Shear bond strength of resin bonded zirconia and lithium disilicate - effect of surface treatment of ceramics and dentin.

Biomaterial investigations in dentistry Pub Date : 2022-02-16 eCollection Date: 2022-01-01 DOI:10.1080/26415275.2022.2038177
Mina Aker Sagen, Linda Vos, Jon E Dahl, Hans J Rønold
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引用次数: 2

Abstract

Objectives:The purpose of the study was to investigate the effect of ceramic surface pretreatment, effect of resin cement and dentin surface roughness on shear bond strength. Methodology: Zirconia rods (n = 140) were randomly assigned to air born particle abrasion with aluminum oxide (Al2O3) or hot etching with potassium hydrogen difluoride (KHF2). Lithium disilicate rods (LDS; n = 50) etched with hydrofluoric acid served as reference material. In Part 1 of the study, ceramic rods were cemented to bovine dentin using 5 dual-polymerizing resin cements (Variolink Esthetic, Multilink Automix (Ivoclar Vivadent), Duo-Link (BISCO Dental), Panavia F2.0 (Kuraray Dental), RelyX Unicem (3 M)). Shear bond strength was tested and fracture morphology determined. In Part 2 of the study, test groups with the highest frequency of adhesive fractures between cement and dentin were selected for further bond strength testing with different surface roughness of dentin; ground with P1200 or P80 silicon carbide paper. Dentin samples were fractured vertically to the cemented surface and the adherence between cement and dentin was studied. Results: The results of Part 1 showed that hot etching of zirconia significantly improved bond strength to Duo-Link cement. In Part 2, RelyX Unicem showed significantly higher bond strength to P1200 compared to P80 ground dentin. For Variolink Esthetic, bond strengths to P1200 and P80 ground dentin were similar. Adhesive fracture between cement and dentin dominated. Conclusions: A smooth dentin surface (P1200) improved bond strength to RelyX Unicem. Surface roughness was not important for Variolink Esthetic.

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氧化锆与二硅酸锂树脂结合的剪切强度——陶瓷与牙本质表面处理的影响。
目的:研究陶瓷表面预处理、树脂水泥和牙本质表面粗糙度对牙本质抗剪强度的影响。方法:将氧化锆棒(n = 140)随机分配到氧化铝(Al2O3)空气颗粒磨损组或二氟化氢钾(KHF2)热蚀刻组。二硅酸锂棒;N = 50),以氢氟酸蚀刻为标准物质。在研究的第一部分中,使用5种双聚合树脂胶合剂(Variolink美学,Multilink Automix (Ivoclar Vivadent), Duo-Link (BISCO Dental), Panavia F2.0 (Kuraray Dental), RelyX Unicem (3m))将陶瓷棒粘合到牛牙本质上。测试了剪切粘结强度并确定了断口形貌。在本研究的第2部分中,选取水泥与牙本质黏结断裂频率最高的实验组,对不同牙本质表面粗糙度进行进一步的黏结强度测试;用P1200或P80碳化硅纸研磨。牙本质样品垂直断裂至胶结表面,研究胶结物与牙本质的粘附性。结果:第一部分的结果表明,氧化锆的热蚀刻显著提高了与Duo-Link水泥的结合强度。在第2部分中,RelyX Unicem与P80研磨牙本质的结合强度明显高于P1200。对于Variolink aesthetic,与P1200和P80磨牙本质的结合强度相似。骨水泥与牙本质间粘接性骨折居多。结论:光滑的牙本质表面(P1200)提高了与RelyX Unicem的结合强度。表面粗糙度对Variolink美学并不重要。
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Root-filling materials for endodontic surgery: biological and clinical aspects. Silane and acid etch cross contamination of dentin and composite reduced µ-tensile bond strength. Recipient of Biomaterial Investigations in Dentistry's Young Author Award 2023. Reliability and agreement of root length measurements during orthodontic treatment in images from different CBCT machines using multiplanar reconstruction. The sealing ability of different endodontic biomaterials as an intra-orifice barrier: evaluation with high-performance liquid chromatography.
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