Effect of diode laser irradiation on bond strength of resin cements to high-translucent zirconia.

Q2 Dentistry
Giselly Cristina Matei, Daiane Cristina Peruzzo, Kamila Rosamilia Kantovitz, Aguinaldo Silva Garcez Segundo, Leonardo Santos Barros, Fabiana Mantovani Gomes França
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引用次数: 0

Abstract

Background: Treatment of acid-resistance high-translucent zirconia prior to luting procedures is usually carried out with sandblasting. Considering that this process could lead to the formation of cracks on the zirconia surface, laser irradiation became an alternative to sandblasting. The effect of diode laser, however, was never investigated under this context. Therefore, this study aimed to evaluate the effect diode laser irradiation on the bond strength between zirconia and two resin cements after 48-hour and 12-month water aging.

Material and methods: Slabs of high-translucent zirconia were sandblasted with 50-µm Al2O3 particles (SB), irradiated with diode laser (DL), or SB+DL. All slabs were etched with 10% hydrofluoric acid and layered with a universal adhesive. Plastic tubes with 0.8-mm internal diameter positioned on treated zirconia surfaces were used as matrices to insert a dual- (DUAL) or a light-cure (LC) resin cement. All specimens were light-cured for 40 seconds at 1000 mW/cm2 and submitted to the µSBS test after 48-hour or 12-month water storage. Data were statistically analyzed with a three-way analysis of variance (p<0.05).

Results: The µSBS of DUAL was higher than LC only after 12 months for SB or SB+DL-treated zirconia (p<0.05); in addition, SB+DL resulted in higher µSBS than DL only for DUAL resin cement (p<0.05). The 12-month aging resulted in higher µSBS for DUAL resin cement luted on SB or SB+DL-treated zirconia, as well as for LC luted on DL-treated zirconia (p<0.05). Most of the DUAL specimens presented adhesive failures after 48 hours. After 12 months, the majority of DUAL specimens luted on DL or SB+DL-treated zirconia presented adhesive failures.

Conclusions: The use of dual-cure resin cement on sandblasted or sandblasted and diode laser-irradiated zirconia exhibited superior bond strength after aging. Key words:Microshear bond strength, Resin cement, Diode laser, Zirconia, Sandblasting.

二极管激光照射对树脂水门汀与高透光氧化锆粘接强度的影响。
背景:在进行搪瓷程序之前,通常采用喷砂法处理耐酸性高透明氧化锆。考虑到这一过程可能导致氧化锆表面裂纹的形成,激光照射成为喷砂的替代方法。然而,在这种情况下,二极管激光的效果却从未被研究过。因此,本研究旨在评估二极管激光照射对氧化锆和两种树脂水门汀在 48 小时和 12 个月水老化后的粘接强度的影响:用 50µm Al2O3 颗粒喷砂(SB)、二极管激光(DL)或 SB+DL 照射高透光性氧化锆板。所有石板均用 10%氢氟酸蚀刻,并用通用粘合剂分层。将内径为 0.8 毫米的塑料管放置在处理过的氧化锆表面上,作为插入双(DUAL)或光固化(LC)树脂水泥的基质。所有试样均在 1000 mW/cm2 下光固化 40 秒,并在 48 小时或 12 个月的水储存后进行 µSBS 测试。数据采用三方差分析(pResults)进行统计分析:经 SB 或 SB+DL 处理的氧化锆在 12 个月后,DUAL 的 µSBS 仅高于 LC(ppp 结论:在经过喷砂或喷砂和二极管激光照射的氧化锆上使用双固化树脂粘结剂在老化后显示出更优越的粘结强度。关键词:微剪切粘接强度 树脂水泥 二极管激光 氧化锆 喷砂
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来源期刊
CiteScore
2.70
自引率
0.00%
发文量
118
期刊介绍: Indexed in PUBMED, PubMed Central® (PMC) since 2012 and SCOPUSJournal of Clinical and Experimental Dentistry is an Open Access (free access on-line) - http://www.medicinaoral.com/odo/indice.htm. The aim of the Journal of Clinical and Experimental Dentistry is: - Periodontology - Community and Preventive Dentistry - Esthetic Dentistry - Biomaterials and Bioengineering in Dentistry - Operative Dentistry and Endodontics - Prosthetic Dentistry - Orthodontics - Oral Medicine and Pathology - Odontostomatology for the disabled or special patients - Oral Surgery
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