Mohammed Hussain Dafer Al Wadei, Muhammad Qasim, Ali Y Alsaeed, Faisal Hasan Alshehri, Eisha Abrar
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引用次数: 0
摘要
研究不同胶原交联剂(CCL)、葡萄籽提取物(GSE)、橙皮甙(Hes)和玫瑰红光敏剂(RBP)对与龋坏牙本质(CAD)粘结的复合材料的剪切粘结强度(SBS)和边缘渗漏(ML)的影响。研究对象包括 68 颗龋坏达牙本质中三分之一的人类臼齿。先将 CAD 做平,然后进行酸蚀。根据 CCL 药剂的使用情况,将牙齿随机分为四组。第 1 组:不使用 CCL 药剂,第 2-4 组样品使用 CCL 药剂。粘合剂和复合材料粘合后进行人工老化。使用染料渗透测试进行 ML 评估。使用万能试验机评估 SBS,然后进行失效模式分析。使用扫描电镜对树脂 CAD 接口进行分析,以确定树脂标签。组间比较采用单因素方差分析和事后 Tukey 检验。GSE 组和 Hes 组的树脂标签长度和数量均大于对照组和 RBP 组。此外,经 GSE 处理的样品 SBS 得分最高,ML 最低。而对照组的粘接完整性最低,ML 最高。GSE 和 Hes 对 SBS 和 ML 都有积极影响。
Effect of Dentin Bio-Modifiers Grape Seed Extract, Hesperidin on Shear Bond Strength and Microleakage: A Scanning Electron Microscopic Assessment.
Investigation of different collagen cross-linking (CCL) agents, grape seed extract (GSE), Hesperidin (Hes), and rose bengal photosensitizer (RBP) on shear bond strength (SBS) and marginal leakage (ML) of composite bonded to carious affected dentin (CAD). Sixty-eight human molars in which carious lesions up to the middle third of the dentin were included. CAD was made flat followed by acid etching. Teeth were allocated randomly into four groups based on the application of CCL agents. Group 1: no CCL agent, Groups 2-4 samples treated with CCL agents. Bonding of adhesive and composite was performed followed by artificial aging. ML assessment was performed using a dye penetration test. SBS was evaluated using a universal testing machine followed by failure mode analysis. Analysis of the resin CAD interface with SEM was performed to identify the resin tag. For group comparisons, one-way ANOVA and post hoc Tukey test were used. The length and number of resin tags in GSE and Hes groups were greater than in the control and RBP. Furthermore, samples treated with GSE presented the highest scores of SBS and lowest ML. The control group presented the lowest bond integrity and highest ML. GSE and Hes positively influenced both SBS and ML.
期刊介绍:
Microscopy Research and Technique (MRT) publishes articles on all aspects of advanced microscopy original architecture and methodologies with applications in the biological, clinical, chemical, and materials sciences. Original basic and applied research as well as technical papers dealing with the various subsets of microscopy are encouraged. MRT is the right form for those developing new microscopy methods or using the microscope to answer key questions in basic and applied research.