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Enhanced bone forming ability of SLA-treated Ti coated with a calcium phosphate thin film formed by e-beam evaporation

机译:通过电子束蒸发形成的磷酸钙薄膜涂覆的经SLA处理的Ti的增强的骨形成能力

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摘要

With an electron-beam evaporation process, a calcium phosphate (Ca-P) thin film of similar to 500 nm thick was deposited on sand blasted with large grits and acid etched (SLA) Ti without changing the typical morphology of the SLA surface. Dissolution behavior was investigated by measuring the amount of dissolved phosphate ions with ion chromatography after immersing the SLA Ti sample coated with a Ca-P film in 1 ml de-ionized water maintained at 37 degrees C for different periods of soaking time, and the surface morphology was observed with field emission scanning electron microscopy. The amount of phosphate ions increased quickly right after immersion but began to decrease after 2 days of immersion by redeposition with Ca ions as apatite, and the amount of biomimetic apatite increased with the extended soaking time. The Saos-2 cell was more attached on the coated surface, and the in vivo evaluation was that the Ca-P deposited SLA implant greatly improved the new bone formation ability.
机译:通过电子束蒸发工艺,将厚度约500 nm的磷酸钙(Ca-P)薄膜沉积在喷有大砂粒和酸蚀(SLA)Ti的喷砂上,而不会改变SLA表面的典型形态。将涂有Ca-P膜的SLA Ti样品浸入保持在37°C的1 ml去离子水中不同浸泡时间后,通过离子色谱法测量溶解的磷酸根离子的量来研究溶解行为。用场发射扫描电子显微镜观察形态。浸渍后,磷酸根离子的数量迅速增加,但是在浸渍2天后,通过用钙离子作为磷灰石进行再沉积,磷离子的数量开始减少,仿生磷灰石的数量随着浸泡时间的延长而增加。 Saos-2细胞更多地附着在涂层表面上,并且体内评价是Ca-P沉积的SLA植入物大大改善了新的骨形成能力。

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