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在不同酸度的人工唾液中镍钛正畸丝的离子释放。

Ion release from NiTi orthodontic wires in artificial saliva with various acidities.

作者信息

Huang Her-Hsiung, Chiu Yu-Hui, Lee Tzu-Hsin, Wu Shih-Ching, Yang Hui-Wen, Su Kuo-Hsiung, Hsu Chii-Chih

机构信息

Institute of Dental Materials, Chung Shan Medical University, Taichung 402, Taiwan.

出版信息

Biomaterials. 2003 Sep;24(20):3585-92. doi: 10.1016/s0142-9612(03)00188-1.

Abstract

NiTi orthodontic wire products from different manufacturers would have different corrosion resistance. We assayed the corrosion resistance, in terms of ion release, of different NiTi orthodontic wires in artificial saliva with various acidities. Four types of as-received commercial NiTi orthodontic wires were immersed in artificial saliva (37 degrees C) at pH 2.5-6.25 for different periods (1-28d). The amount of Ni and Ti ions released from NiTi wires was determined using an atomic adsorption spectrophotometer. Surface morphology and roughness of wires were related to the corrosion resistance. Results showed that the manufacturer, pH value, and immersion period, respectively, had a significantly statistical influence on the release amount of Ni and Ti ions. The amount of Ni ions released in all test solutions was well below the critical value necessary to induce allergy and below daily dietary intake level. The amount of Ti ions released in pH>/=3.75 solution was mostly not detectable, representing that the TiO(2) film on NiTi wires exhibited a good protection against corrosion. Pre-existed surface defects on NiTi wires might be the preferred locations for corrosion. The NiTi wire with the highest release amount of metal ions had the maximal increase in surface roughness after immersion test, while a rougher surface did not correspond to a higher metal ion release.

摘要

不同制造商生产的镍钛正畸丝产品具有不同的耐腐蚀性。我们通过检测不同镍钛正畸丝在不同酸度人工唾液中的离子释放情况,来测定其耐腐蚀性。将四种市售的镍钛正畸丝原样浸入pH值为2.5 - 6.25的人工唾液(37摄氏度)中不同时间(1 - 28天)。使用原子吸收分光光度计测定从镍钛丝中释放的镍和钛离子的量。丝的表面形态和粗糙度与耐腐蚀性有关。结果表明,制造商、pH值和浸泡时间分别对镍和钛离子的释放量有显著的统计学影响。在所有测试溶液中释放的镍离子量远低于引起过敏所需的临界值且低于每日饮食摄入量水平。在pH≥3.75的溶液中释放的钛离子量大多无法检测到,这表明镍钛丝上的TiO₂膜具有良好的防腐蚀保护作用。镍钛丝上预先存在的表面缺陷可能是腐蚀的首选位置。浸泡试验后金属离子释放量最高的镍钛丝表面粗糙度增加最大,而较粗糙的表面并不对应更高的金属离子释放量。

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