Paszkiewicz Sandra, Lesiak Paweł, Walkowiak Konrad, Irska Izabela, Miądlicki Karol, Królikowski Marcin, Piesowicz Elżbieta, Figiel Paweł
Faculty of Mechanical Engineering and Mechatronics, West Pomeranian University of Technology, 70-310 Szczecin, Poland.
Tele-Fonika Kable S.A., Factory in Bydgoszcz, 85-957 Bydgoszcz, Poland.
Polymers (Basel). 2023 Sep 8;15(18):3706. doi: 10.3390/polym15183706.
Regarding the dynamic development of 3D printing technology, as well as its application in a growing part of industries, i.e., in the automotive industry, construction industry, medical industry, etc., there is a notable opportunity for its application in producing dental implants, which presents a promising alternative to traditional implant manufacturing methods. The medical industry is very restrictive regarding the applied materials, and it is necessary to use materials that exhibit very good mechanical and thermal parameters, show clinical indifference and biocompatibility, are non-allergenic and non-cancerous, and are likely to sterilize. Such materials are poly(aryl-ether-ketone)s (PAEK)s, mainly poly(ether-ether-ketone) (PEEK) and poly(ether-ketone-ketone) (PEKK), that are found to be high-performance polymers and can be defined as materials that retain their functionality even in extreme conditions. In the present paper, two types of PEEKs and PEKK were compared regarding their structural, mechanical, and thermal properties along with the biological activity toward selected strains. The tested samples were obtained with Fused Deposition Modeling (FDM) technology. The PEKK, after heat treatment, exhibits the most promising mechanical properties as well as less bacterial adhesion on its surface when compared to both PEEKs. Consequently, among the evaluated materials, PEKK after heat treatment stands out as the optimal selection for a dental prosthesis.
关于3D打印技术的动态发展及其在越来越多行业中的应用,即汽车工业、建筑业、医疗行业等,其在生产牙科植入物方面存在显著的应用机会,这为传统植入物制造方法提供了一种有前景的替代方案。医疗行业对所应用的材料非常严格,必须使用具有非常好的机械和热学参数、表现出临床无反应性和生物相容性、无致敏性和无致癌性且易于灭菌的材料。这类材料是聚(芳基醚酮)(PAEK),主要是聚醚醚酮(PEEK)和聚醚酮酮(PEKK),它们被发现是高性能聚合物,可定义为即使在极端条件下仍能保持其功能的材料。在本文中,比较了两种类型的PEEK和PEKK的结构、机械和热学性能以及对选定菌株的生物活性。测试样品是通过熔融沉积建模(FDM)技术获得的。与两种PEEK相比,PEKK在热处理后表现出最有前景的机械性能,并且其表面的细菌粘附较少。因此,在评估的材料中,热处理后的PEKK作为牙科假体的最佳选择脱颖而出。