% glutaraldehyde for 120 s; Group (3) 37% H_3PO_4 etch for 15 s followed by 5% NaOCl for 120 s. Three dentin bonding agents (DBAs), Prime and Bond NT (P and B), AdmiraBond (AB), and Clearfil SE Bond (SEB) were applied in association with a resin composite following the manufacturers' directions. Each specimen was then longitudinally sectioned and polished with wet SiC papers (up to #4000 grit). Impressions of the polished dentin were immediately taken with a silicone impression material. Bonded specimens were then stored for 3 or 12 h in deionized water. Further impressions of stored specimens were taken after air-drying of specimens for 10s. Positive replicas were obtained using a polyether impression material. All the replicas and the original specimens were inspected by SEM. Results. A line of droplets (0.5-4 μm in diameter) was observed along the region of the adhesive- HL junction in all replicas of specimens stored in water, except in group 3, when P and B and AB were used. When SEB was used in each group the droplet were found in all groups except the zone of droplets was thinner. No differences in droplets dimensions were seen between 3 or 12 h water storage, or between the different dentin treatments.Conclusions. The replica procedure used in this study was able to detect water trapped in the adhesive-HL region that was released during the setting of the impression material. The droplets observed in this region support the hypothesis that there can be bidirectional water movement within the adhesive-HL complex.
机译:这项研究的目的是检查牙本质的不同化学预处理后,粘合的储水标本的杂化层(HL)的形态。材料和方法。选择了27个最近提取的人类臼齿。在水润滑下,用带有金刚石浸渍盘的慢速锯获得中/深牙本质中的五十四个牙本质盘。在流水下1分钟用180粒度的碳化硅创建涂污层。牙本质的不同预处理方法是:组(1)不进行治疗; (2)组:35%H_3PO_4蚀刻15 s,然后10%戊二醛蚀刻120 s; (3)组用37%H_3PO_4蚀刻15 s,然后用5%NaOCl蚀刻120 s。遵循制造商的指示,将三种牙本质粘合剂(DBA),Prime and Bond NT(P和B),AdmiraBond(AB)和Clearfil SE Bond(SEB)与树脂复合材料一起使用。然后将每个样品纵向切片,并用湿SiC纸(最大#4000粒度)抛光。立即用硅树脂印模材料模压抛光的牙本质。然后将粘结的样品在去离子水中保存3或12 h。将样品风干10秒钟后,可得到进一步的印象。使用聚醚压印材料获得正副本。所有复制品和原始标本均通过SEM检查。结果。在使用P,B和AB的第3组中,除第3组外,在水中的所有标本中,沿着粘合剂-HL接缝区域观察到一排液滴(直径0.5-4μm)。当在每个组中使用SEB时,除了液滴的区域更薄之外,在所有组中都发现了液滴。在储水3或12 h或不同的牙本质处理之间,未观察到液滴尺寸的差异。本研究中使用的复制程序能够检测滞留在压印材料固化期间释放的粘合剂-HL区域中的水。在该区域中观察到的液滴支持以下假设:粘合剂-HL络合物中可能存在双向水运动。

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