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Designing dental composites with bioactive and bactericidal properties

机译:设计具有生物活性和杀菌特性的牙科复合材料

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Objectives: The aim of this work was to fabricate and evaluate new antibacterial and bioactive composites capable of strictly controlling oral bacteria, enhancing apatite layer formation and retaining their mechanical properties. Methods: A new Ag-doped bioactive glass (Ag-BG) was incorporated into flowable dental composite (COMP) in different concentrations (1,5, and 15 wt.%) in order to fabricate new combined bioactive and antibacterial composite materials (Ag-BGCOMPs). The antibacterial properties, bioactivity, and total bond strength of the Ag-BGCOMPs were evaluated. Results: The bioactivity of the Ag-BG was confirmed after its immersion in simulated body fluid (SBF). The total bond strength between the surrounding tooth tissue and the new composites or the control (dental composite alone) has not shown any statistically significant difference in the performed pilot study. Antibacterial activity was observed against Escherkhia coli (E. coli) and Streptococcus mutatis (S. mutatis) for the Ag-BGCOMP 5 wt.% and 15 wt.% but not for the Ag-BGCOMP 1 wt.% or the control. Conclusions: This work contributes to our long term aim which is the fabrication of dental materials capable of reducing bacteria invasion and enhancing remineralization of the surrounding dental tissues. Significance: We anticipate that these new composites could ultimately prevent restoration failure by inhibiting the formation of secondary caries and by remineralizing the hard tissues surrounding tooth lesions.
机译:目的:这项工作的目的是制造和评估能够严格控制口腔细菌,增强磷灰石层形成并保留其机械性能的新型抗菌和生物活性复合材料。方法:将一种新型的掺银生物活性玻璃(Ag-BG)以不同的浓度(1.5和15 wt。%)掺入可流动的牙科复合材料(COMP)中,以制造新型的复合生物活性和抗菌复合材料(Ag) -BGCOMPs)。评估了Ag-BGCOMP的抗菌性能,生物活性和总结合强度。结果:将Ag-BG浸入模拟体液(SBF)中后,证实了其生物活性。在进行的初步研究中,周围牙齿组织与新复合材料或对照组(仅牙科复合材料)之间的总粘结强度未显示任何统计学上的显着差异。对于5重量%和15重量%的Ag-BGCOMP,观察到针对大肠杆菌(E.coli)和比照链球菌(S.mutatis)的抗菌活性,但是对于1重量%的Ag-BGCOMP或对照没有观察到抗菌活性。结论:这项工作有助于实现我们的长期目标,即制造能够减少细菌入侵并增强周围牙齿组织再矿化的牙科材料。启示:我们预期这些新的复合材料可以通过抑制继发龋的形成以及使牙齿病变周围的硬组织矿化来最终防止修复失败。

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