钛合金作为生物材料的腐蚀、摩擦磨损和骨结合综述

Jamal Takadoum
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引用次数: 0

摘要

植入体进入人体后,会与生物环境相互作用,可能会受到腐蚀。此外,当这种植入物受到摩擦时,由于体液腐蚀和机械磨损的同时作用,它可能会因摩擦腐蚀而退化。腐蚀和摩擦腐蚀都与植入体表面蛋白质的存在有关。后者对腐蚀的作用并不明确,因为数十篇相互矛盾的论文都指出了其有利或不利的影响。植入人体后,应通过结构和功能连接与骨骼形成直接界面。骨结合和界面结合强度取决于种植体的表面特性,即地形和物理化学特性。此外,由于骨细胞对种植体腐蚀过程中产生的物质非常敏感,一旦发生腐蚀,可能会影响骨结合,导致种植体松动。腐蚀与骨结合之间存在密切联系,两者都值得讨论。这就是本综述要讨论的问题:(1) 作为生物材料的钛合金的腐蚀和摩擦腐蚀,特别关注蛋白质的影响,(2) 种植体粗糙度和表面能对骨结合的影响。
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Review on Corrosion, Tribocorrosion and Osseointegration of Titanium Alloys as Biomaterials
When introduced into the body, the implant interacts with biological environment and may suffer corrosion. In addition, when this implant is submitted to friction, it may degrade by tribocorrosion due to the simultaneous action of corrosion by the body liquid and mechanical wear. Both corrosion and tribocorrosion are connected to the presence of proteins that cover the surface implant. The latter plays an ambiguous role on corrosion since dozens of contradictory papers pointed out their beneficial or detrimental effect. After its introduction into the body, the implant should form a direct interface with bone through structural and functional connection. The osseointegration and the strength of interfacial bond depend on surface properties of the implant, namely, its topographical and physico-chemical properties. In addition, since bone cells are sensitive to the species produced during the implant corrosion, when corrosion occurs, this may lead to impact osseointegration and to cause implant loosening. There is a strong connection between corrosion and osseointegration, both of which are worth discussion. That is the object of the present narrative review where we will discuss: (1) corrosion and tribocorrosion of titanium alloys used as biomaterials paying particular attention to the influence of proteins, (2) the effect of implant roughness and surface energy on osseointegration.
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