Department of Chemical and Biological Engineering, Applied Chemistry, Chalmers University of Technology, Gothenburg, Sweden.
Acta Biomater. 2012 Dec;8(12):4438-46. doi: 10.1016/j.actbio.2012.07.035. Epub 2012 Jul 27.
Mesoporous materials are of high interest as implant coatings to receive an enhanced osseointegration. In this study, titanium implants coated with mesoporous TiO(2) thin films have been evaluated both in vitro and in vivo. Material characterization showed that, with partly crystalline TiO(2) (anatase), long-range-ordered hydrophilic mesoporous thin films with a pore size of 6nm were obtained. Evaluation of the mechanical resistance showed that the films were robust enough to withstand the standard implantation procedure. In vitro apatite formation was studied using simulated body fluids, showing that the pores are accessible for ions and that formation of apatite was increased due to the presence of the mesopores. An in vivo study using a rabbit model was executed in which the removal torque and histomorphometry were evaluated. The results show that the biomechanical stability of the TiO(2) coating was unaffected by the presence of mesopores and that osseointegration was achieved without any signs of inflammation.
介孔材料作为植入物涂层具有很高的研究价值,因为它可以增强骨整合。在这项研究中,我们对涂覆有介孔 TiO(2) 薄膜的钛植入物进行了体外和体内评估。材料特性研究表明,采用部分结晶的 TiO(2)(锐钛矿),可以获得具有 6nm 孔径的长程有序亲水介孔薄膜。机械强度评估表明,这些薄膜足够坚固,可以承受标准的植入程序。我们使用模拟体液研究了体外磷灰石的形成情况,结果表明,这些孔可以与离子相互作用,并且由于介孔的存在,磷灰石的形成得到了增强。我们在兔模型中进行了一项体内研究,评估了去除扭矩和组织形态计量学。结果表明,介孔的存在对 TiO(2) 涂层的生物力学稳定性没有影响,并且实现了骨整合,没有任何炎症迹象。