Murilo Campos, T. T. Oliveira, A. Botelho, A. Reis
{"title":"Mechanical, Chemical, and Biological Properties of 3D-Printed Abutments: A Systematic Review","authors":"Murilo Campos, T. T. Oliveira, A. Botelho, A. Reis","doi":"10.1177/23202068221099772","DOIUrl":null,"url":null,"abstract":"Aim: A systematic review of the methods of 3D printing and the materials used so far for the manufacture of abutments was performed to evaluate whether their clinical use is indicated through the mechanical, chemical, and biological analyses carried out. Materials and Methods: An electronic search conducted by three independent reviewers was carried out in the PubMed, Web of Science, Cochrane Library, Science Direct, and Lilac databases. The inclusion criterion was researching articles in English that contained as subject the manufacturing of abutments through 3D printing/additive manufacturing. Any meta-analyses, reviews, book chapters, abstracts, letters, conferences papers, and studies without abutments printed were excluded. Results: We found 780 references, which after applying the exclusion criteria resulted in the final inclusion of seven articles for review. The studies had a high heterogeneity, showing different materials and methodologies to manufacture abutments, which makes a comparison between them difficult, and for this reason it was not possible to carry out a meta-analysis with the data found. Conclusions: Even with the limitations found in the present research, it is possible to conclude that printed abutments have adequate mechanical, chemical, and biological properties that can indicate their clinical use. 3D printing presents high accuracy and speed and can produce customized abutments according to each case.","PeriodicalId":43017,"journal":{"name":"Journal of Advanced Oral Research","volume":"29 1","pages":"167 - 175"},"PeriodicalIF":0.6000,"publicationDate":"2022-08-22","publicationTypes":"Journal Article","fieldsOfStudy":null,"isOpenAccess":false,"openAccessPdf":"","citationCount":"0","resultStr":null,"platform":"Semanticscholar","paperid":null,"PeriodicalName":"Journal of Advanced Oral Research","FirstCategoryId":"1085","ListUrlMain":"https://doi.org/10.1177/23202068221099772","RegionNum":0,"RegionCategory":null,"ArticlePicture":[],"TitleCN":null,"AbstractTextCN":null,"PMCID":null,"EPubDate":"","PubModel":"","JCR":"Q4","JCRName":"DENTISTRY, ORAL SURGERY & MEDICINE","Score":null,"Total":0}
引用次数: 0
Abstract
Aim: A systematic review of the methods of 3D printing and the materials used so far for the manufacture of abutments was performed to evaluate whether their clinical use is indicated through the mechanical, chemical, and biological analyses carried out. Materials and Methods: An electronic search conducted by three independent reviewers was carried out in the PubMed, Web of Science, Cochrane Library, Science Direct, and Lilac databases. The inclusion criterion was researching articles in English that contained as subject the manufacturing of abutments through 3D printing/additive manufacturing. Any meta-analyses, reviews, book chapters, abstracts, letters, conferences papers, and studies without abutments printed were excluded. Results: We found 780 references, which after applying the exclusion criteria resulted in the final inclusion of seven articles for review. The studies had a high heterogeneity, showing different materials and methodologies to manufacture abutments, which makes a comparison between them difficult, and for this reason it was not possible to carry out a meta-analysis with the data found. Conclusions: Even with the limitations found in the present research, it is possible to conclude that printed abutments have adequate mechanical, chemical, and biological properties that can indicate their clinical use. 3D printing presents high accuracy and speed and can produce customized abutments according to each case.
目的:对3D打印方法和迄今为止用于制造基台的材料进行系统回顾,通过进行机械、化学和生物学分析来评估其临床应用是否合适。材料和方法:由三位独立审稿人在PubMed、Web of Science、Cochrane Library、Science Direct和Lilac数据库中进行电子检索。纳入标准是包含通过3D打印/增材制造制造基台的主题的英文研究文章。所有meta分析、综述、书籍章节、摘要、信函、会议论文和未打印基台的研究均被排除在外。结果:我们发现了780篇文献,应用排除标准后最终纳入了7篇文献。这些研究具有高度的异质性,显示了不同的材料和方法来制造基台,这使得它们之间的比较变得困难,因此不可能对发现的数据进行荟萃分析。结论:即使在目前的研究中发现的局限性,也可以得出结论,打印基台具有足够的机械,化学和生物学特性,可以表明其临床应用。3D打印精度高,速度快,可根据不同情况定制基台。