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On the Determination of Magnesium Degradation Rates under Physiological Conditions

机译:生理条件下镁降解速率的测定

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摘要

The current physiological in vitro tests of Mg degradation follow the procedure stated according to the ASTM standard. This standard, although useful in predicting the initial degradation behavior of an alloy, has its limitations in interpreting the same for longer periods of immersion in cell culture media. This is an important consequence as the alloy’s degradation is time dependent. Even if two different alloys show similar corrosion rates in a short term experiment, their degradation characteristics might differ with increased immersion times. Furthermore, studies concerning Mg corrosion extrapolate the corrosion rate from a single time point measurement to the order of a year (mm/y), which might not be appropriate because of time dependent degradation behavior. In this work, the above issues are addressed and a new methodology of performing long-term immersion tests in determining the degradation rates of Mg alloys was put forth. For this purpose, cast and extruded Mg-2Ag and powder pressed and sintered Mg-0.3Ca alloy systems were chosen. DMEM Glutamax +10% FBS (Fetal Bovine Serum) +1% Penicillin streptomycin was used as cell culture medium. The advantages of such a method in predicting the degradation rates in vivo deduced from in vitro experiments are discussed.
机译:当前的Mg降解生理体外试验遵循ASTM标准规定的程序。尽管该标准可用于预测合金的初始降解行为,但在将其长时间浸泡在细胞培养基中时仍存在局限性。这是重要的结果,因为合金的降解取决于时间。即使两种不同的合金在短期实验中显示出相似的腐蚀速率,它们的降解特性也可能随着浸入时间的增加而不同。此外,有关镁腐蚀的研究将腐蚀速率从单个时间点测量推算到一年(mm / y)的数量级,由于时间相关的降解行为,这可能不合适。在这项工作中,解决了上述问题,并提出了一种进行长期浸泡试验以确定Mg合金降解速率的新方法。为此,选择了铸造和挤压Mg-2Ag以及粉末压制和烧结Mg-0.3Ca合金系统。将DMEM Glutamax + 10%FBS(胎牛血清)+ 1%青霉素链霉素用作细胞培养基。讨论了这种方法在预测由体外实验推导的体内降解速率方面的优势。

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