首页> 外文期刊>Journal of biomaterials applications >Biodegradation of a magnesium alloy implant in the intercondylar femoral notch showed an appropriate response to the synovial membrane in a rabbit model in vivo
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Biodegradation of a magnesium alloy implant in the intercondylar femoral notch showed an appropriate response to the synovial membrane in a rabbit model in vivo

机译:con间股骨槽口中镁合金植入物的生物降解显示了在兔体内模型中对滑膜的适当反应

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Degradable magnesium alloys are promising biomaterials for orthopedic applications. The aim of this study was to evaluate the potential effects on both the synovial membrane (synovialis) and the synovial fluid (synovia) of the degradation products of a MgYREZr-pin implanted in the intercondylar femoral notch in a rabbit model. Thirty-six animals were randomized into two groups (MgYREZr or Ti6Al4V alloy) of 18 animals each. Each group was then divided into three subgroups with implantation periods of 1, 4, and 12 weeks, with six animals in each subgroup. The initial inflammatory reaction caused by the surgical trauma declined after 12 weeks of implantation, and elucidated a progressive recovery of the synovial membrane. Compared with control Ti6Al4V pins, there were no significant differences between the groups. However, after 12 weeks, recovery of the synovial membrane was more advanced in the titanium group, in which 92% showed no signs of synovitis, than in the magnesium group. A cytotoxicity test with L929 cells and human osteoblasts (HOB) was also conducted, according to EN ISO 10993-5/12, and no toxic leachable products were observed after 24 h of incubation. In conclusion, the MgYREZr alloy seems to be a suitable material for intra-articular degradable implants.
机译:可降解镁合金是用于骨科应用的有前途的生物材料。这项研究的目的是评估在兔模型的con间股沟中植入的MgYREZr-pin降解产物对滑膜(滑膜)和滑液(滑膜)的潜在影响。将36只动物随机分为两组(MgYREZr或Ti6Al4V合金),每组18只。然后将每组分成三个亚组,植入期为1、4和12周,每个亚组中有六只动物。植入手术12周后,由外科手术创伤引起的最初炎症反应减弱,并阐明了滑膜的逐渐恢复。与对照Ti6Al4V引脚相比,两组之间没有显着差异。但是,在12周后,与镁组相比,钛组的滑膜恢复更快,其中92%没有滑膜炎的迹象。根据EN ISO 10993-5 / 12,还对L929细胞和人成骨细胞(HOB)进行了细胞毒性测试,孵育24小时后未观察到有毒的可浸出产物。总之,MgYREZr合金似乎是适用于关节内可降解植入物的材料。

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