Marek Romy, Ćwieka Hanna, Donohue Nicholas, Holweg Patrick, Moosmann Julian, Beckmann Felix, Brcic Iva, Schwarze Uwe Yacine, Iskhakova Kamila, Chaabane Marwa, Sefa Sandra, Zeller-Plumhoff Berit, Weinberg Annelie-Martina, Willumeit-Römer Regine, Sommer Nicole Gabriele
Department of Orthopaedics and Traumatology, Medical University of Graz, 8010 Graz, Austria.
Institute of Metallic Biomaterials, Helmholtz-Zentrum Hereon GmbH, 21502 Geesthacht, Germany.
Regen Biomater. 2022 Oct 18;10:rbac077. doi: 10.1093/rb/rbac077. eCollection 2023.
Magnesium (Mg)-based implants are highly attractive for the orthopedic field and may replace titanium (Ti) as support for fracture healing. To determine the implant-bone interaction in different bony regions, we implanted Mg-based alloy ZX00 (Mg < 0.5 Zn < 0.5 Ca, in wt%) and Ti-screws into the distal epiphysis and distal metaphysis of sheep tibiae. The implant degradation and osseointegration were assessed and after 4, 6 and 12 weeks, using a combination of clinical computed tomography, medium-resolution micro computed tomography (µCT) and high-resolution synchrotron radiation µCT (SRµCT). Implant volume loss, gas formation and bone growth were evaluated for both implantation sites and each bone region independently. Additionally, histological analysis of bone growth was performed on embedded hard-tissue samples. We demonstrate that in all cases, the degradation rate of ZX00-implants ranges between 0.23 and 0.75 mm/year. The highest degradation rates were found in the epiphysis. Bone-to-implant contact varied between the time points and bone types for both materials. Mostly, bone-volume-to-total-volume was higher around Ti-implants. However, we found an increased cortical thickness around the ZX00-screws when compared with the Ti-screws. Our results showed the suitability of ZX00-screws for implantation into the distal meta- and epiphysis.
镁(Mg)基植入物在骨科领域极具吸引力,可能会取代钛(Ti)作为骨折愈合的支撑材料。为了确定不同骨区域的植入物与骨的相互作用,我们将镁基合金ZX00(Mg < 0.5 Zn < 0.5 Ca,重量百分比)和钛螺钉植入绵羊胫骨的远端骨骺和远端干骺端。在4、6和12周后,结合临床计算机断层扫描、中分辨率微型计算机断层扫描(µCT)和高分辨率同步辐射µCT(SRµCT)对植入物的降解和骨整合进行评估。分别对两个植入部位和每个骨区域的植入物体积损失、气体形成和骨生长进行评估。此外,还对嵌入的硬组织样本进行了骨生长的组织学分析。我们证明,在所有情况下,ZX00植入物的降解速率在0.23至0.75毫米/年之间。在骨骺中发现了最高的降解速率。两种材料的骨与植入物接触在时间点和骨类型之间有所不同。大多数情况下,钛植入物周围的骨体积与总体积之比更高。然而,与钛螺钉相比,我们发现ZX00螺钉周围的皮质厚度有所增加。我们的结果表明ZX00螺钉适合植入远端干骺端和骨骺。