Department of Biomedical Sciences, College of Life and Health Sciences, Chubu University, Kasugai, Aichi, Japan.
Acta Biomater. 2010 Jul;6(7):2836-42. doi: 10.1016/j.actbio.2010.01.007. Epub 2010 Jan 13.
A calcium solution treatment was applied to a NaOH-treated titanium metal to give it bioactivity, scratch resistance and moisture resistance. The titanium metal was soaked in a 5 M NaOH solution and then a 100 mM CaCl(2) solution to incorporate Ca(2+) ions into the titanium metal surface by ion exchange. This treated titanium metal was subsequently heated at 600 degrees C and soaked in hot water at 80 degrees C. The NaOH treatment incorporated approximately 5 at.% Na(+) ions into the Ti metal surface. These Na(+) ions were completely replaced by Ca(2+) ions by the CaCl(2) treatment. The number of Ca(2+) ions remained even after subsequent heat and water treatments. Although the NaOH-CaCl(2)-treated titanium metal showed slightly higher apatite-forming ability in a simulated body fluid than the NaOH-treated titanium metal, it lost its apatite-forming ability during the heat treatment. However, subsequent water or autoclave treatment restored the apatite-forming ability of the NaOH-CaCl(2)-heat-treated titanium metal. Although the apatite-forming ability of the NaOH-heat-treated titanium metal decreased dramatically when it was kept at high humidity, that of NaOH-CaCl(2)-heat-water-treated titanium metal was maintained even in the humid environment. The heat treatment increased the critical scratch resistance of the surface layer of the NaOH-CaCl(2)-treated titanium metal remarkably, and it did not deteriorate on subsequent water treatment.
采用钙离子溶液处理经 NaOH 处理的钛金属,以提高其生物活性、耐刮擦性和耐湿性。将钛金属浸泡在 5M NaOH 溶液中,然后浸泡在 100mM CaCl(2)溶液中,通过离子交换将 Ca(2+)离子掺入钛金属表面。将处理过的钛金属随后在 600°C 下加热,并在 80°C 的热水中浸泡。NaOH 处理将约 5at.%的 Na(+)离子掺入 Ti 金属表面。这些 Na(+)离子完全被 CaCl(2)处理中的 Ca(2+)离子取代。Ca(2+)离子的数量即使在随后的热和水治疗后仍保持不变。虽然经 NaOH-CaCl(2)处理的钛金属在模拟体液中的磷灰石形成能力略高于经 NaOH 处理的钛金属,但在热处理过程中失去了磷灰石形成能力。然而,随后的水或高压釜处理恢复了 NaOH-CaCl(2)-热处理钛金属的磷灰石形成能力。尽管经 NaOH 处理的钛金属在高湿度环境下保持时其磷灰石形成能力急剧下降,但经 NaOH-CaCl(2)-热处理-水-处理的钛金属即使在潮湿环境下也能保持。热处理显著提高了 NaOH-CaCl(2)处理钛金属表面层的临界耐刮擦性,并且随后的水疗处理不会使其恶化。