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Biomimetic apatite formation on a CoCrMo alloy by using wollastonite, bioactive glass or hydroxyapatite

机译:通过使用硅灰石,生物活性玻璃或羟基磷灰石在CoCrMo合金上形成仿生磷灰石

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摘要

A biomimetic method was used to promote a bioactive surface on a CoCrMo alloy (ASTM F75). To enhance the nucleation of apatite on the metallic substrate, wollastonite ceramics (W), bioactive glass (BG) or hydroxyapatite (HA) were used in the biomimetic method. Metallic samples were chemically treated and immersed for 7 days in SBF on a bed of bioactive material (W, BG or HA) followed by an immersion in 1.5SBF for 7 or 14 days without bioactive system.A bonelike apatite layer was formed on the surface of all the samples tested. The samples treated with wollastonite showed a higher rate of apatite formation and the morphology of the layer was closer to that of the existing bioactive systems. A higher crystallinity of the apatite layer was also observed by using wollastonite. The pH of the SBF, the Ca/P ratio and the thickness of the layer on the samples treated with wollastonite and bioactive glass increased as increasing the immersion time. The thickness of the layer on the samples treated with hydroxyapatite also increased with time, but the pH of the SBF and the Ca/P ratio changed with no a defined trend. (c) 2005 Springer Science + Business Media, Inc.
机译:仿生方法用于促进CoCrMo合金(ASTM F75)上的生物活性表面。为了增强磷灰石在金属基材上的形核,在仿生方法中使用了硅灰石陶瓷(W),生物活性玻璃(BG)或羟基磷灰石(HA)。对金属样品进行化学处理,并在生物活性物质(W,BG或HA)床上的SBF中浸泡7天,然后在没有生物活性系统的情况下在1.5SBF中浸泡7或14天,在表面上形成骨状磷灰石层所有测试样品中。用硅灰石处理的样品显示出更高的磷灰石形成速率,并且该层的形态更接近于现有的生物活性体系。通过使用硅灰石,还观察到磷灰石层的较高结晶度。 SBF的pH值,Ca / P比以及用硅灰石和生物活性玻璃处理的样品上的涂层厚度随着浸入时间的增加而增加。用羟基磷灰石处理的样品上的层厚度也随时间增加,但是SBF的pH和Ca / P比没有变化。 (c)2005年Springer Science + Business Media,Inc.

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