Department of Prosthodontics, Faculty of Dentistry, Tabriz University of Medical Sciences, Tabriz, Iran.
Research Center for Pharmaceutical Nanotechnology, Biomedicine Institute, Tabriz University of Medical Sciences, Tabriz, Iran.
Sci Rep. 2024 Oct 10;14(1):23770. doi: 10.1038/s41598-024-74465-7.
Long-term oral health issues caused by fungi and bacteria are a primary concern for individuals who wear dentures. Denture stomatitis, primarily caused by Candida albicans (C. albicans), is a prevalent condition among denture users. Metal nanoparticles exhibit improved antimicrobial effectiveness and fewer adverse effects. This study aimed to evaluate the antifungal and antibacterial effects of nystatin-coated silver nanoparticles (Nys-coated AgNPs) embedded in acrylic resin as a more biocompatible material for denture resins. AgNPs and Nys-coated AgNPs were synthesized and characterized using UV-Vis, SEM, EDX, and DLS. Specimens of polymethyl methacrylate (PMMA) with three different concentrations of Nys, AgNPs, and Nys-coated AgNPs (0.1%, 1%, 10% w/w) were prepared. The water absorption properties of the disks and drug release were investigated for 14 days and 120 h, respectively. The hydrophilic and hydrophobic properties of the samples and their contact angles were evaluated using the sessile drop technique. The antifungal and antimicrobial activity of the prepared discs was studied against C. albicans and Streptococcus mutans, respectively. Adding Nys-coated AgNPs decreased the contact angle of discs from 67° to 49°. Furthermore, the water absorption rates of the different discs were not significantly different from those of the control groups. Results showed that Nys-coated AgNPs (10% w/w) in PMMA effectively inhibited C. albicans growth better than Nys composites (10% w/w). Additionally, Nys-coated AgNPs composites, as well as AgNPs-containing composites, showed considerable antibacterial activity against S. mutans. Nys-coated AgNPs (10% w/w) had no toxic effect on NIH3T3 cells. In conclusion, Nys-coated AgNPs could be considered a good candidate for incorporation into denture resins to address chronic oral diseases.
长期由真菌和细菌引起的口腔健康问题是佩戴义齿者的主要关注点。义齿性口炎主要由白色念珠菌(Candida albicans,C. albicans)引起,是义齿使用者中常见的病症。金属纳米颗粒表现出更好的抗菌效果和更少的副作用。本研究旨在评估嵌入丙烯酸树脂中的制霉菌素涂层银纳米颗粒(Nys-coated AgNPs)作为更具生物相容性的义齿树脂材料的抗真菌和抗菌作用。使用紫外-可见分光光度计、扫描电子显微镜、能谱仪和动态光散射仪合成和表征了 AgNPs 和 Nys-coated AgNPs。制备了三种不同浓度的制霉菌素、AgNPs 和 Nys-coated AgNPs(0.1%、1%和 10%w/w)的聚甲基丙烯酸甲酯(PMMA)标本。分别研究了圆盘的吸水性和药物释放,时间分别为 14 天和 120 小时。采用固滴技术评估了样品的亲水性和疏水性及其接触角。采用悬滴法评估了样品的亲水和疏水性及其接触角。用悬滴法评估了样品的亲水和疏水性及其接触角。用悬滴法评估了样品的亲水和疏水性及其接触角。研究了制备的圆盘对白色念珠菌和变形链球菌的抗真菌和抗菌活性。添加 Nys-coated AgNPs 将圆盘的接触角从 67°降低至 49°。此外,不同圆盘的吸水率与对照组无显著差异。结果表明,PMMA 中 10%w/w 的 Nys-coated AgNPs 比 Nys 复合材料(10%w/w)更有效地抑制白色念珠菌的生长。此外,Nys-coated AgNPs 复合材料以及含 AgNPs 的复合材料对变形链球菌表现出相当的抗菌活性。Nys-coated AgNPs(10%w/w)对 NIH3T3 细胞没有毒性作用。总之,Nys-coated AgNPs 可以被认为是一种很好的候选材料,可用于解决慢性口腔疾病。