Wu Shiyu, Gu Lisha, Huang Zihua, Sun Qiurong, Chen Huimin, Ling Junqi, Mai Sui
Guangdong Provincial Key Laboratory of Stomatology, Guanghua School of Stomatology, Hospital of Stomatology, Sun Yat-sen University, Guangzhou, China.
Eur J Oral Sci. 2017 Feb;125(1):72-80. doi: 10.1111/eos.12319. Epub 2016 Dec 20.
The biomimetic remineralization of apatite-depleted dentin is a potential method for enhancing the durability of resin-dentin bonding. To advance this strategy from its initial proof-of-concept design, we sought to investigate the characteristics of polyacrylic acid (PAA) adsorption to desorption from type I collagen and to test the mineralization ability of PAA-bound collagen. Portland cement and β-tricalcium phosphate (β-TCP) were homogenized with a hydrophilic resin blend to produce experimental resins. The collagen fibrils reconstituted on nickel (Ni) grids were mineralized using different methods: (i) group I consisted of collagen treated with Portland cement-based resin in simulated body fluid (SBF); (ii) group II consisted of PAA-bound collagen treated with Portland cement-based resin in SBF; and (iii) group III consisted of PAA-bound collagen treated with β-TCP-doped Portland cement-based resin in deionized water. Intrafibrillar mineralization was evaluated using transmission electron microscopy. We found that a carbonyl-associated peak at pH 3.0 increased as adsorption time increased, whereas a hydrogen bond-associated peak increased as desorption time increased. The experimental resins maintained an alkaline pH and the continuous release of calcium ions. Apatite was detected within PAA-bound collagen in groups II and III. Our results suggest that PAA-bound type I collagen fibrils can be mineralized using Portland cement-based resins.
磷灰石缺失牙本质的仿生再矿化是增强树脂-牙本质粘结耐久性的一种潜在方法。为了将这一策略从最初的概念验证设计向前推进,我们试图研究聚丙烯酸(PAA)在I型胶原上吸附和解吸的特性,并测试PAA结合胶原的矿化能力。将波特兰水泥和β-磷酸三钙(β-TCP)与亲水性树脂共混物均质化以制备实验性树脂。在镍(Ni)网格上重构的胶原纤维使用不同方法进行矿化:(i)第一组由在模拟体液(SBF)中用波特兰水泥基树脂处理的胶原组成;(ii)第二组由在SBF中用波特兰水泥基树脂处理的PAA结合胶原组成;(iii)第三组由在去离子水中用β-TCP掺杂的波特兰水泥基树脂处理的PAA结合胶原组成。使用透射电子显微镜评估纤维内矿化。我们发现,pH 3.0时与羰基相关的峰随吸附时间增加而增加,而与氢键相关的峰随解吸时间增加而增加。实验性树脂保持碱性pH值并持续释放钙离子。在第二组和第三组的PAA结合胶原中检测到磷灰石。我们的结果表明,PAA结合的I型胶原纤维可以使用波特兰水泥基树脂进行矿化。