Aldegheishem Alhanoof, AlDeeb Modhi, Al-Ahdal Khold, Helmi Mohammad, Alsagob Eman I
Clinical Dental Sciences Department, College of Dentistry, Princess Nourah Bint Abdulrahman University, Riyadh 11671, Saudi Arabia.
Department of Prosthodontic Dental Science, College of Dentistry, King Saud University, Riyadh 11451, Saudi Arabia.
Polymers (Basel). 2021 Sep 13;13(18):3083. doi: 10.3390/polym13183083.
Knowledge about the influence of fillers in denture base resin is vague. This systematic review aimed to report the reinforcing effect of fillers on the mechanical properties of denture base resin by following PRISMA guidelines. Two electronic databases (Pubmed/Medline & Web of Science) were searched for articles using the keywords: fibers in denture base, fillers in denture base, and reinforcement of denture base. Laboratory studies complying with the inclusion criteria were reviewed according to the set protocol. The established focus question was: "Do reinforcing fillers positively influence the mechanical properties of polymethyl methacrylate (PMMA) heat polymerized denture base material?" A total of twenty-nine relevant papers qualified for final inclusion. Of these, 24 were determined to have a moderate risk of bias. Micron or nano-sized metal/metal oxides particles and glass fibers were the frequently used reinforcing agents. The trend of evaluating fractural strength (FS) was common. Most of the studies limited the use of reinforcing agents up to 5 wt.%. FS, fracture toughness (FT), and impact strength (IS) tend to increase if the fillers are chemically bonded and well-dispersed in denture base resin. Though fillers with a higher elastic modulus increase the hardness of the reinforced denture base resin, they compromise other mechanical properties. Well-dispersed lower filler loading PMMA denture base resin can enhance the FS, FT, and other related mechanical properties.
关于义齿基托树脂中填料影响的相关知识尚不明确。本系统评价旨在遵循PRISMA指南,报告填料对义齿基托树脂力学性能的增强作用。通过使用关键词“义齿基托中的纤维”、“义齿基托中的填料”以及“义齿基托的增强”,在两个电子数据库(PubMed/Medline和Web of Science)中检索相关文章。根据既定方案对符合纳入标准的实验室研究进行综述。确立的核心问题是:“增强填料是否对热聚合聚甲基丙烯酸甲酯(PMMA)义齿基托材料的力学性能有积极影响?”共有29篇相关论文符合最终纳入标准。其中,24篇被判定存在中度偏倚风险。微米级或纳米级金属/金属氧化物颗粒以及玻璃纤维是常用的增强剂。评估断裂强度(FS)的趋势较为常见。大多数研究将增强剂的用量限制在5 wt.%以内。如果填料在义齿基托树脂中化学键合且分散良好,FS、断裂韧性(FT)和冲击强度(IS)往往会增加。尽管具有较高弹性模量的填料会提高增强义齿基托树脂的硬度,但它们会损害其他力学性能。分散良好的低填料含量PMMA义齿基托树脂可提高FS、FT及其他相关力学性能。