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首页> 外文期刊>Journal of orofacial orthopedics >On the In Vitro Biocompatibility of Elgiloy?, a Co-based Alloy, Compared to Two Titanium Alloys
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On the In Vitro Biocompatibility of Elgiloy?, a Co-based Alloy, Compared to Two Titanium Alloys

机译:与两种钛合金相比,钴基合金Elgiloy?的体外生物相容性

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The aim of the present investigation was to contribute to an understanding of the effects of surface topography and chemical composition on the corrosion behavior and thus the biocompatibility of Elgiloy (RMO, Denver, CO, USA), a common Co-based alloy. Material and Methods: The results are compared with those obtained for a binary NiTi alloy, Neo Sentalloy~(TM) (GAC, Central Islip, NY, USA) and a B-III-Ti alloy, TMA (Ormco, Glendora, CA, USA). In the present study, the surface topography and the chemical composition of two different grades of Elgiloy, Blue Elgiloy (soft) and Yellow Elgiloy? (ductile), were examined by means of scanning electron microscopy (SEM) and energy-dispersive spectroscopy analysis (EDS). Their corrosion behavior in half-strength Ringer solution and in an artificial saliva solution according to Barrett [1] was investigated using potentiodynamic corrosion testing (PDC). The photometry-based PAN method was used to quantify the released Ni and Co ions. The in vitro biocompatibility of the two grades of Elgiloy was tested in three different cell cultures: in L929, a commercially available mouse fibroblast cell line, and in primary human epithelial cells and fibroblasts. Results: The results of the corrosion testing showed satisfactorily high pitting corrosion potentials but lower repassivation potentials and a strong increase in current density once pitting had occurred. The photometric results revealed the release of Ni and Co ions in both tested electrolytes. The tested native surfaces exhibited numerous grinding and polishing grooves, inclusions and inhomogeneities of the microstructure. After corrosion testing the same surfaces displayed numerous signs of corrosion, especially in areas with microstructural inhomogeneities. In vitro biocompatibility testing showed a substantially reduced dehydrogenase activity in the presence of Elgiloy. The reduced quality of surface finish resulting from the manufacturing process led in the case of the tested Elgiloy types to decreased corrosion resistance with consequently reduced in vitro biocompatibility. Conclusions: In this context it is also conceivable that patients with a proven allergy to nickel, cobalt or chromium may react sensitively to the deployment of this alloy, at least in the surface quality tested by us. From this aspect, the introduction of a binding standard for the surface quality of materials used in orthodontic appliances is urgently recommended.
机译:本研究的目的是有助于理解表面形貌和化学成分对腐蚀行为的影响,从而有助于了解常见的钴基合金Elgiloy(RMO,Denver,CO,美国)的生物相容性。材料和方法:将结果与二元NiTi合金Neo SentalloyTM(GAC,美国纽约州中央伊斯利普)和B-III-Ti合金TMA(Ormco,Glendora,CA,美国)。在本研究中,两种不同等级的Elgiloy,Blue Elgiloy(软)和Yellow Elgiloy?的表面形貌和化学组成?通过扫描电子显微镜(SEM)和能量色散光谱分析(EDS)来检查(延性)。根据电位计Barrett [1],使用电位动力腐蚀试验(PDC)研究了它们在半强度林格溶液和人工唾液中的腐蚀行为。基于光度法的PAN方法用于定量释放的Ni和Co离子。在三种不同的细胞培养物中测试了两种等级的Elgiloy的体外生物相容性:在L929(一种市售的小鼠成纤维细胞系)以及原代人上皮细胞和成纤维细胞中。结果:腐蚀试验的结果表明,令人满意的高点蚀腐蚀电位,但较低的再钝化电位,一旦出现点蚀,电流密度就会大大增加。光度结果表明,两种测试电解液中均释放了Ni和Co离子。经测试的原始表面表现出许多研磨和抛光槽,微结构的夹杂物和不均匀性。腐蚀测试后,相同的表面显示出许多腐蚀迹象,尤其是在微观结构不均匀的区域。体外生物相容性测试显示,在Elgiloy存在下,脱氢酶活性大大降低。在测试的Elgiloy类型的情况下,由于制造过程而导致的表面光洁度降低,导致耐蚀性降低,从而导致体外生物相容性降低。结论:在这种情况下,也可以设想对镍,钴或铬过敏的患者对这种合金的部署可能会产生敏感的反应,至少在我们测试的表面质量上。从这个方面出发,迫切建议引入一种用于正畸矫治器中材料表面质量的结合标准。

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