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负压对全酸蚀牙本质粘结的改善。

Improvement of Total Etching Dentin Bonding with Subpressure.

机构信息

Beijing Institute of Dental Research, School of Stomatology, Capital Medical University, Beijing, 100050, China.

Department of Prosthodontics, School of Stomatology, Capital Medical University, Beijing, 100050, China.

出版信息

Sci Rep. 2017 Jul 28;7(1):6831. doi: 10.1038/s41598-017-07281-x.

Abstract

This study aimed to investigate the effects of subpressure on the bond properties of total-etching adhesive to dentin. Thirty-six caries-free premolars were sectioned parallel to the occlusal plane and randomly divided into four groups (n = 9): a control group (C, no treatment) and three subpressure groups, which were treated under 0.8, 0.6 or 0.4 bar after applying adhesives, named S, S and S, respectively. Afterward, resin was bonded to the dentin surface, and 27 beams (1.0 mm × 1.0 mm) of each group were sectioned. One was selected to observe the bonding interface from each group by SEM. Each group was divided into two subgroups (n = 13): 24 hours of water storage (I) and 10,000 thermocycling (A). The microtensile bond strength (μTBS), failure modes and nanoleakage expression were evaluated. SEM results showed that the subpressure groups had longer and denser resin tags. The μTBS of the subpressure groups was higher than that of the control group (p < 0.05). The subpressure groups were dominated by mixed failure, whereas main interfacial failure appeared in group C. The subpressure groups showed less silver deposition than the control group (p < 0.05). The subpressure technique may remarkably improve bonding strength and decrease nanoleakage on total-etching bonding.

摘要

本研究旨在探讨负压对全酸蚀黏结剂与牙本质黏结性能的影响。将 36 颗无龋前磨牙沿颊舌向平行于牙合面切割,随机分为四组(n=9):对照组(C,不处理)和三个负压组,分别在涂布黏结剂后用 0.8、0.6 或 0.4 巴的负压处理,分别命名为 S、S 和 S。然后,将树脂黏结到牙本质表面,每组切取 27 个(1.0mm×1.0mm)梁。每组中选择一个梁用 SEM 观察黏结界面。每组分为两个亚组(n=13):24 小时水储存(I)和 10,000 次热循环(A)。评估微拉伸黏结强度(μTBS)、失效模式和纳米渗漏表达。SEM 结果显示,负压组的树脂突更长、更密集。负压组的 μTBS 高于对照组(p<0.05)。负压组以混合性失效为主,而对照组以界面性失效为主。负压组的银沉积量少于对照组(p<0.05)。负压技术可能显著提高全酸蚀黏结的黏结强度,减少纳米渗漏。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d0cf/5533750/5aeee24e232a/41598_2017_7281_Fig1_HTML.jpg

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