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首页> 外文期刊>ACS Omega >3D Printed Ti–6Al–4V Implant with a Micro/Nanostructured Surface and Its Cellular Responses
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3D Printed Ti–6Al–4V Implant with a Micro/Nanostructured Surface and Its Cellular Responses

机译:3D印刷Ti-6Al-4V植入微/纳米结构表面及其细胞反应

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Three-dimensional (3D) printing technology has been proved to be a powerful tool for the free-form fabrication of titanium (Ti) implants. However, the surface quality of 3D printed Ti implants is not suitable for clinical application directly. Therefore, surface modification of 3D printed Ti implants is required in order to achieve good biocompatibility and osseointegration. In this study, a novel surface modification method of 3D printed Ti–6Al–4V implants has been proposed, which combined acid etching with hydrothermal treatment to construct micro/nanostructures. Polished TC4 sheets (P), electron beam melting Ti sheets (AE), and micro/nanostructured Ti sheets (AMH) were used in this study to evaluate the effects of different surface morphologies on cellular responses. The surface morphology and 3D topography after treatment were detected via scanning electron microscopy and laser scanning microscopy. The results illustrated that a hierarchical structure comprising micro-valleys and nanowires with a surface roughness of 14.388 μm was successfully constructed. Compared with group P samples, the hydrophilicity of group AMH samples significantly increased with a reduced water contact angle from 54.9° to 4.5°. Cell culture experiments indicated that the micro/nanostructures on the material surface could enhance the cell adhesion and proliferation of MC3T3s. The microstructure could enhance bone-to-implant contact, and the nanostructure could directly interact with some cell membrane receptors. Overall, this study proposes a new strategy to construct micro/nanostructures on the surface of 3D printed Ti–6Al–4V implants and may further serve as a potential modification method for better osteogenesis ability.
机译:已被证明是三维(3D)印刷技术成为钛(Ti)植入物的自由形式制造的强大工具。然而,3D印刷TI植入物的表面质量不适合直接临床应用。因此,需要3D印刷TI植入物的表面改性,以实现良好的生物相容性和骨整合。在该研究中,已经提出了一种新的3D印刷Ti-6AL-4V植入物的表面改性方法,其用水热处理组合酸蚀刻以构建微/纳米结构。在本研究中使用抛光TC4板(P),电子束熔化Ti片(AE)和微/纳米结构Ti板(AMH),评价不同表面形态对细胞反应的影响。通过扫描电子显微镜和激光扫描显微镜检测处理后的表面形态和3D形貌。结果说明了包含具有14.388μm的表面粗糙度为14.388μm的微谷和纳米线的分层结构。与P群样品相比,AMH样品的亲水性随着54.9°至4.5°的降低的水接触角而显着增加。细胞培养实验表明,材料表面上的微/纳米结构可以增强MC3T3S的细胞粘附和增殖。微观结构可以增强骨对植入的接触,纳米结构可直接与一些细胞膜受体相互作用。总体而言,本研究提出了一种在3D印刷的Ti-6AL-4V植入物表面上构建微/纳米结构的新策略,并且可以作为更好的成骨能力的潜在修饰方法。

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