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一种增强超细晶纯钛细胞相容性的新策略。

A Novel Cytocompatibility Strengthening Strategy of Ultrafine-Grained Pure Titanium.

机构信息

School of Materials Science and Engineering , Jiangsu University of Science and Technology , Zhenjiang 212003 , China.

Jiangsu Collaborative Innovation Center of Photovoltaic Science and Engineering , Changzhou University , Changzhou 213164 , China.

出版信息

ACS Appl Mater Interfaces. 2019 Dec 26;11(51):47680-47694. doi: 10.1021/acsami.9b13554. Epub 2019 Dec 13.

Abstract

Ultrafine-grained pure (UFG) titanium processed by equal channel angular pressing possesses mechanical properties comparable to those of Ti-6Al-4V and features more favorable friction resistance, biocompatibility, and corrosion resistance than does commercially pure (CP) titanium. Nevertheless, UFG titanium is still a bio-inert material with a lack of bone-inducing ability. Here, TiO-hydroxyapatite (TiO-HA) coatings were fabricated on CP titanium and UFG titanium through combining micro-arc oxidation and hydrothermal treatment together to improve their cytocompatibility. The results indicate that, compared with conventional coatings that use CP titanium as the substrate, such coatings formed on the UFG titanium possess additional hydrophilicity and in vitro cytocompatibility. The fantastic hierarchical structure of the UFG TiO-HA coating (UG-MH coating), including microscale and nanoscale pores and short column-shaped and sheet-shaped HA grains with varying geometric shapes, excellent hydrophilicity, and high polar force, enhances the mutual effects between the osteoblasts and titanium implant since it provides an adequate microenvironment for the ingrowth of osteoblasts, inducing osteoblast adhesion, proliferation, and differentiation. The UG-MH coating has a synergistic effect due to its fantastic hydrophilic hierarchical structure and high polar force on the up-regulated expression of cytoskeletal actin proteins as well as osteocalcin, protein kinase C (PKC), nuclear factor of activated T-cells (NFAT), and Wnt5, enabling osteoblasts to differentiate via the Wnt calcium-dependent signaling pathway. This study highlights the idea that the modified UFG titanium will be more suitable than CP titanium in dental and orthopedic applications.

摘要

通过等径角挤压处理得到的超细晶纯(UFG)钛具有与 Ti-6Al-4V 相当的力学性能,且比商业纯(CP)钛具有更优异的摩擦阻力、生物相容性和耐腐蚀性。然而,UFG 钛仍然是一种生物惰性材料,缺乏成骨能力。在这里,通过将微弧氧化和水热处理相结合,在 CP 钛和 UFG 钛上制备了 TiO-羟基磷灰石(TiO-HA)涂层,以提高其细胞相容性。结果表明,与使用 CP 钛作为基底的常规涂层相比,在 UFG 钛上形成的这些涂层具有额外的亲水性和体外细胞相容性。UFG TiO-HA 涂层(UG-MH 涂层)的奇特分级结构,包括微尺度和纳米尺度的孔以及短柱状和片状具有不同几何形状的 HA 晶粒,具有极好的亲水性和高极性力,增强了成骨细胞与钛植入物之间的相互作用,因为它为成骨细胞的生长提供了充足的微环境,诱导成骨细胞黏附、增殖和分化。由于其奇特的亲水分级结构和高极性力,UG-MH 涂层对细胞骨架肌动蛋白蛋白以及骨钙素、蛋白激酶 C(PKC)、活化 T 细胞核因子(NFAT)和 Wnt5 的上调表达具有协同作用,使成骨细胞通过 Wnt 钙依赖性信号通路进行分化。这项研究强调了这样一种观点,即改性后的 UFG 钛将比 CP 钛更适合牙科和骨科应用。

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