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具有仿生微重叠结构的激光织构Ti-6Al-4V合金植入物的摩擦稳定性和细胞行为

Friction stability and cellular behaviors on laser textured Ti-6Al-4V alloy implants with bioinspired micro-overlapping structures.

作者信息

Xu Yong, Liu Wei, Zhang Gangqiang, Li Zhipeng, Hu Hongxing, Wang Chenchen, Zeng Xiangqiong, Zhao Shichang, Zhang Yadong, Ren Tianhui

机构信息

School of Chemistry and Chemical Engineering, Frontiers Science Center for Transformative Molecules, Shanghai Jiao Tong University, Shanghai, 200240, China.

Department of Orthopedic Surgery, Shanghai Sixth People's Hospital, Shanghai Jiao Tong University, Shanghai, 200233, China.

出版信息

J Mech Behav Biomed Mater. 2020 Sep;109:103823. doi: 10.1016/j.jmbbm.2020.103823. Epub 2020 Apr 27.

Abstract

The grain structure and surface morphology of bio-implants act as a pivotal part in altering cell behavior. Titanium alloy bone screws, as common implants, are prone to screws loosening and complications threat in the physiological environment due to their inferior anti-wear and surface inertia. Manufacturing bone screws with high wear resistance and ideal biocompatibility has always been a challenge. In this study, a series of overlapping morphologies inspired by the hierarchical structure of fish scales and micro bulges of shrimp were structured on Ti-6Al-4V implant by laser texturing. The results indicate that the textured patterns could improve cell attachment, proliferation, and osteogenic differentiation. The short-term response of human bone marrow-derived mesenchymal stem cells (hBMSCs) on the textured surface are more sensitive to the microstructure than the surface roughness, wettability, grain size and surface chemical elements of the textured surfaces. More importantly, the friction-increasing and friction-reducing type overlapping structures exhibit excellent friction stability at different stages of modified simulated body fluid (m-SBF) soaking. The overlapping structure (Micro-smooth stacked ring: MSSR) is more beneficial to promote the formation of apatite. Deposited spherical-like apatite particles can act as a "lubricant" on the MSSR surface during the friction process to alleviate the adhesion wear of the surface. Meanwhile, apatite particles participate in the formation of friction film, which plays an effective role in reducing friction and antiwear in corrosion solution (m-SBF) for a long time. These features show that the combination of soaking treatment in m-SBF solution with laser-textured MSSR structure is expected to be an efficient and environmentally friendly strategy to prolong the service life of bone screws and reducing the complications of mildly osteoporotic implants.

摘要

生物植入物的晶粒结构和表面形态在改变细胞行为方面起着关键作用。钛合金骨螺钉作为常见的植入物,由于其抗磨损性能差和表面惰性,在生理环境中容易出现螺钉松动和并发症威胁。制造具有高耐磨性和理想生物相容性的骨螺钉一直是一项挑战。在本研究中,通过激光纹理化在Ti-6Al-4V植入物上构建了一系列受鱼鳞分层结构和虾微凸起启发的重叠形态。结果表明,纹理图案可以改善细胞附着、增殖和成骨分化。人骨髓间充质干细胞(hBMSCs)在纹理表面上的短期反应对微观结构比纹理表面的粗糙度、润湿性、晶粒尺寸和表面化学元素更敏感。更重要的是,增摩型和减摩型重叠结构在模拟体液(m-SBF)浸泡的不同阶段表现出优异的摩擦稳定性。重叠结构(微光滑堆叠环:MSSR)更有利于促进磷灰石的形成。沉积的球状磷灰石颗粒在摩擦过程中可作为MSSR表面的“润滑剂”,减轻表面的粘着磨损。同时,磷灰石颗粒参与摩擦膜的形成,在腐蚀溶液(m-SBF)中长期起到有效降低摩擦和抗磨损的作用。这些特性表明,m-SBF溶液浸泡处理与激光纹理化MSSR结构相结合有望成为延长骨螺钉使用寿命和减少轻度骨质疏松植入物并发症的一种高效且环保的策略。

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