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概述紫外线光功能化混合相TiO薄膜上的细胞相互作用和炎性细胞因子。

Outlining cell interaction and inflammatory cytokines on UV-photofunctionalized mixed-phase TiO thin film.

作者信息

Pantaroto Heloisa Navarro, de Almeida Amanda B, Gomes Orisson P, Matos Adaias O, Landers Richard, Casarin Renato Corrêa V, da Silva José Humberto D, Nociti Francisco H, Barão Valentim A R

机构信息

University of Campinas (UNICAMP), Piracicaba Dental School, Department of Prosthodontics and Periodontology, Av. Limeira, 901, Piracicaba, São Paulo 13414-903, Brazil.

São Paulo State University (UNESP), Department of Physics, Av. Eng. Luís Edmundo C. Coube, 14-01, Bauru, São Paulo 17033-360, Brazil.

出版信息

Mater Sci Eng C Mater Biol Appl. 2021 Jan;118:111438. doi: 10.1016/j.msec.2020.111438. Epub 2020 Aug 25.

Abstract

Photofunctionalization mediated by ultraviolet (UV) light seems to be a promising approach to improve the physico-chemical characteristics and the biological response of titanium (Ti) dental implants. Seeing that photofunctionalization is able to remove carbon from the surface, besides to promote reactions on the titanium dioxide (TiO) layer, coating the Ti with a stable TiO film could potentialize the UV effect. Thus, here we determined the impact of UV-photofunctionalized mixed-phase (anatase and rutile) TiO films on the physico-chemical properties of Ti substrate and cell biology. Mixed-phase TiO films were grown by radiofrequency magnetron sputtering on commercially pure titanium (cpTi) discs, and samples were divided as follow: cpTi (negative control), TiO (positive control), cpTi UV, TiO UV (experimental). Photofunctionalization was performed using UVA (360 nm - 40 W) and UVC (250 nm - 40 W) lamps for 48 h. Surfaces were analyzed in terms of morphology, topography, chemical composition, crystalline phase, wettability and surface free energy. Pre-osteoblastic cells (MC3T3E1) were used to assess cell morphology and adhesion, metabolism, mineralization potential and cytokine secretion (IFN-γ, TNF-α, IL-4, IL-6 and IL-17). TiO-coated surfaces exhibited granular surface morphology and greater roughness. Photofunctionalization increased wettability (p < 0.05) and surface free energy (p < 0.001) on both surface conditions. TiO-treated groups featured normal cell morphology and spreading, and greater cellular metabolic activity at 2 and 4 days (p < 0.05), whereas UV-photofunctionalized surfaces enhanced cell metabolism, cell adhered area, and calcium deposition (day 14) (p < 0.05). In general, assessed proteins were found slightly affected by either UV or TiO treatments. Altogether, our findings suggest that UV-photofunctionalized TiO surface has the potential to improve pre-osteoblastic cell differentiation and the ability of cells to form mineral nodules by modifying Ti physico-chemical properties towards a more stable context. UV-modified surfaces modulate the secretion of key inflammatory markers.

摘要

由紫外线(UV)介导的光功能化似乎是一种改善钛(Ti)牙科植入物物理化学特性和生物反应的有前景的方法。鉴于光功能化不仅能够从表面去除碳,还能促进二氧化钛(TiO₂)层上的反应,用稳定的TiO₂薄膜涂覆Ti可以增强UV效应。因此,在这里我们确定了UV光功能化的混合相(锐钛矿和金红石)TiO₂薄膜对Ti基底物理化学性质和细胞生物学的影响。通过射频磁控溅射在商业纯钛(cpTi)圆盘上生长混合相TiO₂薄膜,样品分为以下几组:cpTi(阴性对照)、TiO₂(阳性对照)、cpTi UV、TiO₂ UV(实验组)。使用UVA(360 nm - 40 W)和UVC(250 nm - 40 W)灯进行48小时的光功能化。从形态、形貌、化学成分、晶相、润湿性和表面自由能方面对表面进行分析。使用前成骨细胞(MC3T3E1)评估细胞形态和粘附、代谢、矿化潜力以及细胞因子分泌(IFN-γ、TNF-α、IL-4、IL-6和IL-17)。TiO₂涂层表面呈现颗粒状表面形态且粗糙度更大。在两种表面条件下,光功能化均增加了润湿性(p < 0.05)和表面自由能(p < 0.001)。TiO₂处理组具有正常的细胞形态和铺展,并且在第2天和第4天具有更高的细胞代谢活性(p < 0.05),而UV光功能化表面增强了细胞代谢、细胞粘附面积和钙沉积(第14天)(p < 0.05)。总体而言,发现所评估的蛋白质受UV或TiO₂处理的影响较小。总之,我们的研究结果表明,UV光功能化的TiO₂表面有可能通过将Ti的物理化学性质改变为更稳定的状态来改善前成骨细胞分化以及细胞形成矿化结节的能力。UV改性表面调节关键炎症标志物的分泌。

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