Mai Sui, Kim Young Kyung, Toledano Manuel, Breschi Lorenzo, Ling Jun Qi, Pashley David H, Tay Franklin R
Department of Operative Dentistry and Endodontics, Guanghua School of Stomatology, Sun Yat-sen University, Guangzhou, China.
Dent Mater. 2009 Oct;25(10):1230-9. doi: 10.1016/j.dental.2009.05.001. Epub 2009 May 30.
Polyvinylphosphonic acid (PVPA), a biomimetic analog of phosphoproteins, is crucial for recruiting polyacrylic acid (PAA)-stabilized amorphous calcium phosphate nanoprecursors during biomimetic remineralization of dentin collagen matrices. This study tested the null hypothesis that phosphoric acid esters of methacrylates in dentin adhesives cannot replace PVPA during bimimetic remineralization of resin-dentin interfaces. Human dentin specimens were bonded with: (I) XP Bond, an etch-and-rinse adhesive using moist bonding; (II) XP Bond using dry bonding; (III) Adper Prompt L-Pop, a self-etching adhesive. The control medium contained only set Portland cement and a simulated body fluid (SBF) without any biomimetic analog. Two experimental Portland cement/SBF remineralization media were evaluated: the first contained PAA as the sole biomimetic analog, the second contained PAA and PVPA as dual biomimetic analogs. No remineralization of the resin-dentin interfaces could be identified from specimens immersed in the control medium. After 2-4 months in the first experimental medium, specimens exhibited either no remineralization or large crystal formation within hybrid layers. Only specimens immersed in the second remineralization medium produced nanocrystals that accounted for intrafibrillar remineralization within hybrid layers. The null hypothesis could not be rejected; phosphoric acid esters in dentin adhesives cannot replace PVPA during biomimetic remineralization of adhesive-bonded dentin.
聚乙烯膦酸(PVPA)是一种磷蛋白的仿生类似物,在牙本质胶原基质的仿生再矿化过程中,对于募集聚丙烯酸(PAA)稳定的无定形磷酸钙纳米前体至关重要。本研究检验了一个无效假设,即在树脂 - 牙本质界面的双仿生再矿化过程中,牙本质黏结剂中的甲基丙烯酸磷酸酯不能替代PVPA。用人牙本质标本进行如下黏结:(I)XP Bond,一种采用湿黏结的酸蚀冲洗黏结剂;(II)采用干黏结的XP Bond;(III)Adper Prompt L-Pop,一种自酸蚀黏结剂。对照介质仅包含凝固的波特兰水泥和模拟体液(SBF),不含任何仿生类似物。评估了两种实验性波特兰水泥/SBF再矿化介质:第一种含有PAA作为唯一的仿生类似物,第二种含有PAA和PVPA作为双仿生类似物。浸泡在对照介质中的标本未发现树脂 - 牙本质界面有再矿化现象。在第一种实验介质中放置2 - 4个月后,标本要么没有再矿化,要么在混合层内形成大晶体。只有浸泡在第二种再矿化介质中的标本产生了纳米晶体,这些纳米晶体促成了混合层内的纤维内再矿化。无效假设不能被拒绝;在黏结牙本质的仿生再矿化过程中,牙本质黏结剂中的磷酸酯不能替代PVPA。