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Preparation of a HA/collagen film on a bioactive titanium surface by the electrochemical deposition method

机译:通过电化学沉积方法在生物活性钛表面上制备HA /胶原膜

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摘要

A hydroxyapatite (HA) film with or without collagen was electrochemically deposited on a bioactivated titanium metal prepared by acid-alkali treatment, so as to improve the biocompatibility of bioactive titanium metals. The cell response of the film was studied with MG63 osteoblasts culture. It was found that the hydroxyapatite formation in the film during the deposition process was inhibited when collagen was added in the electrolyte. More hydroxyapatite with and without collagen could be deposited on the bioactivated titanium than the control titanium metal without treatment, which indicated that the bioactivation process before the electrochemical deposition could accelerate the deposition. The abilities of cell attachment and proliferation were improved by the film especially in the group containing collagen, and the film on the bioactivated metal had higher cell response ability than that on the titanium without treatment. The results indicated that the hydroxyapatite/collagen film could improve the biocompatibility of the bioactive titanium metal surface, and the bioactivation surface modification could further regulate the film and its cell response. It is possible to get a titanium surface with higher bioactivity than the traditional bioactive titanium surface by combining the bioactivation surface modification and electrochemical deposition HA/collagen film.
机译:将具有或不具有胶原的羟基磷灰石(HA)膜电化学沉积在通过酸碱处理制备的生物活化的钛金属上,以提高生物活性钛金属的生物相容性。用MG63成骨细胞培养物研究膜的细胞反应。发现当在电解质中添加胶原时,在沉积过程中膜中的羟基磷灰石形成受到抑制。与未处理的对照钛金属相比,更多的具有和不具有胶原的羟基磷灰石可以沉积在生物活化的钛上,这表明电化学沉积之前的生物活化过程可以加速沉积。该膜特别是在含有胶原的组中改善了细胞附着和增殖的能力,并且在生物活化金属上的膜比未经处理的钛上的膜具有更高的细胞反应能力。结果表明,羟基磷灰石/胶原蛋白膜可以提高生物活性钛金属表面的生物相容性,而生物活化表面改性可以进一步调节该膜及其细胞反应。通过结合生物活性表面改性和电化学沉积HA /胶原膜,可以获得比传统生物活性钛表面更高的生物活性的钛表面。

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