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脱蛋白人牙本质中的纳米渗漏与微剪切粘结强度

Nanoleakage and microshear bond strength in deproteinized human dentin.

作者信息

Silva Eduardo M, Duarte Patrícia B P G, Poskus Laiza T, Barcellos Alexandre A L, Guimarães José G A

机构信息

Department of Restorative Dentistry, School of Dentistry, Federal Fluminense University, Niterói, Rio de Janeiro, Brazil.

出版信息

J Biomed Mater Res B Appl Biomater. 2007 May;81(2):336-42. doi: 10.1002/jbm.b.30670.

Abstract

This study evaluated the influence of dentin deproteinization with NaOCl on the microshear bond strength (microSBS) and the nanoleakage patterns of three dentin bonding systems (DBS). Occlusal dentin surfaces, obtained from extracted noncarious human molars, were divided into two experimental groups, according to dentin surface treatment: Group I-37% H(3)PO(4)/15s and Group II-37% H(3)PO(4)/15s + 10% NaOCl/1 min. The dentin surfaces were bonded with one of the following DBS: Scotchbond Multipurpose-SBMP, Prime & Bond NT-PB and Clearfil SE Bond-SE. After 1 week storage in water at 37 degrees C, the specimens were subjected to the microSBS test. The data were analyzed by two-way ANOVA and Student-Newman-Keuls' test (p = 0.05). The nanoleakage was evaluated using scanning electron microscopy (SEM) in backscattered electron imaging regime. No significant difference in microSBS between dentin treatments was found for SBMP. For PB, microSBS increased after NaOCl dentin treatment. SE showed a reduction in microSBS in deproteinized specimens. SEM analysis showed different nanoleakage patterns for each DBS. Irrespective of dentin treatments, all SBMP specimens showed nanoleakage. SE did not show nanoleakage with the two dentin treatments. PB showed nanoleakage within the hybrid layer only in acid-etched specimens. The influence of dentin deproteinization was dependent on the dentin bonding system formulation.

摘要

本研究评估了用次氯酸钠进行牙本质脱蛋白处理对三种牙本质粘结系统(DBS)的微剪切粘结强度(microSBS)和纳米渗漏模式的影响。从拔除的无龋人类磨牙获取的咬合面牙本质表面,根据牙本质表面处理方式分为两个实验组:第一组——37%磷酸(H₃PO₄)处理15秒;第二组——37%磷酸(H₃PO₄)处理15秒 + 10%次氯酸钠(NaOCl)处理1分钟。牙本质表面用以下DBS之一进行粘结:多功能Scotchbond(SBMP)、Prime & Bond NT(PB)和Clearfil SE Bond(SE)。在37℃水中储存1周后,对标本进行微剪切粘结强度测试。数据采用双向方差分析和Student - Newman - Keuls检验(p = 0.05)。使用扫描电子显微镜(SEM)在背散射电子成像模式下评估纳米渗漏情况。对于SBMP,牙本质处理之间的微剪切粘结强度未发现显著差异。对于PB,次氯酸钠处理牙本质后微剪切粘结强度增加。SE显示脱蛋白标本的微剪切粘结强度降低。SEM分析显示每种DBS有不同的纳米渗漏模式。无论牙本质处理如何,所有SBMP标本均显示纳米渗漏。SE在两种牙本质处理下均未显示纳米渗漏。PB仅在酸蚀标本的混合层内显示纳米渗漏。牙本质脱蛋白的影响取决于牙本质粘结系统配方。

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