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Antimicrobial Monomers for Polymeric Dental Restoratives: Cytotoxicity and Physicochemical Properties

机译:聚合物牙科修复剂的抗微生物单体:细胞毒性和物理化学性质

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摘要

A trend for the next generation of polymeric dental restoratives is to incorporate multifunctional capabilities to regulate microbial growth and remineralize tooth surfaces. Polymerizable 2-(methacryloyloxy)-N-(2-(methacryloyloxy)ethyl)-N,N-dimethylethan-1-aminium bromide (IDMA1) and N,N′-([1,1′-biphenyl]-2,2′-diylbis(methylene))bis(2-(methacryloyloxy)-N,N-dimethylethan-1-aminium) bromide (IDMA2), intended for utilization in bi-functional antimicrobial and remineralizing composites, were synthesized, purified with an ethanol-diethyl ether-hexane solvent system, and validated by nuclear magnetic resonance (1H and 13C NMR) spectroscopy, mass spectrometry, and Fourier-transform infrared spectroscopy. When incorporated into light-curable urethane dimethacrylate (UDMA)/polyethylene glycol-extended UDMA (PEG-U)/ethyl 2-(hydroxymethyl)acrylate (EHMA) (assigned UPE) resins, IDMAs did not affect the overall resins’ hydrophilicity/hydrophobicity balance (water contact angle: 60.8–65.5°). The attained degrees of vinyl conversion (DVC) were consistently higher in both IDMA-containing copolymers and their amorphous calcium phosphate (ACP) composites (up to 5% and 20%, respectively) reaching 92.5% in IDMA2 formulations. Notably, these high DVCs values were attained without an excessive increase in polymerization stress. The observed reduction in biaxial flexure strength of UPE-IDMA ACP composites should not prevent further evaluation of these materials as multifunctional Class V restoratives. In direct contact with human gingival fibroblasts, at biologically relevant concentrations, IDMAs did not adversely affect cell viability or their metabolic activity. Ion release from the composites was indicative of their strong remineralization potential. The above, early-phase biocompatibility and physicochemical tests justify further evaluation of these experimental materials to identify formulation(s) suitable for clinical testing. Successful completion is expected to yield a new class of restoratives with well-controlled bio-function, which will physicochemically, mechanically, and biologically outperform the conventional Class V restoratives.
机译:下一代聚合物牙科修复剂的趋势是掺入多功能能力来调节微生物生长和再矿化牙齿表面。可聚合的2-(甲基丙烯酰氧基)-N-(2-(甲基丙烯酰氧基)乙基)-N,N-二甲基乙烯 - 1-氨基溴化物(IDMA1)和N,N'([1,1'-BIPENYL] -2,2合成用于利用双功能性抗微生物和再矿化复合材料的BIS(2-(甲基丙烯酰氧基)-N,N-二甲基氨基乙烯-1-氨基铵)溴化物(IDMA2),用乙醇纯化 - 二乙醚 - 己烷溶剂系统,并通过核磁共振(1H和13C NMR)光谱,质谱和傅里叶变换红外光谱验证。当掺入可光固化的氨基甲酸酯二甲基丙烯酸酯(UDMA)/聚乙二醇延伸的UDMA(PEG-U)/乙基2-(羟甲基)丙烯酸酯(EHMA)(EHMA)树脂中时,IDMA没有影响整体树脂的亲水性/疏水性平衡(水接触角:60.8-65.5°)。含有含氮的共聚物和其非晶磷酸钙(ACP)复合材料(分别高达5%和20%)持续较高的乙烯基转化率(DVC),达到IDMA2制剂中的92.5%。值得注意的是,在没有过度增加的聚合应力的情况下实现这些高DVCS值。 UPE-IDMA ACP复合材料的双轴弯曲强度的观察到的降低不应防止这些材料的进一步评估为多功能等级V修复剂。在生物相关浓度下直接接触人牙龈成纤维细胞,IDMA不会对细胞活力或其代谢活性产生不利影响。从复合材料中离子释放表明它们具有强的再矿化潜力。上述早期生物相容性和物理化学试验证明了这些实验材料的进一步评价,以鉴定适合临床测试的配方。预计成功完成将产生具有良好控制的生物功能的新一类修复物,这将物理化化学,机械化和生物学越优越,传统的V类v恢复剂。

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