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长期热机械加载后带聚醚酮酮(PEKK)基台的注塑两件式氧化锆种植体的可靠性

Reliability of an injection-moulded two-piece zirconia implant with PEKK abutment after long-term thermo-mechanical loading.

作者信息

Zhang Fei, Meyer Zur Heide Christoph, Chevalier Jérome, Vleugels Jozef, Van Meerbeek Bart, Wesemann Christian, Camargo Dos Santos Bernardo, Sergo Valter, Kohal Ralf-Joachim, Adolfsson Erik, Herklotz Insa, Spies Benedikt C

机构信息

KU Leuven (University of Leuven), Department of Oral Health Sciences, BIOMAT -Biomaterials Research Group & UZ Leuven (University Hospitals Leuven), Dentistry, Kapucijnenvoer 7 Blok a, B-3000, Leuven, Belgium; KU Leuven, Department of Materials Engineering, Kasteelpark Arenberg 44, B-3001, Heverlee, Belgium.

Charité - Universitätsmedizin Berlin, Corporate Member of Freie Universität Berlin, Humboldt-Universität zu Berlin, And Berlin Institute of Health, Department of Prosthodontics, Geriatric Dentistry and Craniomandibular Disorders, Aßmannshauser Str. 4-6, Berlin, Germany.

出版信息

J Mech Behav Biomed Mater. 2020 Oct;110:103967. doi: 10.1016/j.jmbbm.2020.103967. Epub 2020 Jul 9.

Abstract

Zirconia implants are appreciated in some clinical indications in light of their aesthetic appearance and good biocompatibility. The aim of this work was to evaluate the performance of a newly developed two-piece zirconia/polyether ketone ketone (PEKK) implant-abutment combination after long-term cyclic loading in a hydrothermal environment, using a new protocol adapted from two available ISO standards. Sixteen implants (n = 8/group) were embedded according to ISO 14801 and divided into two groups: implants in the Observational Group (OG) were cyclically loaded for 60 days (98 N, 10 million loading cycles, 2 Hz) in 85 °C water in a chewing simulator, while non-loaded/non-aged implants (as-received) constituted the Control Group (CG). After 4.7 million loading cycles, one OG implant fractured in the chewing simulator. The surviving implants were compared to CG implants by X-ray diffraction (XRD) to investigate potential ageing as suggested by ISO 13356, but also μ-Raman spectroscopy, Focused-Ion-Beam - Scanning-Electron-Microscopy (FIB-SEM), and load-to-fracture. Ageing was shown to have limited influence on the evaluated zirconia implant, with increased monoclinic content after loading/ageing being to a shallow transformed zone of ~2 μm at the implant surface. However, OG implants showed a significantly decreased fracture load of 751 ± 231 N (CG: 995 ± 161 N; p = .046). These values enable clinical application, but the fact that one failure was recorded during cyclic fatigue along with the significant decrease in strength after cyclic loading/ageing suggest that there may be room for further optimization of especially the PEKK abutment. Furthermore, good agreement was observed between the fracture modes of the implant that failed during the cyclic fatigue experiment and the in vivo failure of one implant during pre-clinical trials, validating the interest of the in vitro protocol used in this work to check the reliability of zirconia implant.

摘要

鉴于氧化锆种植体的美观外观和良好的生物相容性,它们在某些临床适应症中受到青睐。本研究的目的是使用一种从两项现有ISO标准改编而来的新方案,评估一种新开发的两件式氧化锆/聚醚酮酮(PEKK)种植体-基台组合在水热环境中长期循环加载后的性能。根据ISO 14801植入16枚种植体(n = 8/组),并分为两组:观察组(OG)的种植体在咀嚼模拟器中于85°C水中循环加载60天(98 N,1000万次加载循环,2 Hz),而未加载/未老化的种植体(收到时的状态)构成对照组(CG)。在470万次加载循环后,一枚OG种植体在咀嚼模拟器中发生断裂。通过X射线衍射(XRD)将存活的种植体与CG种植体进行比较,以研究ISO 13356所建议的潜在老化情况,同时还采用了μ拉曼光谱、聚焦离子束-扫描电子显微镜(FIB-SEM)和断裂载荷分析。结果表明,老化对评估的氧化锆种植体影响有限,加载/老化后单斜晶含量增加至种植体表面约2μm的浅转变区。然而,OG种植体的断裂载荷显著降低,为~751 ± 231 N(CG:995 ± 161 N;p = 0.046)。这些数值允许临床应用,但在循环疲劳过程中记录到一次失败以及循环加载/老化后强度显著下降这一事实表明,特别是PEKK基台可能还有进一步优化的空间。此外,在循环疲劳实验中失败的种植体的断裂模式与临床前试验中一枚种植体的体内失败之间观察到了良好的一致性,验证了本研究中用于检查氧化锆种植体可靠性的体外方案的有效性。

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