Effect of Simulated Gastric Acid on the Interface Between Zirconia and Resin Cement.

IF 2.1 4区 医学 Q2 DENTISTRY, ORAL SURGERY & MEDICINE International Journal of Prosthodontics Pub Date : 2024-04-22 DOI:10.11607/ijp.8162
Natália Almeida Bastos-Bitencourt, Sandro Basso Bitencourt, Najm Alfrisany, Beshr Hajhamid, Grace Mendonca De Souza
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Abstract

Purpose: To evaluate the effect of simulated gastric acid solution (SGAS) and resin cement composition on the shear bond strength (SBS) of zirconia-based materials with different levels of translucency to composite resin.

Materials and methods: A total of 40 medium-opacity (MO; 3Y-TZP) and 40 medium-translucency (MT; 4Y-PSZ) zirconia slabs were distributed into four groups according to the composition of the resin luting system (MDP free or with MDP [primer + Panavia V5]) and storage method (distilled water or SGAS [5% hydrochloric acid]). Composite resin cylinders were cemented on the zirconia surface and stored for 91 hours. SBS, failure mode, and surface characterization analyses via scanning electron microscopy (SEM) and energy-dispersive spectroscopy (EDS) were performed. SBS data were analyzed using three-way ANOVA and Tukey tests, and failure mode was assessed using one-way ANOVA (P < .05).

Results: Storage media (P = .180), resin cement (P = .110), zirconia (P = .404), and their interactions did not affect SBS values. Bond strength ranged from 21.41 to 26.11 MPa. SEM images showed that SGAS modified the surface topography of zirconia and resin cement. The presence of chlorine and silicon (wt%) were higher after SGAS storage than after water storage in both cements used, while barium was higher only for the MDP cement. There was a prevalence of mixed failures for most of the groups.

Conclusions: The SBS between both types of zirconia and resin cement was not affected by SGAS, although changes in zirconia topography were observed after SGAS exposure. The presence of MDP in the cement layer had no effect on the SBS challenged by SGAS.

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模拟胃酸对氧化锆与树脂水泥界面的影响
目的:评价模拟胃酸溶液(SGAS)和树脂水泥组合物对不同透光度氧化锆基材料与复合树脂的剪切结合强度(SBS)的影响。材料和方法:将40块中等不透明度(MO;3Y-TZP)和40块中等半透明性(MT;4Y-PSZ)氧化锆板根据树脂粘合系统(不含MDP或含有MDP[底漆+Panavia V5])的组成和储存方法(蒸馏水或SGAS[5]盐酸)分为四组。将复合树脂圆柱体粘合在氧化锆表面上并储存91小时。通过扫描电子显微镜(SEM)和能谱仪(EDS)进行了SBS、失效模式和表面表征分析。使用三元方差分析和Tukey检验分析SBS数据,并使用单因素方差分析评估失效模式(P<.05)。结果:储存介质(P=.180)、树脂水泥(P=.110)、氧化锆(P=.404)及其相互作用不影响SBS值。粘结强度范围为21.41至26.11MPa。SEM图像显示,SGAS对氧化锆和树脂水泥的表面形貌进行了改性。在使用的两种水泥中,SGAS储存后氯和硅(wt%)的存在高于水储存后,而钡仅在MDP水泥中更高。大多数组都普遍存在混合失败。结论:氧化锆和树脂水泥之间的SBS不受SGAS的影响,尽管在SGAS暴露后观察到氧化锆形貌的变化。水泥层中MDP的存在对SGAS挑战的SBS没有影响。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
International Journal of Prosthodontics
International Journal of Prosthodontics 医学-牙科与口腔外科
CiteScore
3.20
自引率
4.30%
发文量
82
审稿时长
6-12 weeks
期刊介绍: Official Journal of the European Association for Osseointegration (EAO), the International College of Prosthodontists (ICP), the German Society of Prosthodontics and Dental Materials Science (DGPro), and the Italian Academy of Prosthetic Dentistry (AIOP) Prosthodontics demands a clinical research emphasis on patient- and dentist-mediated concerns in the management of oral rehabilitation needs. It is about making and implementing the best clinical decisions to enhance patients'' quality of life via applied biologic architecture - a role that far exceeds that of traditional prosthetic dentistry, with its emphasis on materials and techniques. The International Journal of Prosthodontics is dedicated to exploring and developing this conceptual shift in the role of today''s prosthodontist, clinician, and educator alike. The editorial board is composed of a distinguished team of leading international scholars.
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