Cybulska Anna, Mańka-Malara Katarzyna, Krasowski Michał, Sokołowski Jerzy, Zwoliński Jakub, Rafalski Andrzej, Kostrzewa-Janicka Jolanta
Department of Prosthodontics, Medical University of Warsaw, 02-091 Warsaw, Poland.
Department of Orthodontics, Medical University of Warsaw, 02-091 Warsaw, Poland.
Polymers (Basel). 2025 May 7;17(9):1279. doi: 10.3390/polym17091279.
The use of 3D printing in the fabrication of immediate prosthetic restorations requires the possibility of sterilization. This study aimed to evaluate the effects of different sterilization methods on the parameters of 3D-printing materials for dental prosthesis plates compared to conventional acrylic material. Forty-four samples were prepared for each tested material: Denture 3D+ (NextDent, The Netherlands), Denturetec (Saremco, Switzerland), Optiprint Laviva (Dentona, Germany), and Rapid Simplified (Vertex Dental, Netherlands). The impact strength of the samples was tested in a HIT 5.5P instrument (Zwick Roell, Germany) after three sterilization methods (pressurized steam, ethylene oxide, and radiation) and without sterilization as a control group. Significantly higher energy and impact strength were recorded for the conventional acrylic material. For Nextdent material, the recommended method of sterilization in terms of impaction is autoclave or ethylene oxide sterilization, Saremco-ethylene oxide sterilization, and Denton-ethylene oxide or radiation sterilization. Conventional acrylic material has a higher impact strength than 3D-printed material, which may encourage the selection of this material for restorations requiring higher fracture strength. The possibility of sterilizing the Nextdent 3D-printed material in the autoclave without worsening its durability makes it a recommended choice for digital clinical practice.
在即刻义齿修复体制造中使用3D打印需要具备灭菌的可能性。本研究旨在评估与传统丙烯酸材料相比,不同灭菌方法对用于义齿基托的3D打印材料参数的影响。为每种测试材料制备了44个样本:义齿3D+(荷兰NextDent公司)、义齿技术(瑞士Saremco公司)、Optiprint Laviva(德国Dentona公司)和快速简化版(荷兰Vertex Dental公司)。在三种灭菌方法(高压蒸汽、环氧乙烷和辐射)处理后,以及未进行灭菌作为对照组的情况下,使用HIT 5.5P仪器(德国Zwick Roell公司)测试样本的冲击强度。传统丙烯酸材料记录到显著更高的能量和冲击强度。对于NextDent材料,就冲击而言,推荐的灭菌方法是高压灭菌或环氧乙烷灭菌,Saremco材料为环氧乙烷灭菌,Denton材料为环氧乙烷或辐射灭菌。传统丙烯酸材料的冲击强度高于3D打印材料,这可能促使在需要更高断裂强度的修复中选择这种材料。NextDent 3D打印材料能够在高压灭菌器中灭菌而不降低其耐久性,这使其成为数字临床实践的推荐选择。