Kačarević Željka Perić, Rider Patrick, Elad Akiva, Tadic Drazen, Rothamel Daniel, Sauer Gerrit, Bornert Fabien, Windisch Peter, Hangyási Dávid Botond, Molnar Balint, Kämmerer Till, Hesse Bernhard, Bortel Emely, Bartosch Marco, Witte Frank
Department of Anatomy Histology, Embryology, Pathology Anatomy and Pathology Histology, Faculty of Dental Medicine and Health, University of Osijek, Osijek, 31000, Croatia.
Department of Prosthodontics, Geriatric Dentistry and Craniomandibular Disorders, Charité - Universitätsmedizin Berlin, Aßmannshauser Straße 4-6, 14197, Berlin, Germany.
Bioact Mater. 2021 Dec 2;14:15-30. doi: 10.1016/j.bioactmat.2021.10.036. eCollection 2022 Aug.
An ideal fixation system for guided bone (GBR) regeneration in oral surgery must fulfil several criteria that includes the provision of adequate mechanical fixation, complete resorption when no longer needed, complete replacement by bone, as well as be biocompatible and have a good clinical manageability. For the first time, a biodegradable magnesium fixation screw made of the magnesium alloy WZM211 with a MgF coating has been designed and tested to fulfill these criteria. Adequate mechanical fixation was shown for the magnesium fixation screw in several benchtop tests that directly compared the magnesium fixation screw with an equivalent polymeric resorbable device. Results demonstrated slightly superior mechanical properties of the magnesium device in comparison to the polymeric device even after 4 weeks of degradation. Biocompatibility of the magnesium fixation screw was demonstrated in several and tests. Degradation of the magnesium screw was investigated in and tests, where it was found that the screw is resorbed slowly and completely after 52 weeks, providing adequate fixation in the early critical healing phase. Overall, the magnesium fixation screw demonstrates all of the key properties required for an ideal fixation screw of membranes used in guided bone regeneration (GBR) surgeries.
口腔外科引导骨再生(GBR)的理想固定系统必须满足几个标准,包括提供足够的机械固定、不再需要时完全吸收、被骨完全替代,以及具有生物相容性和良好的临床可操作性。首次设计并测试了一种由镁合金WZM211制成并带有MgF涂层的可生物降解镁固定螺钉,以满足这些标准。在几个直接将镁固定螺钉与同等聚合物可吸收装置进行比较的台式试验中,证明了镁固定螺钉具有足够的机械固定性能。结果表明,即使在降解4周后,镁装置的机械性能仍略优于聚合物装置。在多个细胞和动物试验中证明了镁固定螺钉的生物相容性。在体外和体内试验中研究了镁螺钉的降解情况,发现该螺钉在52周后缓慢且完全吸收,在早期关键愈合阶段提供了足够的固定。总体而言,镁固定螺钉展示了引导骨再生(GBR)手术中用于膜的理想固定螺钉所需的所有关键特性。