Influence of 3D-Printing Parameters and Characteristics of Complete Denture Bases on Evaluated Properties: A Scoping Review.

IF 2.1 4区 医学 Q2 DENTISTRY, ORAL SURGERY & MEDICINE
Ana Beatriz Vilela Teixeira, Andréa Cândido Dos Reis
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引用次数: 7

Abstract

Purpose: To verify the parameters and characteristics evaluated in 3D-printed complete denture (CD) bases and how they influence CD properties.

Materials and methods: This work was registered in Open Science Framework (osf.io/4um6v) and followed the PRISMA Extension for Scoping Reviews. A search of peer-reviewed articles published up to April 9, 2020, was performed on the PubMed, LILACS, Cochrane Library, and Science Direct databases. The review question based on the PCC (population, concept, and context) was: What printing parameters and characteristics of CD bases can influence their properties?

Results: The database search resulted in 1,945 articles, and the initial screening was carried out in 1,390 articles, 17 of which were selected for inclusion in this review. The present authors verified that cleaning the prosthesis with alcohol after printing followed by a postcuring cycle influences biocompatibility and residual monomers. The printing angle influences physicomechanical properties, microbial adhesion, and tissue adaptation. Accuracy is influenced by layer thickness and manufacturing technique, which also influences retention and tissue adaptation. The incorporation of antimicrobial agents influences physicomechanical properties and antimicrobial activity. The method of union between the denture base and teeth influences mechanical strength.

Conclusions: Printed denture bases showed good adaptation to tissues and accuracy with 100-µm layer thickness, but the base must be cleaned in ethanol followed by postcuring for better biocompatibility. Nano- and microparticles can be added to provide antimicrobial activity and better resistance. The printing angle and mechanical properties must be better evaluated. Int J Prosthodont 2023;36:620-629.

全口义齿基底的3D打印参数和特征对评估性能的影响:范围界定综述。
目的:验证3D打印全口义齿(CD)基托的参数和特征,以及它们如何影响CD的性能。材料和方法:这项工作在开放科学框架(osf.io/4um6v)中注册,并遵循PRISMA范围审查扩展。在PubMed、LILACS、Cochrane Library和Science Direct数据库上搜索了截至2020年4月9日发表的同行评审文章。基于PCC(群体、概念和上下文)的审查问题是:CD碱基的哪些印刷参数和特征会影响其性质?结果:数据库检索得到1945篇文章,对1390篇文章进行了初步筛选,其中17篇被选入本综述。本作者证实,在印刷后用酒精清洁假体,然后进行后固化循环会影响生物相容性和残留单体。印刷角度影响物理机械性能、微生物粘附和组织适应。精度受层厚度和制造技术的影响,这也影响保留和组织适应。抗微生物剂的掺入影响物理机械性能和抗微生物活性。义齿基托和牙齿之间的结合方法影响机械强度。结论:印刷义齿基托具有良好的组织适应性和准确性,层厚为100µm,但必须在乙醇中清洗基托,然后进行后固化,以获得更好的生物相容性。可以添加纳米和微米颗粒以提供抗菌活性和更好的耐药性。必须更好地评估打印角度和机械性能。Int J Prostodont 2023;36:620-629。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
International Journal of Prosthodontics
International Journal of Prosthodontics 医学-牙科与口腔外科
CiteScore
3.20
自引率
4.30%
发文量
82
审稿时长
6-12 weeks
期刊介绍: Official Journal of the European Association for Osseointegration (EAO), the International College of Prosthodontists (ICP), the German Society of Prosthodontics and Dental Materials Science (DGPro), and the Italian Academy of Prosthetic Dentistry (AIOP) Prosthodontics demands a clinical research emphasis on patient- and dentist-mediated concerns in the management of oral rehabilitation needs. It is about making and implementing the best clinical decisions to enhance patients'' quality of life via applied biologic architecture - a role that far exceeds that of traditional prosthetic dentistry, with its emphasis on materials and techniques. The International Journal of Prosthodontics is dedicated to exploring and developing this conceptual shift in the role of today''s prosthodontist, clinician, and educator alike. The editorial board is composed of a distinguished team of leading international scholars.
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