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Apatite deposition on thermally and anodically oxidized titanium surfaces in a simulated body fluid.

机译:模拟体液中热和阳极氧化的钛表面上的磷灰石沉积。

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By application of a special specimen set-up, thermally oxidized titanium specimen pairs were found able to deposit apatite on the contact surfaces after soaking for 7 days in the simulated body fluid (SBF) of Kokubo's recipe. The specimens oxidized at 400 degrees C and 500 degrees C showed the highest ability of apatite deposition. Both increase and decrease in oxidation temperature from this range caused the apatite deposition ability to decrease. The specimen without treatment failed to deposit any apatite. Specimens anodically oxidized in electrolytes of H(3)PO(4), H(2)SO(4) and acetic acid exhibited very low ability of apatite deposition. Furthermore, the specimen thermally oxidized at 400 degrees C was even able to help the surfaces of PTFE and silicone deposit apatite in the PTFE-Ti and silicone-Ti pairs. This in vitro experimental results indicated that the difference in apatite deposition among various titanium oxides does exist and can be distinguished by applying the present specimen set-up. The mechanism of the apatite deposition on the contact surfaces was discussed in relation to the passive dissolution of titanium in SBF. The release of titanium hydroxide and OH(-) ions from the titanium surfaces and their accumulation inside the confined space between the two contact surfaces were suggested to be responsible for the apatite deposition.
机译:通过应用特殊的样品设置,发现将热氧化的钛样品对浸泡在Kokubo配方的模拟体液(SBF)中7天后,可以将磷灰石沉积在接触表面上。在400℃和500℃下氧化的样品显示出最高的磷灰石沉积能力。在该范围内,氧化温度的升高和降低均导致磷灰石沉积能力降低。未经处理的样品未能沉积任何磷灰石。标本在H(3)PO(4),H(2)SO(4)和乙酸的电解质中被阳极氧化,显示出极低的磷灰石沉积能力。此外,在400摄氏度下热氧化的样品甚至能够帮助PTFE和有机硅表面在PTFE-Ti和有机硅-Ti对中沉积磷灰石。这项体外实验结果表明,各种钛氧化物之间确实存在磷灰石沉积的差异,并且可以通过应用本标本设置加以区分。讨论了磷灰石沉积在接触表面上的机理与钛在SBF中的被动溶解有关。氢氧化钛和OH(-)离子从钛表面的释放以及它们在两个接触面之间的有限空间内的积累被认为是造成磷灰石沉积的原因。

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