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Development of remineralizing, antibacterial dental materials.

机译:开发矿物质,抗菌牙科材料。

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Light curable methacrylate dental monomers containing reactive calcium phosphate filler (monocalcium phosphate monohydrate (MCPM) with particle diameter of 29 or 90microm) and beta-tricalcium phosphate (beta-TCP) at 1:1 weight ratio in a powder:liquid ratio (PLR) of 1:1 or 3:1 and chlorhexidine diacetate (0 or 5 wt.%), were investigated. Upon light exposure, approximately 90% monomer conversion was gained irrespective of the formulation. Increasing the PLR promoted water sorption by the set material, induced expansion and enhanced calcium, phosphate and chlorhexidine release. Concomitantly, a decline in compressive and biaxial flexural strengths occurred. With a reduction in MCPM particle diameter, however, calcium and phosphate release was reduced and less deterioration in strength observed. After 24h, the remaining MCPM had reacted with water and beta-TCP, forming, within the set materials, brushite of lower solubility. This provided a novel means to control water sorption, component release and strength properties. Measurable chlorhexidine release was observed for 6weeks. Both diffusion rate and total percentage of chlorhexidine release decreased with lowering PLR or by adding buffer to the storage solutions. Higher chlorhexidine release was associated with reduced bacterial growth on agar plates and in a biofilm fermenter. In cell growth media, brushite and hydroxyapatite crystals precipitated on the composite material surfaces. Cells spread on both these crystals and the exposed polymer composite surfaces, indicating their cell compatibility. These formulations could be suitable antibacterial, biocompatible and remineralizing dental adhesives/liners.
机译:轻质可固化的甲基丙烯酸酯牙科用单体,以重量比为1:1的比例包含活性磷酸钙填充剂(一水合磷酸钙单水合物(MCPM),粒径为29或90微米)和β-磷酸三钙(β-TCP),重量比为1:研究了1∶1或3∶1的氯己定二乙酸酯(0或5重量%)。曝光后,无论配方如何,均可获得约90%的单体转化率。增加PLR可以促进固化材料吸收水,诱导膨胀并增强钙,磷酸盐和洗必太的释放。伴随地,抗压强度和双轴抗弯强度发生了下降。然而,随着MCPM粒径的减小,钙和磷酸盐的释放减少,并且观察到强度的降低较少。 24小时后,剩余的MCPM与水和β-TCP反应,在凝固的材料中形成了较低溶解度的透钙磷石。这提供了控制吸水,组分释放和强度特性的新颖手段。观察到六周可测量的洗必太释放。降低PLR或通过向存储溶液中添加缓冲液,扩散速度和洗必太释放的总百分比均降低。较高的氯己定释放与琼脂平板和生物膜发酵罐中细菌生长减少有关。在细胞生长培养基中,透钙磷石和羟基磷灰石晶体沉淀在复合材料表面上。细胞在这些晶体和裸露的聚合物复合材料表面上扩散,表明它们具有细胞相容性。这些制剂可以是合适的抗菌,生物相容和再矿化的牙科粘合剂/内衬。

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