Effect of Surface Cleaning and Heat Treatment on Shear Bond Strength of Cement-Contaminated Zirconia.

IF 2.1 Q1 Dentistry
Laksika Suwannachot, Niyom Thamrongananskul, Suparaksa Yamockul, Atikom Surintanasarn
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Abstract

This study aimed to evaluate the shear bond strength (SBS) of zirconia to dual-cured resin cement following various cleaning protocols and surface treatments after cement contamination.Seventy-seven zirconia specimens (5 × 5 × 2.5 mm3) were fabricated, polished, and randomly divided into seven groups (n = 11). Ten specimens per group were tested for SBS, and one was reserved for scanning electron microscopy. Group C- was cemented without surface treatment, while group C+ received air abrasion prior to cementation. Groups F - , F + , FT + , S - , and S+ were initially air-abraded and then contaminated with resin cement. F-series groups were cleaned using a furnace, and S-series with a piezoelectric scaler. Among these, F + , FT + , and S+ received additional air abrasion prior to re-cementation, whereas F- and S- did not. Groups F+ and S+ were re-cemented immediately, whereas FT+ was re-cemented 7 days after surface re-treatment. All specimens were artificially aged before SBS testing.One-way ANOVA followed by Tukey's HSD post-hoc test was used for statistical analysis (α = 0.05).Statistically significant differences in SBS were found among the groups (p < 0.05). Group F+ demonstrated the highest bond strength (6.60 ± 1.10 MPa), followed by groups C+ (6.59 ± 0.94 MPa) and S+ (5.42 ± 0.87 MPa), with no significant differences among these three. The lowest SBS was observed in group C- (2.66 ± 0.51 MPa). Intermediate values were recorded in groups F- (4.17 ± 0.95 MPa), FT+ (4.41 ± 0.95 MPa), and S- (4.60 ± 1.17 MPa), which did not differ significantly from each other.Cleaning cement-contaminated zirconia using a furnace or piezoelectric scaler, followed by air abrasion and immediate re-cementation, significantly improves SBS to levels comparable with clean, air-abraded zirconia. Air abrasion enhances bonding efficacy, while delayed re-cementation may diminish bond strength even after surface re-treatment.

表面清洗和热处理对水泥污染氧化锆剪切粘结强度的影响。
本研究旨在评价氧化锆与双固化树脂水泥在水泥污染后不同清洗方案和表面处理下的剪切结合强度(SBS)。77个氧化锆样品(5 × 5 × 2.5 mm3)制作、抛光,随机分为7组(n = 11)。每组10例进行SBS检测,留1例用于扫描电镜检查。C-组骨水泥不做表面处理,C+组在骨水泥前进行空气磨耗。F -组、F +组、FT +组、S -组和S+组先被空气磨损,然后用树脂水泥污染。f系列用电炉清洗,s系列用压电清洗机清洗。其中,F +、FT +和S+在再固井之前接受了额外的空气磨损,而F-和S-则没有。F+组和S+组立即进行骨粘接,FT+组在表面再处理7天后进行骨粘接。所有标本在SBS试验前均经过人工老化处理。采用单因素方差分析加Tukey’s HSD事后检验进行统计学分析(α = 0.05)。两组间SBS差异有统计学意义(p
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来源期刊
European Journal of Dentistry
European Journal of Dentistry Dentistry-Dentistry (all)
CiteScore
5.10
自引率
0.00%
发文量
161
期刊介绍: The European Journal of Dentistry is the official journal of the Dental Investigations Society, based in Turkey. It is a double-blinded peer-reviewed, Open Access, multi-disciplinary international journal addressing various aspects of dentistry. The journal''s board consists of eminent investigators in dentistry from across the globe and presents an ideal international composition. The journal encourages its authors to submit original investigations, reviews, and reports addressing various divisions of dentistry including oral pathology, prosthodontics, endodontics, orthodontics etc. It is available both online and in print.
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