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通过硫酸处理和紫外线照射对二氧化钛薄膜进行剪裁以提高抗凝能力和内皮细胞相容性。

Tailoring of TiO films by HSO treatment and UV irradiation to improve anticoagulant ability and endothelial cell compatibility.

作者信息

Liao Yuzhen, Li Linhua, Chen Jiang, Yang Ping, Zhao Ansha, Sun Hong, Huang Nan

机构信息

Institute of Biomaterials and Surface Engineering, Key Laboratory for Advanced Technologies of Materials, Ministry of Education, Southwest Jiaotong University, Chengdu 610031, People's Republic of China.

Institute of Biomaterials and Surface Engineering, Key Laboratory for Advanced Technologies of Materials, Ministry of Education, Southwest Jiaotong University, Chengdu 610031, People's Republic of China.

出版信息

Colloids Surf B Biointerfaces. 2017 Jul 1;155:314-322. doi: 10.1016/j.colsurfb.2017.04.021. Epub 2017 Apr 12.

Abstract

Surfaces with dual functions that simultaneously exhibit good anticoagulant ability and endothelial cell (EC) compatibility are desirable for blood contact materials. However, these dual functions have rarely been achieved by inorganic materials. In this study, titanium dioxide (TiO) films were treated by sulphuric acid (HSO) and ultraviolet (UV) irradiation successively (TiOHSO-UV), resulting in good anticoagulant ability and EC compatibility simultaneously. We found that UV irradiation improved the anticoagulant ability of TiO films significantly while enhancing EC compatibility, though not significantly. The enhanced anticoagulant ability could be related to the oxidation of surface-adsorbed hydrocarbons and increased hydrophilicity. The HSO treatment improved the anticoagulant ability of TiO films slightly, while UV irradiation improved the anticoagulant ability strongly. The enhanced EC compatibility could be related to the increased surface roughness and positive charges on the surface of the TiO films. Furthermore, the time-dependent degradation of the enhanced EC compatibility and anticoagulant ability of TiOHSO-UV was observed. In summary, TiOHSO-UV expressed both excellent anticoagulant ability and good EC compatibility at the same time, which could be desirable for blood contact materials. However, the compatibility of TiOHSO-UV with smooth muscle cells (SMCs) and macrophages was also improved. More effort is still needed to selectively improve EC compatibility on TiO films for better re-endothelialization.

摘要

对于血液接触材料而言,同时具备良好抗凝血能力和内皮细胞(EC)相容性的双重功能表面是理想的。然而,无机材料很少能实现这些双重功能。在本研究中,二氧化钛(TiO)薄膜先后经过硫酸(H₂SO₄)处理和紫外线(UV)照射(TiOHSO₄-UV),从而同时具备了良好的抗凝血能力和EC相容性。我们发现,紫外线照射显著提高了TiO薄膜的抗凝血能力,同时增强了EC相容性,尽管增强效果不显著。抗凝血能力增强可能与表面吸附烃类的氧化和亲水性增加有关。硫酸处理略微提高了TiO薄膜的抗凝血能力,而紫外线照射则强烈提高了抗凝血能力。EC相容性增强可能与TiO薄膜表面粗糙度增加和表面正电荷有关。此外,还观察到TiOHSO₄-UV增强的EC相容性和抗凝血能力随时间的降解。总之,TiOHSO₄-UV同时表现出优异的抗凝血能力和良好的EC相容性,这对于血液接触材料来说是理想的。然而,TiOHSO₄-UV与平滑肌细胞(SMC)和巨噬细胞的相容性也有所提高。仍需要更多努力来选择性地改善TiO薄膜上的EC相容性,以实现更好的再内皮化。

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