义齿基托树脂的微生物粘附倾向:系统性综述

Firas K. Alqarawi, Mohammed M Gad
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引用次数: 0

摘要

数码义齿制作已成为传统义齿制作的替代方法。然而,与传统方法相比,对新引入的数字化义齿制作方法的抗菌性能的审查却被忽视了。研究目的:本综述旨在比较各种 CAD-CAM 减法(铣削)、加法(3D 打印)传统义齿基底树脂的抗粘连性能。为了回答所提出的 PICO 问题:"CAD-CAM铣制和三维打印义齿基托树脂与传统义齿基托树脂相比,是否具有抗微生物粘附性?截至 2023 年 12 月,我们在 PubMed、Web of Sciences 和 Scopus 数据库中检索了所有调查了与传统义齿基托树脂相比,CAD-CAM 铣制和 3D 打印义齿基托树脂的微生物粘附性的体外研究。与传统树脂和三维打印树脂相比,CAD-CAM 铣制树脂明显降低了微生物粘附性,而三维打印树脂则显示出较高的微生物粘附倾向。在三维打印树脂中添加抗真菌剂可明显减少白僵菌的附着。在三维打印参数方面,打印方向影响粘附性,而打印技术对微生物粘附性没有影响。CAD-CAM 铣制的义齿基托树脂表现出较低的微生物粘附性。而三维打印树脂则显示出较高的白僵菌粘附倾向。通过加入抗真菌剂或改变打印参数,可以提高三维打印树脂的抗粘附性能,但还需要进一步的研究来验证这些改良措施。
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Tendency of microbial adhesion to denture base resins: a systematic review
Digital denture fabrication became an alternative method to conventional denture fabrication. However reviewing the antimicrobial performance of newly introduced digital fabrication methods in comparison to the conventional method is neglected. Aim of study: this review was to compare the antiadherence properties of various CAD-CAM subtractive (milled), additive (3D printed) conventional denture base resins. In order to answer the developed PICO question: “Does CAD-CAM milled and 3D printed denture base resins have microbiological antiadherence properties over the conventional ones?” We included comparative studies on digitally fabricated Denture base resins with conventionally fabricated one in term of microbial adhesion.All in vitro studies investigated the microbial adherence to CAD-CAM milled and 3D printed denture base resins in comparison to conventional were searched in the PubMed, Web of Sciences, and Scopus databases up to December 2023.Fifteen studies have been investigated the microbial adhesion to milled and 3D printed denture base resins. CAD-CAM milled resins significantly decreased the microbial adhesion when compared with the conventional resins and 3D printed resins, while the later showed a high tendency for microbial adhesion. The addition of antifungal agents to 3D printed resins significantly reduced C. albicans adhesion. In terms of 3D printing parameters, printing orientation affected adherence while printing technology had no effect on microbial adhesion.Denture base materials and fabrication methods significantly affect the microbial adhesion. CAD-CAM milled denture base resins demonstrated low microbial adhesion. 3D-printed resins showed high tendency for C. albicans adhesion. The antiadherent properties of 3D-printed resins can be improved by incorporating antifungal agents or changing the printing parameters, but further investigations are required to validate these modifications.
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