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Evaluation of Candida albicans adhesion and biofilm formation on a denture base acrylic resin containing silver nanoparticles

机译:在含有银纳米颗粒的义齿基托丙烯酸树脂上评价白色念珠菌粘附和生物膜形成

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摘要

Aim: This study firstly evaluated the activity of a silver nanoparticle (AgNPs) solution against Candida albicans and then the effect of incorporation of AgNPs into a denture base acrylic resin on the material’s hydrophobicity, C. albicans adhesion and biofilm formation. Methods and Results: The AgNPs solution was synthesized by chemical reduction and characterized. Minimum inhibitory (MIC) and minimum fungicidal (MFC) concentrations for planktonic cells and sessile cells (MFCs) of the AgNPs solution against C. albicans were determined. Specimens (n = 360) of silver-incorporated acrylic resin at concentrations of 1000, 750, 500, 250 and 30 ppm were also prepared and stored in PBS for 0, 7, 90 and 180 days. Control was acrylic resin without AgNPs (0 ppm). After the storage periods, contact angles were measured and the specimens were used for C. albicans adherence ('37 GRAUS'; 90 min; n = 9) and biofilm formation ('37 GRAUS'; 48 h; n = 9) by XTT reduction assay. MIC, MFC and MFCs values were 3,98, 15,63 and 1000 ppm, respectively. Incorporation of AgNPs reduced the hydrophobicity of the resin. No effect on adherence and biofilm formation was observed. At 90 and 180 days of storage, there was significant increase in adherence and biofilm formation. Conclusions: Although the AgNPs solution had antifungal activity, no effect on C. albicans adherence and biofilm formation was observed after its incorporation into a denture base resin. Significance and Impact of the Study: The synthesized AgNPs solution is a promising antifungal agent, warranting investigations of more efficient methods of incorporation into denture base resins.
机译:目的:这项研究首先评估了银纳米颗粒(AgNPs)溶液对白色念珠菌的活性,然后评估了将AgNPs掺入义齿基托丙烯酸树脂中对材料的疏水性,白色念珠菌粘附力和生物膜形成的影响。方法与结果:通过化学还原法合成了AgNPs溶液并进行了表征。确定了针对白色念珠菌的AgNPs溶液的浮游细胞和无柄细胞(MFCs)的最小抑制(MIC)和最小杀真菌(MFC)浓度。还制备了浓度为1000、750、500、250和30 ppm的掺银丙烯酸树脂样品(n = 360),并在PBS中保存0、7、90和180天。对照是不含AgNP(0ppm)的丙烯酸树脂。在储存期之后,测量接触角,并通过XTT将样品用于白色念珠菌的粘附(“ 37 GRAUS”; 90分钟; n = 9)和生物膜形成(“ 37 GRAUS”; 48 h; n = 9)。还原测定。 MIC,MFC和MFCs值分别为3.98、15.63和1000 ppm。 AgNP的掺入降低了树脂的疏水性。没有观察到对粘附和生物膜形成的影响。在储存90天和180天后,粘附力和生物膜形成显着增加。结论:尽管AgNPs溶液具有抗真菌活性,但将其掺入义齿基料树脂后,对白色念珠菌的粘附和生物膜的形成没有影响。研究的意义和影响:合成的AgNPs溶液是一种很有前途的抗真菌剂,需要对掺入义齿基料树脂中的更有效方法进行研究。

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