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首页> 外文期刊>Industrial and organizational psychology >Novel Dental Poly (Methyl Methacrylate) Containing Phytoncide for Antifungal Effect and Inhibition of Oral Multispecies Biofilm
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Novel Dental Poly (Methyl Methacrylate) Containing Phytoncide for Antifungal Effect and Inhibition of Oral Multispecies Biofilm

机译:含有浮金属的新型牙科聚(甲基丙烯酸甲酯),用于抗真菌效应和口腔多层生物膜的抑制作用

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摘要

Despite the many advantages of poly (methyl methacrylate) (PMMA) as a dental polymer, its antifungal and antibacterial effects remain limited. Here, phytoncide was incorporated into PMMA to inhibit fungal and biofilm accumulation without impairing the basic and biological properties of PMMA. A variable amount of phytoncide (0 wt % to 5 wt %) was incorporated into PMMA, and the basic material properties of microhardness, flexural strength and gloss were evaluated. In addition, cell viability was confirmed by MTT assay. This MTT assay measures cell viability via metabolic activity, and the color intensity of the formazan correlates viable cells. The fungal adhesion and viability on the PMMA surfaces were evaluated using Candida albicans (a pathogenic yeast). Finally, the thickness of saliva-derived biofilm was estimated. The flexural strength of PMMA decreased with increasing phytoncide contents, whereas there were no significant differences in the microhardness and gloss (p > 0.05) and the cell viability (p > 0.05) between the control and the phytoncide-incorporated PMMA samples. The amounts of adherent Candida albicans colony-forming unit (CFU) counts, and saliva-derived biofilm thickness were significantly lower in the phytoncide-incorporated PMMA compared to the control (p < 0.05). Hence, it was concluded that the incorporation of appropriate amounts of phytoncide in PMMA demonstrated antifungal effects while maintaining the properties, which could be a possible use in dentistry application such as denture base resin.
机译:尽管聚(甲基丙烯酸甲酯)(PMMA)作为牙科聚合物的许多优点,但其抗真菌和抗菌效应仍然有限。这里,将浮蛋白掺入PMMA中以抑制真菌和生物膜积累,而不会损害PMMA的基本和生物学性质。将可变量的偶氮(0wt%至5wt%)掺入PMMA中,并评估微硬度,弯曲强度和光泽度的基本材料性质。此外,通过MTT测定确认细胞活力。该MTT测定通过代谢活性测量细胞活力,并且甲板的颜色强度与活细胞相关联。使用念珠菌(致病酵母)评估PMMA表面上的真菌粘附和活力。最后,估计了唾液衍生的生物膜的厚度。随着植物含量的增加,PMMA的抗弯强度降低,而在对照和植物植物掺入的PMMA样品之间没有显着差异(P> 0.05)和细胞活力(P> 0.05)。与对照相比,植物掺入的PMMA粘附念珠菌菌落形成单元(CFU)计数单位(CFU)计数和唾液衍生的生物膜厚度显着降低(P <0.05)。因此,得出结论是,在PMMA中掺入适量的植物二氯化物在维持性质的同时证明了抗真菌效应,这可能是在牙科施用等牙本质施用中的可能使用。

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