Thanatvarakorn Ornnicha, Prasansuttiporn Taweesak, Thittaweerat Suppason, Foxton Richard M, Ichinose Shizuko, Tagami Junji, Hosaka Keiichi, Nakajima Masatoshi
Cariology and Operative Dentistry, Department of Oral Health Sciences, Graduate School of Medical and Dental Sciences, Tokyo Medical and Dental University, 1-5-45, Yushima, Bunkyo-ku, Tokyo 113-8549, Japan.
Cariology and Operative Dentistry, Department of Oral Health Sciences, Graduate School of Medical and Dental Sciences, Tokyo Medical and Dental University, 1-5-45, Yushima, Bunkyo-ku, Tokyo 113-8549, Japan.
Dent Mater. 2018 Mar;34(3):434-441. doi: 10.1016/j.dental.2017.11.023. Epub 2017 Dec 9.
Smear layer deproteinizing was proved to reduce the organic phase of smear layer covered on dentin surface. It was shown to eliminate hybridized smear layer and nanoleakage expression in resin-dentin bonding interface of two-step self-etch adhesive. This study aimed to investigate those effects on various one-step self-etch adhesives.
Four different one-step self-etch adhesives were used in this study; SE One (SE), Scotchbond™ Universal (SU), BeautiBond Multi (BB), and Bond Force (BF). Flat human dentin surfaces with standardized smear layer were prepared. Smear layer deproteinizing was carried out by the application of 50ppm hypochlorous acid (HOCl) on dentin surface for 15s followed by Accel (p-toluenesulfinic acid salt) for 5s prior to adhesive application. No surface pretreatment was used as control. Microtensile bond strength (μTBS) and nanoleakage under TEM observation were investigated. The data were analyzed by two-way ANOVA and Tukey's post-hoc test and t-test at the significant level of 0.05.
Smear layer deproteinizing significantly improved μTBS of SE, SU, and BB (p<0.001). Hybridized smear layer observed in control groups of SE, BB, and BF, and reticular nanoleakage presented throughout the hybridized complex in control groups of BB and BF were eliminated upon the smear layer deproteinizing.
Smear layer deproteinizing by HOCl and Accel application could enhance the quality of dentin for bonding to one-step self-etch adhesives, resulting in the improving μTBS, eliminating hybridized smear layer and preventing reticular nanoleakage formation in resin-dentin bonding interface.
已证实涂抹层脱蛋白可减少牙本质表面覆盖的涂抹层有机相。研究表明,它能消除两步自酸蚀粘结剂树脂 - 牙本质粘结界面处的混合涂抹层和纳米渗漏现象。本研究旨在探究这些作用对各种一步自酸蚀粘结剂的影响。
本研究使用了四种不同的一步自酸蚀粘结剂;SE One(SE)、Scotchbond™ Universal(SU)、BeautiBond Multi(BB)和Bond Force(BF)。制备具有标准化涂抹层的平坦人牙本质表面。在涂抹粘结剂之前,通过在牙本质表面施加50ppm次氯酸(HOCl)15秒,随后施加Accel(对甲苯亚磺酸盐)5秒来进行涂抹层脱蛋白处理。未进行表面预处理作为对照。研究了微拉伸粘结强度(μTBS)以及透射电镜观察下的纳米渗漏情况。数据采用双向方差分析以及Tukey事后检验和t检验进行分析,显著性水平为0.05。
涂抹层脱蛋白显著提高了SE、SU和BB的μTBS(p<0.001)。在SE、BB和BF的对照组中观察到的混合涂抹层,以及在BB和BF的对照组中整个混合复合物中呈现的网状纳米渗漏,在涂抹层脱蛋白后均被消除。
通过施加HOCl和Accel进行涂抹层脱蛋白可提高牙本质与一步自酸蚀粘结剂粘结的质量,从而提高μTBS,消除混合涂抹层并防止树脂 - 牙本质粘结界面形成网状纳米渗漏。