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用于抗菌和再矿化牙科复合材料的离子型二甲基丙烯酸酯

Ionic Dimethacrylates for Antimicrobial and Remineralizing Dental Composites.

作者信息

Bienek D R, Frukhtbeyn S A, Giuseppetti A A, Okeke U C, Pires R M, Antonucci J M, Skrtic D

机构信息

Volpe Research Center, ADA Foundation, Maryland, USA.

Chemical and Biological Sciences, Montgomery College, Maryland, USA.

出版信息

Ann Dent Oral Disord. 2018 Jun;2(1). Epub 2018 May 30.

Abstract

Two ionic dimethacrylates (IDMA1 and IDMA2) intended for utilization in multifunctional, antibacterial and remineralizing dental resins and composites were synthesized by nucleophilic substitution reactions. Crude IDMAs were purified by multi-step extraction from ethanol-diethyl ether-hexane solvent system. Their structures were validated by nuclear magnetic resonance and mass spectrometry. As evidenced by the water contact angle measurements ((63.2-65.5)), IDMAs did not affect the wettability of urethane dimethacrylate (UDMA)- based copolymers (average contact angle ((60.8±5.1)).The attained degrees of vinyl conversion increased from 88.1% (no-IDMA control) up to 93.0% (IDMA2 series). Flexural strength (FS) of copolymers was reduced from 94.8 MPa (control) to (68.9-71.8) MPa (IDMA counterparts) independent of monomer type and/or its concentration. This reduction in FS should not disqualify IDMAs from consideration as viable antibacterial agents in multifunctional restoratives. Tested at concentrations exceeding the expected leachability of unreacted monomers from cured copolymers and/or composites, IDMAs had no deleterious effect on viability and/or metabolic activity of fibroblasts. The remineralization potential of amorphous calcium phosphate IDMA/UDMA composites was confirmed by calcium and phosphate ion release kinetic experiments. Results of this study warrant in-depth biological, physicochemical, mechanical and antibacterial assessments of IDMA resins and composites to identify prototype(s) suitable for clinical testing.

摘要

通过亲核取代反应合成了两种用于多功能、抗菌和再矿化牙科树脂及复合材料的离子型二甲基丙烯酸酯(IDMA1和IDMA2)。粗制的IDMAs通过从乙醇 - 乙醚 - 己烷溶剂体系中进行多步萃取来纯化。它们的结构通过核磁共振和质谱进行验证。水接触角测量结果((63.2 - 65.5))表明,IDMAs不会影响基于聚氨酯二甲基丙烯酸酯(UDMA)的共聚物的润湿性(平均接触角((60.8±5.1))。达到的乙烯基转化率从88.1%(无IDMA对照)提高到93.0%(IDMA2系列)。共聚物的弯曲强度(FS)从94.8 MPa(对照)降低到(68.9 - 71.8)MPa(IDMA对应物),与单体类型和/或其浓度无关。FS的这种降低不应使IDMAs失去作为多功能修复材料中可行抗菌剂的考虑资格。在超过未反应单体从固化共聚物和/或复合材料中预期渗出率的浓度下进行测试时,IDMAs对成纤维细胞的活力和/或代谢活性没有有害影响。通过钙和磷酸根离子释放动力学实验证实了无定形磷酸钙IDMA/UDMA复合材料的再矿化潜力。本研究结果需要对IDMA树脂和复合材料进行深入的生物学、物理化学、力学和抗菌评估,以确定适合临床测试的原型。

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