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首页> 外文期刊>Journal of biomaterials applications >Degradation and interaction with bone of magnesium alloy WE43 implants: A long-term follow-up in vivo rat tibia study
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Degradation and interaction with bone of magnesium alloy WE43 implants: A long-term follow-up in vivo rat tibia study

机译:与镁合金We43植入物骨的降解和相互作用:体内大鼠胫骨研究中的长期随访

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The aim of this in vivo study was to examine the degradation and biocompatibility of the WE43 magnesium alloy containing magnesium yttrium, rare earth elements, and zirconium over a one-year long-term follow-up period. Additionally, we compared anodized WE43 implants with monolithic ones and clarified the effect of the anodization. WE43 cylindrical implants with and without anodization (length, 10 mm; diameter, 0.3 mm) were transplanted into the rat tibia. In both groups, the development of corrosion and the change in implant volume were evaluated by in vivo micro-computed tomography until 12 months, and the bone tissue reaction was observed histologically. In the monolithic WE43 implants, hydrogen gas was evident until 14 days and the volume loss was 36.3% after 12 months. In the anodized WE43 implants, the development of hydrogen gas was inhibited and the volume loss was 27.7% after 12 months. The anodized WE43 implants showed a significantly slower corrosion process in the early phase. Therefore, these implants may require a prolonged period to degrade completely and may even resist complete degradation. At one year post surgery, bone maturation progressed and lamellar bone structure developed around the implant in both groups. In conclusion, the WE43 implants showed good long-term stability and biocompatibility in bone tissue.
机译:体内研究的目的是在一年的长期随访期间检查含有镁,稀土元素和锆的We43镁合金的降解和生物相容性。此外,我们将阳极氧化的We43植入物与整体旋转的植入物进行了比较并阐明了阳极氧化的影响。 WE43圆柱形植入物,没有阳极氧化(长度,10mm;直径,0.3毫米)移植到大鼠胫骨中。在两组中,通过体内微型计算断层扫描来评估腐蚀的发展和植入体积的变化直至12个月,组织学上观察骨组织反应。在整体型We43植入物中,氢气明显至14天,12个月后体积损失为36.3%。在阳极氧化的WE43植入物中,氢气的发展被抑制,12个月后体积损失为27.7%。阳极氧化的WE43植入物在早期阶段显示出显着较慢的腐蚀过程。因此,这些植入物可能需要长时间完全降解,甚至可以抵抗完全的降解。在一年后手术后,两组植入物周围开发的骨成熟和层状骨结构。总之,WE43植入物在骨组织中显示出良好的长期稳定性和生物相容性。

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