Shoorgashti R, Ehsani S S, Ducret M, Rokhshad R
Researcher, Faculty of Dentistry, Tehran Medical Sciences, Islamic Azad University, Tehran, Iran.
Faculté d'Odontologie, Université Claude Bernard Lyon 1, Lyon, France.
Eur J Prosthodont Restor Dent. 2024 Nov 29;32(4):423-433. doi: 10.1922/EJPRD_2777Shoorgashi11.
Using computer-aided design and manufacturing (CAD-CAM) technology in restorative dentistry increased the application of lithium disilicate (LD) materials. The bond strength to core and repairing materials is crucial in the restoration's longevity. This systematic review evaluates the shear bond strength (SBS) of CAD-CAM-LD restorative materials to other materials using different surface treatments.
An electronic literature search was performed through PubMed/Medline, Embase, Web of Science, Scopus, and Google Scholar. Studies were selected based on specific criteria. The risk of bias was assessed using the Joanna Briggs Institute Critical Appraisal Checklist for Quasi-Experimental Studies.
Eleven studies were included, primarily investigating composite resin as the repair material. SBS values ranged from 0.82 to 32.96MPa, with the highest values observed for IPS e.max-CAD subjected to silicon carbide polishing, hydrofluoric acid (HF) etching, and silane application. For core materials, the highest SBS was reported for HFtreated IPS e.max-CAD bonded to tribochemically coated titanium and air-abraded zirconia, with SBS values ranging from 5.88 to 34MPa.
This review indicates that HF etching combined with silane application is the most effective method for improving bond strength in CAD/CAM-LD restorations. Applying surface treatments to both the core material and CAD/CAM-LD can further enhance bond strength.
在口腔修复学中使用计算机辅助设计与制造(CAD-CAM)技术增加了二硅酸锂(LD)材料的应用。与核心材料和修复材料的粘结强度对修复体的使用寿命至关重要。本系统评价评估了使用不同表面处理的CAD-CAM-LD修复材料与其他材料之间的剪切粘结强度(SBS)。
通过PubMed/Medline、Embase、Web of Science、Scopus和谷歌学术进行电子文献检索。根据特定标准选择研究。使用乔安娜·布里格斯研究所半实验性研究的批判性评价清单评估偏倚风险。
纳入11项研究,主要研究复合树脂作为修复材料。SBS值范围为0.82至32.96MPa,对于经过碳化硅抛光、氢氟酸(HF)蚀刻和硅烷处理的IPS e.max-CAD观察到最高值。对于核心材料,据报道,HF处理的IPS e.max-CAD粘结到经摩擦化学涂层的钛和空气研磨的氧化锆上时SBS最高,SBS值范围为5.88至34MPa。
本评价表明,HF蚀刻结合硅烷处理是提高CAD/CAM-LD修复体粘结强度的最有效方法。对核心材料和CAD/CAM-LD均进行表面处理可进一步提高粘结强度。