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镁合金:通过体外浸泡试验预测体内腐蚀。

Magnesium alloys: predicting in vivo corrosion with in vitro immersion testing.

机构信息

Department of Anatomy and Structural Biology, University of Otago, Dunedin, New Zealand.

出版信息

J Biomed Mater Res B Appl Biomater. 2012 May;100(4):1134-41. doi: 10.1002/jbm.b.32680. Epub 2012 Feb 14.

DOI:10.1002/jbm.b.32680
PMID:22331609
Abstract

Magnesium (Mg) and its alloys have been proposed as degradable replacements to commonly used orthopedic biomaterials such as titanium alloys and stainless steel. However, the corrosion of Mg in a physiological environment remains a difficult characteristic to accurately assess with in vitro methods. The aim of this study was to identify a simple in vitro immersion test that could provide corrosion rates similar to those observed in vivo. Pure Mg and five alloys (AZ31, Mg-0.8Ca, Mg-1Zn, Mg-1Mn, Mg-1.34Ca-3Zn) were immersed in either Earle's balanced salt solution (EBSS), minimum essential medium (MEM), or MEM-containing 40 g/L bovine serum albumin (MEMp) for 7, 14, or 21 days before removal and assessment of corrosion by weight loss. This in vitro data was compared to in vivo corrosion rates of the same materials implanted in a subcutaneous environment in Lewis rats for equivalent time points. The results suggested that, for the alloys investigated, the EBSS buffered with sodium bicarbonate provides a rate of degradation comparable to those observed in vivo. In contrast, the addition of components such as (4-(2-hydroxyethyl)-1-piperazineethanesulfonic acid) (HEPES), vitamins, amino acids, and albumin significantly increased corrosion rates. Based on these findings, it is proposed that with this in vitro protocol, immersion of Mg alloys in EBSS can be used as a predictor of in vivo corrosion.

摘要

镁(Mg)及其合金已被提议作为常用骨科生物材料(如钛合金和不锈钢)的可降解替代品。然而,在生理环境中镁的腐蚀仍然是一个难以用体外方法准确评估的特性。本研究的目的是确定一种简单的体外浸泡试验,该试验可以提供与体内观察到的腐蚀速率相似的结果。纯镁和五种合金(AZ31、Mg-0.8Ca、Mg-1Zn、Mg-1Mn、Mg-1.34Ca-3Zn)在 Earle 的平衡盐溶液(EBSS)、最低必需培养基(MEM)或含有 40 g/L 牛血清白蛋白的 MEM(MEMp)中浸泡 7、14 或 21 天后,通过重量损失评估腐蚀并去除。将体外数据与相同材料在皮下环境中植入Lewis 大鼠后的体内腐蚀速率进行比较,这些材料在相同时间点进行了植入。结果表明,对于所研究的合金,用碳酸氢钠缓冲的 EBSS 提供了与体内观察到的降解速率相当的速率。相比之下,添加 HEPES(4-(2-羟乙基)-1-哌嗪乙磺酸)、维生素、氨基酸和白蛋白等成分会显著增加腐蚀速率。基于这些发现,建议使用该体外方案,将镁合金浸泡在 EBSS 中可以作为体内腐蚀的预测指标。

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