Goracci Cecilia, Juloski Jovana, D'Amico Claudio, Balestra Dario, Volpe Alessandra, Juloski Jelena, Vichi Alessandro
Department of Medical Biotechnologies, University of Siena, 53100 Siena, Italy.
Department of Orthodontics, School of Dental Medicine, University of Belgrade, 11000 Belgrade, Serbia.
Materials (Basel). 2023 Mar 8;16(6):2166. doi: 10.3390/ma16062166.
The review aimed at analyzing the evidence available on 3D printable materials and techniques used for the fabrication of orthodontic appliances, focusing on materials properties that are clinically relevant. MEDLINE/PubMed, Scopus, and Cochrane Library databases were searched. Starting from an initial retrieval of 669 citations, 47 articles were finally included in the qualitative review. Several articles presented proof-of-concept clinical cases describing the digital workflow to manufacture a variety of appliances. Clinical studies other than these case reports are not available. The fabrication of aligners is the most investigated application of 3D printing in orthodontics, and, among materials, Dental LT Clear Resin (Formlabs) has been tested in several studies, although Tera Harz TC-85 (Graphy) is currently the only material specifically marketed for direct printing of aligners. Tests of the mechanical properties of aligners materials lacked homogeneity in the protocols, while biocompatibility tests failed to assess the influence of intraoral conditions on eluents release. The aesthetic properties of 3D-printed appliances are largely unexplored. The evidence on 3D-printed metallic appliances is also limited. The scientific evidence on 3D printable orthodontic materials and techniques should be strengthened by defining international standards for laboratory testing and by starting the necessary clinical trials.
本综述旨在分析用于制造正畸矫治器的3D打印材料和技术的现有证据,重点关注与临床相关的材料特性。检索了MEDLINE/PubMed、Scopus和Cochrane图书馆数据库。从最初检索到的669篇文献开始,最终有47篇文章被纳入定性综述。几篇文章展示了概念验证临床病例,描述了制造各种矫治器的数字工作流程。除了这些病例报告外,没有其他临床研究。矫治器的制造是3D打印在正畸领域中研究最多的应用,在材料方面,牙科LT透明树脂(Formlabs)已在多项研究中进行了测试,尽管Tera Harz TC - 85(Graphy)是目前唯一专门用于直接打印矫治器的材料。矫治器材料的力学性能测试在方案上缺乏一致性,而生物相容性测试未能评估口腔内条件对洗脱液释放的影响。3D打印矫治器的美学特性在很大程度上尚未得到探索。关于3D打印金属矫治器的科学证据也很有限。应通过定义实验室测试的国际标准并开展必要的临床试验来加强关于3D打印正畸材料和技术的科学证据。