School and Hospital of Stomatology, Lanzhou University, 222 Tianshui South Road, Lanzhou, Gansu, 730000, China.
BMC Oral Health. 2024 Aug 29;24(1):1013. doi: 10.1186/s12903-024-04754-0.
Enhancing the antibacterial properties of polymethyl methacrylate (PMMA) dental resins is crucial in preventing secondary infections following dental procedures. Despite the necessity for such improvement, a universally applicable method for augmenting the antibacterial properties of PMMA without compromising its mechanical properties and cytotoxicity remains elusive. Consequently, this study aims to address the aforementioned challenges by developing and implementing a composite material known as zinc oxide/graphene oxide (ZnO/GO) nanocomposites, to modify the PMMA.
ZnO/GO nanocomposites were successfully synthesized by a one-step procedure and fully characterized by TEM, EDS, FTIR and XRD. Then the physical and mechanical properties of PMMA modified by ZnO/GO nanocomposites were evaluated through water absorption and solubility test, contact angle test, three-point bending tests, and compression test. Furthermore, the biological properties of the modified PMMA were evaluated by direct microscopic colony count method, crystal violet staining and CCK-8.
The results revealed that ZnO/GO nanocomposites were successfully constructed. When the concentration of nanocomposites in PMMA was 0.2 wt. %, the flexural strength of the resin was increased by 23.4%, the compressive strength was increased by 31.1%, and the number of bacterial colonies was reduced by 60.33%. Meanwhile, It was found that the aging of the resin did not affect its antibacterial properties, and CCK-8 revealed that the modified PMMA had no cytotoxicity.
ZnO/GO nanocomposites effectively improved the antibacterial properties of PMMA. Moreover, the mechanical properties of the resin were improved by adding ZnO/GO nanocomposites at a lower range of concentrations.
提高聚甲基丙烯酸甲酯(PMMA)牙科树脂的抗菌性能对于预防牙科手术后的二次感染至关重要。尽管需要进行这种改进,但仍然难以找到一种普遍适用的方法来增强 PMMA 的抗菌性能而不影响其机械性能和细胞毒性。因此,本研究旨在通过开发和实施一种称为氧化锌/氧化石墨烯(ZnO/GO)纳米复合材料的复合材料来解决上述挑战,以修饰 PMMA。
通过一步法成功合成了 ZnO/GO 纳米复合材料,并通过 TEM、EDS、FTIR 和 XRD 对其进行了全面表征。然后,通过吸水和溶解度测试、接触角测试、三点弯曲测试和压缩测试评估了 ZnO/GO 纳米复合材料修饰的 PMMA 的物理和机械性能。此外,还通过直接显微镜菌落计数法、结晶紫染色和 CCK-8 评估了改性 PMMA 的生物性能。
结果表明成功构建了 ZnO/GO 纳米复合材料。当纳米复合材料在 PMMA 中的浓度为 0.2wt.%时,树脂的弯曲强度提高了 23.4%,压缩强度提高了 31.1%,细菌菌落数减少了 60.33%。同时,发现树脂的老化不会影响其抗菌性能,CCK-8 显示改性 PMMA 无细胞毒性。
ZnO/GO 纳米复合材料有效提高了 PMMA 的抗菌性能。此外,通过在较低浓度下添加 ZnO/GO 纳米复合材料,可以提高树脂的机械性能。