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Trans,trans-farnesol, an antimicrobial natural compound, improves glass ionomer cement properties

机译:反式,反式-法尼索尔,一种抗微生物天然化合物,可改善玻璃离聚物的水泥性能

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摘要

A series of experiments were conducted to characterize a novel restorative material. We explored the effect on biological, physical and chemical properties of glass ionomer cement (GIC) adding-the naturally occurring tt-farnesol (900 mM). Two groups were accomplished for all assays: GIC+tt-farnesol and GIC (control). Biological assays: 1) agar diffusion against some cariogenic bacteria; 2) S. mutans biofilm formation and confocal laser scanning microscopy-CLSM. 3) gtfB, gtfC, gtfD, gbpB, vicR, and covR expression; 4) MTT and microscopic morphology. Physical properties assays: 1) roughness; 2) hardness; 3) compressive strength and 4) diametral tensile strength. Chemical assay: Raman spectroscopy. The adding of tt-farnesol to GIC led to larger zones of inhibition (p<0.05), biofilms with a short-term reduction in bacterial viability but similar biomass (p>0.05). Polysaccharides levels increased over time, similarly over groups (p>0.05). Viable and non-viable S. mutans were seen on the specimens’ surface by CLSM but their virulence was not modulated by tt-farnesol. The tt-farnesol increased the HaCaT cell viability without impact on compressive and diametral tensile strength and roughness although the hardness was positively affected (p<0.05). Raman confirmed the presence of tt-farnesol. The incorporation of tt-farnesol into GIC inhibited the growth of cariogenic bacteria but had a little effect on the composition, structure and physiology of the biofilm matrices. Also, the tt-farnesol increased the hardness and the biocompatibility of the GIC, not influencing negatively other physical properties of the restorative material.
机译:进行了一系列实验以表征新型修复材料。我们探讨了添加天然存在的tt-法尼醇(900 mM)对玻璃离聚物水泥(GIC)的生物学,物理和化学性质的影响。对于所有测定,完成了两组:GIC + tt-法尼醇和GIC(对照)。生物学分析:1)琼脂扩散对某些致癌细菌的扩散; 2)变形链球菌生物膜形成和共聚焦激光扫描显微镜-CLSM。 3)gtfB,gtfC,gtfD,gbpB,vicR和covR表达; 4)MTT和微观形态。物理性能测定:1)粗糙度; 2)硬度; 3)抗压强度和4)径向抗拉强度。化学测定:拉曼光谱。在GIC中添加tt-farnesol会导致更大的抑制区域(p <0.05),即生物膜的细菌生存力短期降低,但生物量相似(p> 0.05)。多糖水平随时间增加,与各组相似(p> 0.05)。 CLSM在标本的表面上观察到有活力和无活力的变形链球菌,但它们的毒力不受叔-法尼醇的调节。尽管硬度受到积极的影响,但叔丁烯醇增加了HaCaT细胞的活力,而对压缩和径向拉伸强度和粗糙度没有影响(p <0.05)。拉曼证实存在叔丁醇。在GIC中掺入 tt -法尼醇可抑制致癌细菌的生长,但对生物膜基质的组成,结构和生理学影响不大。同样, tt -法尼醇可增加GIC的硬度和生物相容性,而不会负面影响修复材料的其他物理性能。

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