Tecnologica Research Institute - Marrelli Health, 88900 Crotone, Italy.
Department of Neurosciences, Reproductive and Odontostomatological Sciences, Postgraduate School of Oral Surgery, University "Federico II" of Naples, via S. Pansini 5, 80131 Naples, Italy.
Int J Med Sci. 2023 Apr 2;20(5):639-651. doi: 10.7150/ijms.82297. eCollection 2023.
Zirconia and polyetheretherketone (PEEK) are two biomaterials widely investigated as substitute for metals in oral prosthetic rehabilitation. To achieve a proper biomechanical behavior, the prosthetic biomaterials must ensure a good resistance to loads, as this is a crucial characteristic enabling their use in dental applications. The aim of this study was to investigate differences in the fracture resistance of different biomaterials in an experimental environment: fixed partial dentures (FPDs) screwed in a prototype of biomimetic mandible. 10 Samples of FPDs were allocated in 2 groups (A and B): Group A (n=5) involved FPDs in zirconia-ceramic, and Group B (n=5) involved FPDs in PEEK-composite. The samples were loaded by means of a three-point bending mechanical test, and the load to fracture has been evaluated generating a point-by-point graphics (speed/load and time/deformation). The samples were further analyzed by micro-computed tomography (micro-CT) and described under experimental loading conditions. Zirconia-ceramic FDPs were the samples reporting the worst results, showing a lower value of vertical displacement with respect to PEEK-based samples. The micro-CT results have further confirmed the preliminary results previously described. This study aims to give analytic data on the reliability of PEEK as a reliable and strong biomaterial for prosthetic treatments.
氧化锆和聚醚醚酮(PEEK)是两种广泛研究的生物材料,作为口腔修复体替代金属的材料。为了实现适当的生物力学性能,修复体生物材料必须确保对负荷有良好的抵抗力,因为这是使其在牙科应用中使用的关键特征。本研究的目的是在实验环境中研究不同生物材料的断裂阻力差异:旋入仿生下颌原型中的固定局部义齿(FPD)。将 10 个 FPD 样本分配到 2 个组(A 和 B)中:组 A(n=5)包括氧化锆陶瓷 FPD,组 B(n=5)包括 PEEK 复合材料 FPD。通过三点弯曲机械试验对样本进行加载,并通过逐点图形(速度/负载和时间/变形)评估断裂负载。对样本进行进一步的微计算机断层扫描(micro-CT)分析,并在实验加载条件下进行描述。氧化锆陶瓷 FDP 是报告结果最差的样本,与基于 PEEK 的样本相比,其垂直位移值较低。微 CT 结果进一步证实了之前描述的初步结果。本研究旨在提供关于 PEEK 作为一种可靠且坚固的修复体治疗用生物材料的可靠性的分析数据。