Arun Divya, Adikari Mudiyanselage Dulanja, Gulam Mohamed Rumana, Liddell Michael, Monsur Hassan Nur Mohammad, Sharma Dileep
College of Medicine and Dentistry, James Cook University, 14-88 McGregor Road, Smithfield, QLD 4878, Australia.
College of Science and Engineering, James Cook University, 14-88 McGregor Road, Smithfield, QLD 4878, Australia.
Materials (Basel). 2020 Dec 24;14(1):40. doi: 10.3390/ma14010040.
A promising approach to improve the poor antibacterial properties of dental composite resins has been the addition of metal oxide nanoparticles into the resin matrix. This systematic review aimed to determine whether the addition of zinc oxide nanoparticles (ZnO-NPs) improves the antibacterial properties of direct dental composite resins. This review was conducted in accordance with the Preferred Reporting Items for Systematic Reviews and Meta-Analyses (PRISMA) guidelines and registered with the PROSPERO database: CRD42019131383. A systematic literature search was conducted using the following databases: Medline (Ovid), the Cochrane Library, SCOPUS, CINAHL, Web of Science, Trove, Google Scholar, World Cat, and OpenGrey. The initial search retrieved 3178 results, which were then screened against inclusion and exclusion criteria, resulting in a total of four studies that were eligible for qualitative synthesis within this review. All the included studies were in vitro non-randomized post-test design experimental studies. A lack of congruity in the results obtained from these studies that used different tests to evaluate antibacterial activity was evident. Although some studies demonstrated a significant improvement of antibacterial properties in composites containing at least 1% ZnO-NPs (wt %), they are unlikely to present any clear clinical advantage due to the short lifetime of observed antibacterial properties.
一种改善牙科复合树脂抗菌性能不佳问题的有前景的方法是将金属氧化物纳米颗粒添加到树脂基体中。本系统评价旨在确定添加氧化锌纳米颗粒(ZnO-NPs)是否能改善直接牙科复合树脂的抗菌性能。本评价按照系统评价和Meta分析的首选报告项目(PRISMA)指南进行,并在PROSPERO数据库注册:CRD42019131383。使用以下数据库进行系统的文献检索:Medline(Ovid)、Cochrane图书馆、SCOPUS、CINAHL、科学网、Trove、谷歌学术、世界书目数据库和OpenGrey。初步检索获得3178条结果,然后根据纳入和排除标准进行筛选,最终共有四项研究符合本评价中定性合成的条件。所有纳入研究均为体外非随机试验后设计的实验研究。使用不同测试评估抗菌活性的这些研究所得结果缺乏一致性是显而易见的。尽管一些研究表明,在含有至少1%(重量)ZnO-NPs的复合材料中,抗菌性能有显著改善,但由于观察到的抗菌性能持续时间短,它们不太可能呈现出任何明显的临床优势。