补体系统
炎症
材料科学
骨整合
钛
锆
立方氧化锆
吸附
蛋白质吸附
补语(音乐)
免疫系统
生物物理学
免疫学
植入
化学
医学
生物化学
复合材料
生物
聚合物
有机化学
表型
互补
陶瓷
冶金
外科
基因
作者
Shuting Jiang,Yueqi Ni,Fanyu Zhang,Yiling Duan,Haoning Qi,Wenting Mo,Qinchao Tang,Richard J. Miron,Yufeng Zhang
标识
DOI:10.1002/adfm.202214055
摘要
Abstract Zirconium implants have gained popularity among clinicians due to their superior mechanical properties. However, zirconium implants usually perform less well in early osseointegration than titanium implants. And the degree of severity of the acute inflammation resulting from macrophage activation after implantation determines the result of the implantation. The mechanism by which zirconia implants cause more acute inflammation compared to titanium implants is currently unknown. Here, the complement activation on zirconium oxide is demonstrated, which causes differences in inflammation compared to titanium oxide. More adsorption of immunoglobulin G (IgG) and complement protein C1q together with the more efficient triggering of the complement system is shown to occur on ZrO 2 surfaces. Molecular dynamics (MD) simulations further reveal that IgG exhibits more accessible binding sites on ZrO 2 surfaces due to its hydrophobicity, leading to more efficient complement activation. Reduced inflammation of hydrophilized ZrO 2 compared to non‐treated ZrO 2 demonstrates the role of hydrophobicity in the higher inflammation of ZrO 2 . The results reveal that complement activation due to conformational changes and greater adsorption of IgG and C1q on ZrO 2 triggers inflammation caused by macrophages, providing new insights for implant design and performance optimization.
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