Xiao Shimeng, Liang Kunneng, Weir Michael D, Cheng Lei, Liu Huaibing, Zhou Xuedong, Ding Yi, Xu Hockin H K
State Key Laboratory of Oral Diseases, West China Hospital of Stomatology, Sichuan University, Chengdu 610041, China.
Biomaterials and Tissue Engineering Division, Department of Endodontics, Periodontics and Prosthodontics, University of Maryland School of Dentistry, Baltimore, MD 21201, USA.
Materials (Basel). 2017 Jan 22;10(1):89. doi: 10.3390/ma10010089.
. The objectives of this study were to: (1) develop a bioactive multifunctional composite (BMC) via nanoparticles of amorphous calcium phosphate (NACP), 2-methacryloyloxyethyl phosphorylcholine (MPC), dimethylaminohexadecyl methacrylate (DMAHDM) and nanoparticles of silver (NAg); and (2) investigate the effects of combined BMC + poly (amido amine) (PAMAM) on remineralization of demineralized root dentin in a cyclic artificial saliva/lactic acid environment for the first time. . Root dentin specimens were prepared and demineralized with 37% phosphoric acid for 15 s. Four groups were prepared: (1) root dentin control; (2) root dentin with BMC; (3) root dentin with PAMAM; (4) root dentin with BMC + PAMAM. Specimens were treated with a cyclic artificial saliva/lactic acid regimen for 21 days. Calcium (Ca) and phosphate (P) ion concentrations and acid neutralization were determined. The remineralized root dentin specimens were examined via hardness testing and scanning electron microscopy (SEM). . Mechanical properties of BMC were similar to commercial control composites ( = 0.913). BMC had excellent Ca and P ion release and acid-neutralization capability. BMC or PAMAM alone each achieved slight mineral regeneration in demineralized root dentin. The combined BMC + PAMAM induced the greatest root dentin remineralization, and increased the hardness of pre-demineralized root dentin to match that of healthy root dentin ( = 0.521). . The excellent root dentin remineralization effects of BMC + PAMAM were demonstrated for the first time. BMC + PAMAM induced effective and complete root dentin remineralization in an acid challenge environment. The novel BMC + PAMAM method is promising for Class V and other restorations to remineralize and protect tooth structures.
(1)通过无定形磷酸钙纳米颗粒(NACP)、2-甲基丙烯酰氧基乙基磷酰胆碱(MPC)、甲基丙烯酸十六烷基二甲胺基酯(DMAHDM)和银纳米颗粒(NAg)制备一种生物活性多功能复合材料(BMC);(2)首次研究BMC与聚酰胺胺(PAMAM)联合使用对在循环人工唾液/乳酸环境中脱矿根牙本质再矿化的影响。制备根牙本质标本,并用37%磷酸脱矿15秒。分为四组:(1)根牙本质对照组;(2)含BMC的根牙本质组;(3)含PAMAM的根牙本质组;(4)含BMC + PAMAM的根牙本质组。标本采用循环人工唾液/乳酸方案处理21天。测定钙(Ca)和磷(P)离子浓度以及酸中和能力。通过硬度测试和扫描电子显微镜(SEM)检查再矿化的根牙本质标本。BMC的力学性能与市售对照复合材料相似(= 0.913)。BMC具有优异的钙和磷离子释放及酸中和能力。单独使用BMC或PAMAM各自在脱矿根牙本质中实现了轻微的矿物质再生。BMC与PAMAM联合使用诱导了最大程度的根牙本质再矿化,并将脱矿前根牙本质的硬度提高到与健康根牙本质相当的水平(= 0.521)。首次证明了BMC + PAMAM具有优异的根牙本质再矿化效果。BMC + PAMAM在酸性挑战环境中诱导了有效且完全的根牙本质再矿化。新型的BMC + PAMAM方法有望用于V类及其他修复,以实现牙体结构的再矿化和保护。