首页> 外文期刊>The journal of adhesive dentistry >How can nanoleakage occur in self-etching adhesive systems that demineralize and infiltrate simultaneously?
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How can nanoleakage occur in self-etching adhesive systems that demineralize and infiltrate simultaneously?

机译:在同时脱矿物质和渗透的自蚀刻粘合剂体系中,纳米泄漏怎么发生?

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PURPOSE: Single-step adhesives which etch and prime simultaneously and are not rinsed should not exhibit areas of incomplete infiltration within hybrid layers produced in sound dentin. This study examined the extent of silver uptake using ammoniacal silver nitrate in three two-step, self-etching primers (Imperva Fluoro Bond, Shofu; UniFil Bond, GC, ABF system, Kuraray) and one single-step, self-etching adhesive (AQ Bond, Sun Medical) bonded to dentin and four poly(HEMA) resins used as controls. MATERIALS AND METHODS: Flat dentin surfaces were bonded with these adhesives and sectioned into 0.8-mm-thick slabs that were then coated with nail varnish except for the bonded interfaces and immersed in AgNO3 for 24 h. Four types of poly(HEMA) resins were made: 100% HEMA; 90% HEMA-10% water; 75% HEMA-10% water, all polymerized with TBBO at 50 degrees C for 6 h; 100% HEMA polymerized at 25 degrees C for 30 min. After developing, undemineralized, unstained, epoxy resin-embedded sections were prepared for TEM. RESULTS: Nanoleakage patterns were observed in all bonded specimens. Fine segregated silver particles and reticular silver-staining patterns were found within the thin hybrid layers created by the three self-etching primers. For the single-step, self-etching adhesive, heavy silver deposits were identified within the hybridized complex formed by this adhesive within the smear layer, the underlying intact dentin, and in the adhesive layer. Increasing amounts of silver uptake were observed in poly(HEMA) specimens containing more water or that were polymerized at 25 degrees C for a short time instead of 50 degrees C for 6 h. CONCLUSIONS: Silver uptake in hybrid layers formed by self-etching adhesives in sound dentin is not necessarily caused by disparities between the depths of demineralization and resin infiltration. They represent areas of increased permeability within a polymerized resin matrix in which water is incompletely removed resulting in regions of incomplete polymerization and/or hydrogel formation.
机译:目的:同时蚀刻和涂底漆且未漂洗的单步胶粘剂,在健全的牙本质中产生的混合层中不应出现不完全渗透的区域。这项研究检查了氨水硝酸银在三种两步自蚀刻底漆(Imperva Fluoro Bond,Shofu; UniFil Bond,GC,ABF system,Kuraray)和一种单步自蚀刻粘合剂中的吸收银的程度( AQ Bond,Sun Medical)与牙本质粘合,并使用四种聚(HEMA)树脂作为对照。材料与方法:将平坦的牙本质表面用这些粘合剂粘合,然后切成0.8毫米厚的平板,然后将除粘合界面之外的指甲油涂在指甲油中,然后浸入AgNO3中24小时。制备了四种类型的聚(HEMA)树脂:100%HEMA; 90%HEMA-10%水; 75%HEMA-10%水,全部与TBBO在50摄氏度下聚合6小时; 100%HEMA在25摄氏度下聚合30分钟。显影后,准备未脱矿化,未染色,环氧树脂包埋的切片用于TEM。结果:在所有粘结的样品中均观察到了纳米泄漏模式。在由三种自蚀底漆形成的杂化薄层中发现了细的隔离银颗粒和网状银染图案。对于单步自蚀刻粘合剂,在涂抹层,下面的完整牙本质和粘合剂层中,由该粘合剂形成的杂交复合物中会发现大量银沉积物。在含有更多水或在25摄氏度下短时间而不是在50摄氏度下聚合6小时的聚(HEMA)样品中,发现银的吸收量增加。结论:在声牙本质中通过自蚀刻粘合剂形成的杂化层中的银吸收不一定是由于脱矿质深度与树脂渗透之间的差异引起的。它们代表了在聚合树脂基质中渗透性增加的区域,其中未完全除去水,从而导致聚合和/或水凝胶形成不完全的区域。

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