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Combining Bioactive Multifunctional Dental Composite with PAMAM for Root Dentin Remineralization

机译:结合生物活性多功能牙科复合材料与PAMAM进行根部牙本质再矿化

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Objectives . 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. Methods . 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). Results . Mechanical properties of BMC were similar to commercial control composites ( p = 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 ( p = 0.521). Significance . 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.
机译:目标。这项研究的目的是:(1)通过无定形磷酸钙(NACP),2-甲基丙烯酰氧基乙基磷酰胆碱(MPC),甲基丙烯酸二甲氨基十六烷基酯(DMAHDM)和银纳米颗粒(NAg)的纳米颗粒开发生物活性的多功能复合材料(BMC); (2)首次研究了在循环人工唾液/乳酸环境中,联合使用BMC +聚(酰胺基胺)(PAMAM)对脱矿质牙本质牙本质再矿化的作用。方法 。制备牙本质根样品,并用37%的磷酸脱盐15 s。准备了四组:(1)根部牙本质对照; (2)BMC根部牙本质; (3)根状牙本质与PAMAM; (4)牙本质素与BMC + PAMAM结合。用循环人工唾液/乳酸方案处理标本21天。测定钙(Ca)和磷酸盐(P)的离子浓度以及酸中和度。通过硬度测试和扫描电子显微镜(SEM)检查了再矿化的牙本质牙本质标本。结果。 BMC的机械性能与市售对照复合材料相似(p = 0.913)。 BMC具有出色的Ca和P离子释放能力以及酸中和能力。单独的BMC或PAMAM在脱矿质牙本质牙本质中均实现了轻微的矿物质再生。结合的BMC + PAMAM诱导了最大的牙本质牙本质再矿化,并增加了去矿化前的牙本质的硬度,使其与健康的牙本质匹配(p = 0.521)。意义。首次证明了BMC + PAMAM具有优异的根部牙本质再矿化作用。在酸性环境中,BMC + PAMAM诱导有效且完全的根部牙本质再矿化。新颖的BMC + PAMAM方法有望用于V级和其他修复体的再矿化和保护牙齿结构。

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