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二甲基亚砜湿粘结技术可能会提高牙本质粘结质量。

Dimethyl Sulfoxide Wet-bonding Technique May Improve the Quality of Dentin Bonding.

作者信息

Guo Jingmei, Lei Wenlong, Yang Hongye, Zhang Yun, Zhao Shikai, Huang Cui

出版信息

J Adhes Dent. 2017 Jun 8:229-237. doi: 10.3290/j.jad.a38438.

Abstract

PURPOSE

To investigate the effect of the dimethyl-sulfoxide wet-bonding technique on composite-dentin bonds and to explore its potential mechanism.

MATERIALS AND METHODS

Thirty human third molars were segmented, ground, etched, and randomly divided into three groups according to the following pretreatments: 1. water; 2. ethanol; 3. 50% (v/v) dimethyl sulfoxide (DMSO). Then, Single Bond 2 was applied and composite buildups were constructed. After 24 h of water storage or 10,000 cycles of thermocycling, the microtensile bond strength (MTBS) and nanoleakage were measured. Contact angle measurement, Masson's trichrome staining, and in situ zymography were used to explore the possible action mechanism of DMSO on adhesive-dentin interfaces.

RESULTS

DMSO pretreatment prevented the decline of thermocycled MTBS (p < 0.05) without affecting the immediate MTBS (p > 0.05) compared to the water wet-bonded group. Nanoleakage expression in the thermocycled DMSO wet-bonded group was also less than that in the thermocycled water-wet group (p < 0.05). Moreover, DMSO decreased the contact angle of the dentin surfaces (p < 0.05), reduced the amount of collagen exposure (p < 0.05), and decreased the collagenolytic activity in the hybrid layer (p < 0.05).

CONCLUSION

The 50% DMSO pretreatment was effective in increasing the wettability of the etched dentin surface, promoting the penetration of the adhesive monomer, and enhancing the stability of the dentin collagen at the adhesive- dentin interface. All these changes may lead to higher quality dentin bonds, suggesting that DMSO wet bonding is a viable alternative to improve the durability of dentin bonding.

摘要

目的

研究二甲基亚砜湿粘结技术对复合树脂与牙本质粘结的影响,并探讨其潜在机制。

材料与方法

将30颗人第三磨牙进行分割、打磨、酸蚀,然后根据以下预处理方法随机分为三组:1. 水;2. 乙醇;3. 50%(体积/体积)二甲基亚砜(DMSO)。接着,应用Single Bond 2并构建复合树脂堆塑体。在水储存24小时或热循环10000次后,测量微拉伸粘结强度(MTBS)和纳米渗漏情况。采用接触角测量、Masson三色染色和原位酶谱分析来探讨DMSO对粘结剂-牙本质界面的可能作用机制。

结果

与水湿粘结组相比,DMSO预处理可防止热循环后MTBS下降(p < 0.05),且不影响即时MTBS(p > 0.05)。热循环后的DMSO湿粘结组纳米渗漏表达也低于热循环水湿组(p < 0.05)。此外,DMSO降低了牙本质表面的接触角(p < 0.05),减少了胶原蛋白暴露量(p < 0.05),并降低了混合层中的胶原酶活性(p < 0.05)。

结论

50% DMSO预处理可有效提高酸蚀牙本质表面的润湿性,促进粘结剂单体的渗透,并增强粘结剂-牙本质界面处牙本质胶原蛋白的稳定性。所有这些变化可能导致更高质量的牙本质粘结,表明DMSO湿粘结是提高牙本质粘结耐久性的一种可行替代方法。

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