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提高经阳极氧化处理的钛表面的极化聚偏氟乙烯涂层的亲水性和耐久性,以增强矿化能力。

Improved hydrophilicity and durability of polarized PVDF coatings on anodized titanium surfaces to enhance mineralization ability.

机构信息

Department of Materials Science and Engineering, Xi'an University of Technology, Xi'an 710048, PR China.

Department of Materials Science and Engineering, Xi'an University of Technology, Xi'an 710048, PR China.

出版信息

Colloids Surf B Biointerfaces. 2021 Sep;205:111898. doi: 10.1016/j.colsurfb.2021.111898. Epub 2021 Jun 2.

Abstract

Polyvinylidene fluoride (PVDF) coating with piezoelectric properties was prepared on surface of titanium-based materials to improve the bio inertness of the surface. The surface of titanium-based materials with piezoelectric properties similar to human bone promotes the growth of osteoblasts. However, not only new bone growth but also osseointegration are observed in the process of bone repair. The hydrophobicity of PVDF coating is unfavorable for mineralization. In this study, a PVDF coating was prepared on the titanium surface by using titanium dioxide nanotubes as a transition layer, and PVDF was attached to the wall of the titanium dioxide nanotube. The contact angle of the polarized PVDF coating decreases from 108° to 47°, which indicates that it changes from hydrophobic to hydrophilic due to the reduction in surface energy and the effect of negative surface charge. After the coating is left for a period of time, its contact angle only increases by 20° due to the loss of negative surface charge. After a physiological loading is applied to the polarized PVDF coating, the durability of its surface hydrophilicity is maintained. The mineralization ability of the polarized PVDF coating after being immersed in simulated body fluid (SBF) for 1, 7, and 14 days is significantly higher than that of the unpolarized sample. The increase in mineralization ability is mainly due to the hydrophilicity of the surface and the attraction of negative charges to calcium ions. Notably, after the polarized PVDF coating is subjected to physiological load, the mineralization ability is further improved after being immersed in SBF for 14 days, and its surface is covered with a layer of bone-like apatite. The high mineralization ability of the PVDF coating on the titanium surface after polarization can promote osseointegration and therefore shorten the bone repair cycle. Accordingly, this coating has potential application value in the clinical treatment of bone defect repair in middle-aged and elderly people.

摘要

聚偏二氟乙烯(PVDF)具有压电性能的涂层被制备在钛基材料的表面上,以提高表面的生物惰性。具有类似于人体骨骼的压电性能的钛基材料表面促进成骨细胞的生长。然而,在骨修复过程中不仅观察到新骨生长,而且还观察到骨整合。PVDF 涂层的疏水性不利于矿化。在这项研究中,通过使用二氧化钛纳米管作为过渡层在钛表面上制备了 PVDF 涂层,并且 PVDF 附着在二氧化钛纳米管的壁上。极化 PVDF 涂层的接触角从 108°降低至 47°,这表明由于表面能的降低和负表面电荷的作用,它从疏水性变为亲水性。涂层放置一段时间后,由于负表面电荷的损失,其接触角仅增加了 20°。在对极化的 PVDF 涂层施加生理负荷后,其表面亲水性的耐久性得以维持。在浸入模拟体液(SBF)1、7 和 14 天后,极化的 PVDF 涂层的矿化能力明显高于未极化的样品。矿化能力的提高主要归因于表面的亲水性和负电荷对钙离子的吸引力。值得注意的是,在极化的 PVDF 涂层经受生理负荷后,在浸入 SBF 14 天后进一步提高了矿化能力,并且其表面覆盖有一层骨样磷灰石。极化后钛表面上的 PVDF 涂层的高矿化能力可以促进骨整合,从而缩短骨修复周期。因此,这种涂层在中老年人骨缺损修复的临床治疗中具有潜在的应用价值。

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