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Construction of tantalum/poly(ether imide) coatings on magnesium implants with both corrosion protection and osseointegration properties

机译:镁植入钽/聚(醚酰亚胺)涂层的构建腐蚀保护和骨整合性能

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摘要

Poly(ether imide) (PEI) has shown satisfactory corrosion protection capability with good adhesion strength as a coating for magnesium (Mg), a potential candidate of biodegradable orthopedic implant material. However, its innate hydrophobic property causes insufficient osteoblast affinity and a lack of osseointegration. Herein, we modify the physical and chemical properties of a PEI-coated Mg implant. A plasma immersion ion implantation technique is combined with direct current (DC) magnetron sputtering to introduce biologically compatible tantalum (Ta) onto the surface of the PEI coating. The PEI-coating layer is not damaged during this process owing to the extremely short processing time (30 s), retaining its high corrosion protection property and adhesion stability. The Ta-implanted layer (roughly 10-nm-thick) on the topmost PEI surface generates long-term surface hydrophilicity and favorable surface conditions for pre-osteoblasts to adhere, proliferate, and differentiate. Furthermore, in a rabbit femur study, the Ta/PEI-coated Mg implant demonstrates significantly enhanced bone tissue affinity and osseointegration capability. These results indicate that Ta/PEI-coated Mg is promising for achieving early mechanical fixation and long-term success in biodegradable orthopedic implant applications.
机译:聚(醚酰亚胺)(PEI)显示出令人满意的腐蚀保护能力,良好的粘附强度作为用于镁(Mg)的涂层,可生物降解的整形外科植入物质的潜在候选物。然而,其先天的疏水性质导致成骨细胞的亲和力不足和缺乏骨整合。在此,我们改变了Pei涂覆的Mg植入物的物理和化学性质。等离子体浸渍离子注入技术与直流(DC)磁控溅射组合,将生物相容的钽(TA)引入PEI涂层的表面上。由于处理时间非常短(30秒,保留其高耐腐蚀性和粘附稳定性,PEI涂层在此过程中不会损坏。最顶层PEI表面上的TA植入层(大约10纳米厚)产生的长期表面亲水性和有利的表面条件,用于粘附,增殖和分化的预成骨细胞。此外,在兔股骨研究中,TA / PEI涂覆的Mg植入物显着提高了骨组织亲和力和骨整合能力。这些结果表明,TA / PEI涂覆的MG是有希望在可生物降解的整形外科植入应用中实现早期机械固定和长期成功。

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