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Plasma ion implantation enabled bio-functionalization of PEEK improves osteoblastic activity

机译:等离子体离子植入可实现PEEK的生物功能改善成骨细胞活性

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摘要

Slow appositional growth of bone in vivo is a major problem associated with polyether ether ketone (PEEK) based orthopaedic implants. Early stage promotion of osteoblast activity, particularly bone nodule formation, would help to improve contact between PEEK implantable materials and the surrounding bone tissue. To improve interactions with bone cells, we explored here the use of plasma immersion ion implantation (PIII) treatment of PEEK to covalently immobilize biomolecules to the surface. In this study, a single step process was used to covalently immobilize tropoelastin on the surface of PIII modified PEEK through reactions with radicals generated by the treatment. Improved bioactivity was observed using the human osteoblast-like cell line, SAOS-2. Cells on surfaces that were PIII-treated or tropoelastin-coated exhibited improved attachment, spreading, proliferation, and bone nodule formation compared to cells on untreated samples. Surfaces that were both PIII-treated and tropoelastin-coated triggered the most favorable osteoblast-like responses. Surface treatment or tropoelastin coating did not alter alkaline phosphatase gene expression and activity of bound cells but did influence the expression of other bone markers including osteocalcin, osteonectin, and collagen I. We conclude that the surface modification of PEEK improves osteoblast interactions, particularly with respect to bone apposition, and enhances the orthopedic utility of PEEK.
机译:体内骨骼的并位生长缓慢是与基于聚醚醚酮(PEEK)的整形外科植入物相关的主要问题。成骨细胞活性的早期促进,特别是骨结节的形成,将有助于改善PEEK可植入材料与周围骨组织之间的接触。为了改善与骨细胞的相互作用,我们在这里探索了使用等离子浸入离子植入(PIII)处理PEEK来将生物分子共价固定在表面上的方法。在这项研究中,通过与处理产生的自由基反应,使用一步法将原弹性蛋白共价固定在PIII修饰的PEEK表面上。使用人类成骨细胞样细胞系SAOS-2,观察到生物活性得到改善。与未经处理的样品上的细胞相比,经PIII处理或原弹性蛋白涂层的表面上的细胞显示出改善的附着,扩散,增殖和骨结节形成。经PIII处理和原弹性蛋白涂层的表面引发了最有利的成骨样反应。表面处理或原弹性蛋白涂层不会改变碱性磷酸酶基因的表达和结合细胞的活性,但会影响其他骨标记物的表达,包括骨钙素,骨连接蛋白和胶原蛋白I。我们得出结论,PEEK的表面修饰可改善成骨细胞的相互作用,特别是在骨并置,增强PEEK的矫形效用。

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