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添加金属氧化物纳米粒子对热固化义齿基托树脂强度的影响:系统评价和体外研究荟萃分析的方案。

Effect of Addition of Metal Oxide Nanoparticles on the Strength of Heat-Cured Denture Base Resins: Protocol for Systematic Review and Meta-Analysis of In Vitro Studies.

机构信息

Department of Prosthodontics Crown and Bridge, Mahatma Gandhi Dental College and Hospital, Jaipur, India.

Department of Prosthodontics and Crown and Bridge, Sinhgad Dental College and Hospital, Pune, India.

出版信息

JMIR Res Protoc. 2024 Sep 25;13:e59999. doi: 10.2196/59999.

Abstract

BACKGROUND

Metal oxide nanoparticle-reinforced polymethyl methacrylate (PMMA) has been shown to improve mechanical properties, such as strength. Different types of metal oxide nanoparticles have been used previously, but the comparative effect on the strength of heat-cured denture base resins remains unclear.

OBJECTIVE

This is a protocol for a systematic review and meta-analysis that will aim to pool evidence to compare and analyze the effects of the addition of different metal oxide nanoparticles, with varied sizes and concentrations, on the strength (flexural, impact, transverse, compressive tensile strength, and fracture toughness) of heat-cured PMMA. In addition, this review aims to analyze methodological factors, such as adherence to testing and sample-making guidelines, and the effects of surface treatments of the nanoparticles on the strength of heat-cured denture base resins.

METHODS

The protocol has been registered in the Open Science Framework. Search strategies to identify studies on the effect of metal oxide nanoparticles on the strength of heat-cured PMMA were developed by the subject matter expert in library science. Following this, a systematic search of 5 electronic databases (PubMed [NCBI], Scopus [Elsevier], Cochrane Library [Wiley], CINAHL Plus with Full Text [EBSCO], and Dimensions Free Web App) was conducted to retrieve in vitro studies published in English from January 2012 to October 2023. Along with this citation chasing, other online sources and gray literature were also searched. Furthermore, papers will be screened, and appropriate data elements will be extracted in a standardized manner. A risk-of-bias assessment will be performed using a modified Cochrane Risk of Bias Tool. A meta-analysis will be performed using a random-effects model.

RESULTS

Search in databases resulted in 1837 papers, of which 1752 were duplicates, leaving 85 records that were screened for titles and abstracts based on the eligibility criteria. A similar search run on other online sources identified 129 papers that will be further analyzed for inclusion. The study was initiated in November 2023 and research questions and search strategies were formulated. The proposed study is expected to be completed by December 2024.

CONCLUSIONS

This systematic review will comprehensively analyze the effects of the incorporation of metal oxide nanoparticles in heat-cured denture base resins on the strength of the material. We anticipate gaining a deeper understanding of the effects and method of use of metal oxide nanoparticles to improve the strength of PMMA denture base resins.

INTERNATIONAL REGISTERED REPORT IDENTIFIER (IRRID): PRR1-10.2196/59999.

摘要

背景

已证实金属氧化物纳米粒子增强聚甲基丙烯酸甲酯(PMMA)可提高强度等机械性能。先前已使用过不同类型的金属氧化物纳米粒子,但它们对热固性义齿基托树脂强度的影响仍不清楚。

目的

这是一项系统评价和荟萃分析的方案,旨在汇集证据以比较和分析添加不同金属氧化物纳米粒子(具有不同大小和浓度)对热固性 PMMA 强度(弯曲、冲击、横向、抗压拉伸强度和断裂韧性)的影响。此外,本综述旨在分析方法学因素,例如对测试和样本制作指南的遵守情况,以及纳米粒子表面处理对热固性义齿基托树脂强度的影响。

方法

该方案已在开放科学框架中注册。图书馆学专家制定了用于确定金属氧化物纳米粒子对热固性 PMMA 强度影响的研究的搜索策略。在此之后,对 5 个电子数据库(PubMed [NCBI]、Scopus [Elsevier]、Cochrane Library [Wiley]、CINAHL Plus with Full Text [EBSCO] 和 Dimensions Free Web App)进行了系统搜索,以检索 2012 年 1 月至 2023 年 10 月期间以英文发表的关于金属氧化物纳米粒子对热固性 PMMA 强度影响的体外研究。除了这些引文追踪,还搜索了其他在线来源和灰色文献。此外,还将对论文进行筛选,并以标准化方式提取适当的数据元素。使用改良的 Cochrane 偏倚风险工具进行风险评估。使用随机效应模型进行荟萃分析。

结果

在数据库中的搜索产生了 1837 篇论文,其中 1752 篇是重复的,留下 85 篇记录根据纳入标准进行标题和摘要筛选。对其他在线来源进行类似搜索,确定了 129 篇将进一步分析纳入的论文。该研究于 2023 年 11 月启动,并制定了研究问题和搜索策略。预计到 2024 年 12 月完成研究。

结论

本系统评价将全面分析金属氧化物纳米粒子在热固性义齿基托树脂中的掺入对材料强度的影响。我们预计将更深入地了解金属氧化物纳米粒子的影响和使用方法,以提高 PMMA 义齿基托树脂的强度。

国际注册报告标识符(IRRID):PRR1-10.2196/59999。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c1bb/11464938/1202e9aa9fef/resprot_v13i1e59999_fig1.jpg

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