Beenish Haider, Mehreen Imran, M. Raza, Zudia Riaz, A. Hanif, Sadia Akram
{"title":"Antifungal Effect of Silver Nano Particles Coating on Denture Base Specimens Made of Acrylic Resin","authors":"Beenish Haider, Mehreen Imran, M. Raza, Zudia Riaz, A. Hanif, Sadia Akram","doi":"10.25301/jpda.312.59","DOIUrl":null,"url":null,"abstract":"OBJECTIVE: The present study was under taken to determine the anti-fungal effect of Silver Nano partial coating in concentrations of 0.1%, 0.2%, 0.5% and 1% on heat cure acrylic denture through diffusion disc method. Poly methyl methacrylate (PMMA) or simply acrylic is most commonly used material for construction of complete dentures. Denture stomatitis is an inflammatory disorder of oral mucosa, frequently observed in denture wearers. The unpolished intaglio surface of PMMA base dentures coupled with adverse conditions such as poor hygiene, dry mouth and compromised immune system leads to denture related stomatitis in 50-70% of complete denture wearers. Antifungal agents such as silver have been added to acrylic denture bases to in part self-disinfect property. METHODOLOGY: The supplied modeling wax sheet was cut in to 25 specimens of dimensions 10x10x 2mm with help of wax knife. The wax sheet was invested in stone plaster with in metal flask using open flasking method for mould formation. Heat cured acrylic resin polymer and monomer (Meadway Royale Heat Cure, MR. Dental, and UK) was mixed according to manufacturer's instructions of 2.5gm powder to 1ml monomer. The mixed acrylic was packed in dough stage followed by pressure packing in hydraulic bench press for 30 minutes under 9.8 MPa. Curing was done by placing the flask in water at room temperature until boiling. It remained in boiling water for 45 minutes and then allowed to cool down in water bath. A total of 25 acrylic plates were recovered from the flask and divided into five groups. Group A have no coating , group B coated with 0.1% sliver nano particles, group C coated with 0.2% silver nano particles, group D coated with 0.5% silver nano particles and group E coated with 1% silver nano particles solution. Each specimen was cut in to 6mm disc by Laser Engraving Machine. These discs were utilized for calculating zone of inhibition through diffusion disc method in agar media. RESULTS: The diameter of zone of inhibition increased with the increasing concentrations of silver nano particles. When the concentration of silver nano particles was 1%, the zone of inhibition size was maximum (20.48mm). When the concentration was 0.1%, the size of zone of inhibition was minimum (10.02mm) .This difference was statistically found to be highly significant (0.005). CONCLUSION: This study results demonstrate that silver nano-particles have good antifungal activity against Candida Albicans when used as surface coating. This antifungal property is directly influenced by the concentration of silver nano particles used. KEY WORDS: Antifungal property, Silver nano particles (AgNPs), Candida Albicans (CA).","PeriodicalId":191918,"journal":{"name":"Journal of the Pakistan Dental Association","volume":"2 1","pages":"0"},"PeriodicalIF":0.0000,"publicationDate":"2022-07-12","publicationTypes":"Journal Article","fieldsOfStudy":null,"isOpenAccess":false,"openAccessPdf":"","citationCount":"0","resultStr":null,"platform":"Semanticscholar","paperid":null,"PeriodicalName":"Journal of the Pakistan Dental Association","FirstCategoryId":"1085","ListUrlMain":"https://doi.org/10.25301/jpda.312.59","RegionNum":0,"RegionCategory":null,"ArticlePicture":[],"TitleCN":null,"AbstractTextCN":null,"PMCID":null,"EPubDate":"","PubModel":"","JCR":"","JCRName":"","Score":null,"Total":0}
引用次数: 0
Abstract
OBJECTIVE: The present study was under taken to determine the anti-fungal effect of Silver Nano partial coating in concentrations of 0.1%, 0.2%, 0.5% and 1% on heat cure acrylic denture through diffusion disc method. Poly methyl methacrylate (PMMA) or simply acrylic is most commonly used material for construction of complete dentures. Denture stomatitis is an inflammatory disorder of oral mucosa, frequently observed in denture wearers. The unpolished intaglio surface of PMMA base dentures coupled with adverse conditions such as poor hygiene, dry mouth and compromised immune system leads to denture related stomatitis in 50-70% of complete denture wearers. Antifungal agents such as silver have been added to acrylic denture bases to in part self-disinfect property. METHODOLOGY: The supplied modeling wax sheet was cut in to 25 specimens of dimensions 10x10x 2mm with help of wax knife. The wax sheet was invested in stone plaster with in metal flask using open flasking method for mould formation. Heat cured acrylic resin polymer and monomer (Meadway Royale Heat Cure, MR. Dental, and UK) was mixed according to manufacturer's instructions of 2.5gm powder to 1ml monomer. The mixed acrylic was packed in dough stage followed by pressure packing in hydraulic bench press for 30 minutes under 9.8 MPa. Curing was done by placing the flask in water at room temperature until boiling. It remained in boiling water for 45 minutes and then allowed to cool down in water bath. A total of 25 acrylic plates were recovered from the flask and divided into five groups. Group A have no coating , group B coated with 0.1% sliver nano particles, group C coated with 0.2% silver nano particles, group D coated with 0.5% silver nano particles and group E coated with 1% silver nano particles solution. Each specimen was cut in to 6mm disc by Laser Engraving Machine. These discs were utilized for calculating zone of inhibition through diffusion disc method in agar media. RESULTS: The diameter of zone of inhibition increased with the increasing concentrations of silver nano particles. When the concentration of silver nano particles was 1%, the zone of inhibition size was maximum (20.48mm). When the concentration was 0.1%, the size of zone of inhibition was minimum (10.02mm) .This difference was statistically found to be highly significant (0.005). CONCLUSION: This study results demonstrate that silver nano-particles have good antifungal activity against Candida Albicans when used as surface coating. This antifungal property is directly influenced by the concentration of silver nano particles used. KEY WORDS: Antifungal property, Silver nano particles (AgNPs), Candida Albicans (CA).
目的:采用扩散盘法测定0.1%、0.2%、0.5%、1%浓度的纳米银部分涂层对热固化丙烯酸义齿的抑菌效果。聚甲基丙烯酸甲酯(PMMA)或简单的丙烯酸是最常用的材料,用于建设全口义齿。假牙口腔炎是口腔黏膜的一种炎症性疾病,常见于假牙佩戴者。PMMA基托假牙表面未抛光,再加上卫生条件差、口干和免疫系统受损等不利条件,导致50-70%的全口义齿佩戴者出现假牙相关的口炎。抗真菌剂如银已添加到丙烯酸义齿基托部分自消毒性能。方法:将所提供的模型蜡片用蜡刀切割成25个尺寸为10x10x2mm的样品。用开瓶法将蜡片浸在石膏液中,在金属烧瓶中成型。热固化丙烯酸树脂聚合物和单体(Meadway Royale Heat Cure, MR. Dental, and UK)按照制造商的说明将2.5gm粉末与1ml单体混合。混合丙烯酸在面团阶段进行填充,然后在9.8 MPa的压力下在液压台式压力机中压力填充30分钟。固化是通过将烧瓶放在室温的水中直到沸腾来完成的。它在沸水中保持45分钟,然后在水浴中冷却。从烧瓶中共回收了25块亚克力板,并将其分为五组。A组未涂覆,B组涂覆0.1%银纳米颗粒,C组涂覆0.2%银纳米颗粒,D组涂覆0.5%银纳米颗粒,E组涂覆1%银纳米颗粒溶液。每个标本用激光雕刻机切割成6mm的圆盘状。利用这些圆盘计算琼脂培养基中扩散圆盘法的抑制区。结果:随着银纳米颗粒浓度的增加,抑制带的直径增大。当银纳米颗粒浓度为1%时,抑制带尺寸最大(20.48mm)。当浓度为0.1%时,抑制区大小最小(10.02mm),差异有统计学意义(0.005)。结论:纳米银颗粒作为表面涂层对白色念珠菌具有良好的抗真菌活性。这种抗真菌性能直接受到银纳米颗粒浓度的影响。关键词:抗真菌性能;银纳米颗粒(AgNPs);白色念珠菌