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Efficacy of multi-mode adhesive systems on dentin wettability and microtensile bond strength of resin composite

机译:多模胶粘剂系统对树脂复合材料牙本质润湿性和微调粘合强度的功效

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摘要

Purpose: To evaluate the wetting ability and the microtensile bond strength of adhesive systems in various depths of dentin. Materials and Method: 48 extracted human molars cut in half in buccolingual direction. Buccal and lingual surfaces were used to obtain deep (n = 48) and superficial (n = 48) dentin. Groups were divided into 4 subgroups: Self-etch (CSE), etch&rinse (SB), multi-mode self-etch (SAU) and multimode etch&rinse (EAU) adhesive systems. 3 consecutive contact-angle measurements were obtained: T0- 3 mu l drop of distilled water on dentin; T1-Droplet of the adhesive; T2- Distilled water after polymerization of the adhesive. After composite build-ups, microtensile measurements were performed. Contact angle data were analysed with analysis of variance for repeated measures. Bond strength data were analyzed by repeated measures analysis of variance, comparisons were made according to the logarithmic values (p 0.05). Results: The difference between groups was not significant regardless of dentin depth for all measurements (p 0.05). All groups except CSE enhanced the wetting ability of the adhesive but reduced the wetting ability of distilled water after application of the adhesive (p 0.05). Regarding adhesive systems, the groups showed no significant difference between bond strengths to various depths of dentin except SAU (p 0.05); in SAU, bond strength to deep dentine were significantly higher than superficial dentin (p 0.05). Regarding adhesives' bond strength, CSE showed significantly greater values than the other groups (p 0.05). Conclusion: The cavity depth does not affect the bonding ability for all adhesive systems; self-etch adhesive systems might be a better choice since different adhesives may influence the wetting ability and microtensile bond strength of the dentin substrates.
机译:目的:评估牙本质各种深度粘合剂体系的润湿能力和微调粘合强度。材料和方法:48提取的人臼齿在BucColing方向上切成两半。颊和舌表面用于获得深(n = 48)和表面(n = 48)牙本质。分组分为4个子组:自蚀刻(CSE),蚀刻和冲洗(SB),多模自蚀刻(SAU)和多模蚀刻和冲洗(EAU)粘合剂系统。 3连续接触角测量结果:牙本质上的蒸馏水T0-3亩;粘合剂的T1-液滴;粘合剂聚合后T2-蒸馏水。复合堆积后,进行微调测量。分析了接触角数据,分析了反复措施的差异。通过重复测量的方差分析分析键强数据,根据对数值进行比较(P <0.05)。结果:无论所有测量的牙本质深度如何,组之间的差异并不显着(P <0.05)。除CSE之外的所有组增强了粘合剂的润湿能力,而是降低施加粘合剂后蒸馏水的润湿能力(P <0.05)。关于粘合剂系统,除SAU(P&GT 0.05)以外,粘结强度与牙本质的各种深度之间没有显着差异。在SAU中,深牙本质的粘合强度明显高于浅表牙本质(P <0.05)。关于粘合剂的粘合强度,CSE显着更大的值比其他基团(P <0.05)。结论:腔深不影响所有粘合剂系统的粘合能力;自蚀刻粘合剂系统可能是更好的选择,因为不同的粘合剂可能影响牙本质衬底的润湿能力和微调制粘合强度。

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