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首页> 外文期刊>Journal of biomedical materials research. Part B, Applied biomaterials. >Corrosion of dental nickel-aluminum bronze with a minor gold content-mechanism and biological impact.
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Corrosion of dental nickel-aluminum bronze with a minor gold content-mechanism and biological impact.

机译:牙科镍铝青铜的腐蚀,含金量少,机理和生物影响小。

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OBJECTIVES: To study corrosion and to evaluate biological effects in vitro of corrosion products of a copper-aluminum-nickel alloy with 2% gold. METHODS: The alloy NPGtrade mark+2 with the nominal composition Cu:77.3; Al:7.8; Ni:4.3; Fe:3.0; Zn:2.7; Au:2.0; and Mn:1.7 was characterized. Static immersion in acidic saline, pH 2.2-2.4, was used to determine release of metallic elements in a milieu simulating the condition of plaque build-up in interproximal areas of the tooth. Corrosion and surface reactions in saline and artificial saliva were studied by electrochemical techniques including registration of open-circuit-potentials, polarization curves and impedance spectra. Extracts were made in cell culture media and acidic saline and used for MTT test for cytotoxicity and HET-CAM method for irritation. RESULTS: The mean amount of elements released in the acidic saline were in microg cm(-2) : Cu:632; Al:210; Ni:144; Fe:122; Zn:48; Mn:52. No protective film was formed on the surface of the alloy, as extensive corrosion was observed in both saline and artificial saliva. The corrosion rate was higher in saline than in artificial saliva. Acidic extracts of the alloy diluted up to 64 times reduced cell viability with 80% or more. The extract induced coagulation of the blood vessels of the CAM and was rated as moderate irritant solution. SIGNIFICANCE: The nickel-aluminum bronze showed high corrosion rate caused by an inability to create a protective surface layer. High levels of toxic elements were found after static immersion testing, and the corrosion products had a distinct adverse effect on the biological activity.
机译:目的:研究含2%金的铜铝镍合金的腐蚀产物并在体外评估其生物学效应。方法:名义成分为Cu:77.3的NPG商标+2合金;铝:7.8;镍:4.3;铁:3.0;锌:2.7;金:2.0;表征了Mn:1.7。静态浸泡在pH 2.2-2.4的酸性盐水中,用于确定环境中金属元素的释放,模拟牙齿近端区域中牙菌斑的形成情况。通过电化学技术研究了盐水和人造唾液中的腐蚀和表面反应,包括开路电位,极化曲线和阻抗谱的记录。提取物在细胞培养基和酸性盐水中制成,用于MTT测试的细胞毒性和HET-CAM方法的刺激性。结果:酸性盐水中释放的平均元素量以microg cm(-2):Cu:632; Al:210; Ni:144;铁:122;锌:48;锰:52。由于在盐水和人工唾液中均观察到广泛腐蚀,因此在合金表面未形成保护膜。盐水中的腐蚀速率高于人工唾液中的腐蚀速率。稀释至64倍的合金酸性提取物可降低细胞活力,达到80%或更高。提取物诱导CAM血管凝结,被评为中度刺激性溶液。重要性:镍铝青铜由于无法形成保护性表面层而显示出高腐蚀速率。静态浸没测试后发现高水平的有毒元素,腐蚀产物对生物活性具有明显的不利影响。

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