Roesner Maria, Zankovic Sergej, Kovacs Adalbert, Benner Moritz, Barkhoff Roland, Seidenstuecker Michael
G.E.R.N. Tissue Replacement, Regeneration & Neogenesis, Department of Orthopedics and Trauma Surgery, Medical Center-Albert-Ludwigs-University of Freiburg, Faculty of Medicine, Albert-Ludwigs-University of Freiburg, Hugstetter Straße 55, 79106 Freiburg, Germany.
Limedion GmbH, Coatings and Surface Analysis, Am Schäferstock 2-4, 68163 Mannheim, Germany.
Materials (Basel). 2023 Jul 25;16(15):5224. doi: 10.3390/ma16155224.
In the last several years, zinc and its alloys have come into focus as bioabsorbable materials by qualifying themselves with an excellent corrosion rate, mechanical properties, anti-bacterial effects. and considerable biocompatibility. In this study, the biocompatibility of zinc-silver alloys containing 3.3 wt% silver (ZnAg3) was assessed by evaluating their cell viability, the proliferation rate, and the cell toxicity. Two alloys were investigated in which one was phosphated and the other was non-phosphated. The alloys were tested on human osteoblasts (hOb), which are, to a large extent, responsible for bone formation and healing processes. The performance of the phosphated alloy did not differ significantly from the non-phosphated alloy. The results showed a promising biocompatibility with hOb for both alloys equally in all conducted assays, qualifying ZnAg3 for further investigations such as in vivo studies.
在过去几年中,锌及其合金凭借出色的腐蚀速率、机械性能、抗菌效果和相当的生物相容性,成为了生物可吸收材料的研究热点。在本研究中,通过评估含3.3 wt%银的锌银合金(ZnAg3)的细胞活力、增殖率和细胞毒性,对其生物相容性进行了评估。研究了两种合金,一种进行了磷化处理,另一种未进行磷化处理。这些合金在人成骨细胞(hOb)上进行了测试,人成骨细胞在很大程度上负责骨骼形成和愈合过程。磷化合金的性能与未磷化合金没有显著差异。结果表明,在所有进行的试验中,两种合金对hOb均具有良好的生物相容性,这使得ZnAg3有资格进行进一步的研究,如体内研究。