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表面形貌和润湿性对Y-TZP陶瓷剪切粘结强度的影响。

Effect of surface topography and wettability on shear bond strength of Y-TZP ceramic.

作者信息

Wongsue Suriyakul, Thanatvarakorn Ornnicha, Prasansuttiporn Taweesak, Nimmanpipug Piyarat, Sastraruji Thanapat, Hosaka Keiichi, Foxton Richard M, Nakajima Masatoshi

机构信息

Dental Section, Buddhasothorn Hospital, Na Muang, Muang, 24000, Chachoengsao, Thailand.

Faculty of Dentistry, Bangkokthonburi University, 16/10 Leab Klong Taweewatana Rd., Taweewatana, 10170, Bangkok, Thailand.

出版信息

Sci Rep. 2023 Oct 25;13(1):18249. doi: 10.1038/s41598-023-45510-8.

Abstract

Zirconia ceramics have been widely used as dental restorations due to their esthetic appearance and high flexural strength. The bonding of zirconia with resin cement should rely on both mechanical and chemical bonds. This study was performed to investigate the effect of zirconia surface topography and its wettability after surface pretreatments on the microshear bond strength (μSBS) of a resin cement. Zirconia slabs were prepared and randomly divided into 5 groups based on the surface treatment as follows: no treatment (control), air abrasion (AB), etching with hydrofluoric acid (F), the mixture of hydrofluoric acid and nitric acid (FN), or the mixture of hydrochloric acid and nitric acid (CN) for 10 min. The specimens were subjected to investigation of surface roughness characteristics [average roughness (Ra), peak-to-valley average distance (Rpv), skewness (Rsk), and kurtosis (Rku)] using atomic force microscopy (AFM) and measurements of surface contact angle (θ) and μSBS of a resin cement. In addition, the area % of the nanoscale surface irregularity (nSI%) was calculated from the AFM images. The effects of nSI%, Ra and θ on the μSBS were analyzed by multiple linear regression analysis (p < 0.05). Multiple regression analysis revealed that the nSI% was the most predominant factor for the μSBS (p < 0.001). A surface with larger nSI%, higher Ra and relatively lower θ was essential for establishing a reliable resin-zirconia bond.

摘要

由于其美观的外观和高弯曲强度,氧化锆陶瓷已被广泛用作牙科修复材料。氧化锆与树脂水门汀的结合应依赖于机械键和化学键。本研究旨在探讨表面预处理后氧化锆表面形貌及其润湿性对树脂水门汀微剪切粘结强度(μSBS)的影响。制备氧化锆板,并根据表面处理将其随机分为5组,如下所示:未处理(对照组)、空气喷砂(AB)、氢氟酸蚀刻(F)、氢氟酸和硝酸混合物(FN)或盐酸和硝酸混合物(CN)处理10分钟。使用原子力显微镜(AFM)对试样进行表面粗糙度特性[平均粗糙度(Ra)、峰谷平均距离(Rpv)、偏度(Rsk)和峰度(Rku)]的研究,并测量树脂水门汀的表面接触角(θ)和μSBS。此外,从AFM图像计算纳米级表面不规则度的面积百分比(nSI%)。通过多元线性回归分析(p<0.05)分析nSI%、Ra和θ对μSBS的影响。多元回归分析表明,nSI%是影响μSBS的最主要因素(p<0.001)。具有较大nSI%、较高Ra和相对较低θ的表面对于建立可靠的树脂-氧化锆粘结至关重要。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/046b/10600127/2a486911fcb5/41598_2023_45510_Fig1_HTML.jpg

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