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The use of multiple pseudo-physiological solutions to simulate the degradation behavior of pure iron as a metallic resorbable implant: a surface-characterization study

机译:使用多种假生理学方法模拟纯铁作为金属可吸收植入物的降解行为:表面表征研究

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摘要

Understanding the interactions of a pure iron surface with biological elements, such as ions and proteins in an aqueous medium, is essential for an accurate in vitro assessment of corrosion patterns. In fact, the synergy of chlorides, carbonates, phosphates and complex organic molecules present in the body environment is a key factor affecting both in vivo and in vitro degradation of materials, especially iron and its alloys. The aim of this work was the assessment of degradation patterns of pure iron in 5 commercial pseudo-physiological solutions by a thorough study of degraded surface chemistry and morphology. It also provides a methodological basis to understand the short-term degradation mechanism of degradable iron depending on the surrounding physiological media. The standard static immersion corrosion test was modified to adapt the procedure to pseudo-physiological solutions. After a 14-day static immersion test, the surfaces of samples were investigated by scanning electron microscopy, stylus profilometry and atomic force microscopy techniques. The chemistry and phase composition of the degraded layers were evaluated, respectively, by X-ray photoelectron spectrometry and X-ray diffractometry. The morphology and composition of the degradation layers were found to be different for the test-solutions: for phosphate-rich solutions, the formation of an adherent passive layer was found; degradation mechanisms related to general corrosion were predominant for all the other solutions. In conclusion, the chemical composition of the used medium plays a fundamental role in the degradation pattern of pure iron, so that direct comparisons of solutions with different ion concentrations, as reported in the literature, need to be carefully assessed.
机译:了解纯铁表面与生物元素(例如水性介质中的离子和蛋白质)的相互作用,对于准确地体外评估腐蚀模式至关重要。实际上,存在于人体环境中的氯化物,碳酸盐,磷酸盐和复杂的有机分子的协同作用是影响材料(尤其是铁及其合金)在体内和体外降解的关键因素。这项工作的目的是通过彻底研究降解的表面化学和形态来评估5种商业伪生理溶液中纯铁的降解模式。它还提供了一种方法学依据,可以根据周围的生理介质了解可降解铁的短期降解机理。修改了标准静态浸没腐蚀试验,以使该程序适应假生理学解决方案。经过14天的静态浸没测试,通过扫描电子显微镜,测针轮廓仪和原子力显微镜技术研究了样品的表面。通过X射线光电子能谱法和X射线衍射法分别评估了降解层的化学和相组成。对于测试溶液,发现降解层的形态和组成是不同的:对于富含磷酸盐的溶液,发现粘附的钝化层的形成。所有其他解决方案均以与一般腐蚀有关的降解机理为主。总之,所用介质的化学成分在纯铁的降解模式中起着基本作用,因此,如文献中所报道的,具有不同离子浓度的溶液的直接比较需要仔细评估。

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