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Synergistic Effect of Newly Introduced Root Canal Medicaments; Ozonated Olive Oil and Chitosan Nanoparticles Against Persistent Endodontic Pathogens

机译:新引进的根管药物的协同作用;臭氧橄榄油和壳聚糖纳米粒子对持久性牙髓病病原体的抵抗

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摘要

This study was conducted to investigate the antimicrobial-biofilm activity of chitosan (Ch-NPs), silver nanoparticles (Ag-NPs), ozonated olive oil (O3-oil) either separately or combined together against endodontic pathogens. While testing the antimicrobial activity, Ch-NPs showed the least minimum inhibitory concentration (MIC) and minimum bactericidal concentration (MBC) values exerting eightfold higher bactericidal activity than O3-oil against both Enterococcus faecalis and Streptococcus mutans as well as fourfold higher fungicidal activity against Candida albicans. Antimicrobial synergy test revealed synergism between O3-oil and Ch-NPs against the test pathogens (FIC index ≤ 0.5). Ch-NPs was superior at inhibiting immature single and mixed-species biofilm formations by 97 and 94%, respectively. Both of O3-oil and Ch-NPs had a complete anti-fibroblast adherent effect. The safety pattern results showed that O3-oil was the safest compound, followed by Ch-NPs. The double combination of Ch-NPs and O3-oil reduced the mature viable biofilm on premolars ex vivo model by 6-log reductions, with a fast kill rate, indicating potential use in treating root canals. Therefore, the double combination has the potential to eradicate mature mixed-species biofilms and hence it is potent, novel and safe.
机译:进行这项研究以研究壳聚糖(Ch-NPs),银纳米颗粒(Ag-NPs),臭氧化橄榄油(O3-油)的抗微生物生物膜活性,它们分别或组合在一起对牙髓病原体致病。在测试抗菌活性时,Ch-NPs的最小抑菌浓度(MIC)和最小杀菌浓度(MBC)值对粪肠球菌和变形链球菌的杀菌活性均比O3-油高八倍,而对变形链球菌的杀菌活性高四倍。白色念珠菌。抗菌协同试验表明,O3-油和Ch-NPs对试验病原体具有协同作用(FIC指数≤0.5)。 Ch-NPs在抑制未成熟的单一物种和混合物种生物膜形成方面分别具有97%和94%的优势。 O3-油和Ch-NPs都具有完全的抗成纤维细胞粘附作用。安全模式结果表明,O3油是最安全的化合物,其次是Ch-NP。 Ch-NPs和O3-油的双重组合可通过减少6 log的方法减少前摩尔离体模型上成熟的生物膜,且杀灭速度快,表明其潜在用途可用于治疗根管。因此,双重结合有可能根除成熟的混合物种生物膜,因此是有效的,新颖的和安全的。

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