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纯镁在体外对葡萄糖的降解反应。

In vitro degradation of pure Mg in response to glucose.

作者信息

Zeng Rong-Chang, Li Xiao-Ting, Li Shuo-Qi, Zhang Fen, Han En-Hou

机构信息

1] College of Materials Science and Engineering, Shandong University of Science and Technology, Qingdao 266590, China [2] State Key Laboratory of Mining Disaster Prevention and Control Co-founded by Shandong Province and the Ministry of Science and Technology, Shandong University of Science and Technology, Qingdao 266590, China.

National Engineering Center for Corrosion Control, Institute of Metals Research, Chinese Academy of Sciences, Shenyang 110016, China.

出版信息

Sci Rep. 2015 Aug 12;5:13026. doi: 10.1038/srep13026.

Abstract

Magnesium and its alloys are promising biodegradable biomaterials but are still challenging to be used in person with high levels of blood glucose or diabetes. To date, the influence of glucose on magnesium degradation has not yet been elucidated, this issue requires more attention. Herein, we present pure Mg exhibiting different corrosion responses to saline and Hank's solutions with different glucose contents, and the degradation mechanism of pure Mg in the saline solution with glucose in comparison with mannitol as a control. On one hand, the corrosion rate of pure Mg increases with the glucose concentration in saline solutions. Glucose rapidly transforms into gluconic acid, which attacks the oxides of the metal and decreases the pH of the solution; it also promotes the absorption of chloride ions on the Mg surface and consequently accelerates corrosion. On the other hand, better corrosion resistance is obtained with increasing glucose content in Hank's solution due to the fact that glucose coordinates Ca(2+) ions in Hank's solution and thus improves the formation of Ca-P compounds on the pure Mg surface. This finding will open up new avenues for research on the biodegradation of bio-Mg materials in general, which could yield many new and interesting results.

摘要

镁及其合金是很有前景的可生物降解生物材料,但对于血糖水平高的人或糖尿病患者来说,其应用仍具有挑战性。迄今为止,葡萄糖对镁降解的影响尚未阐明,这个问题需要更多关注。在此,我们展示了纯镁在不同葡萄糖含量的盐水和汉克溶液中表现出不同的腐蚀反应,并将纯镁在含葡萄糖的盐溶液中的降解机制与作为对照的甘露醇进行了比较。一方面,纯镁在盐溶液中的腐蚀速率随葡萄糖浓度的增加而增加。葡萄糖迅速转化为葡萄糖酸,它会侵蚀金属氧化物并降低溶液的pH值;它还促进氯离子在镁表面的吸附,从而加速腐蚀。另一方面,随着汉克溶液中葡萄糖含量的增加,纯镁的耐腐蚀性更好,这是因为葡萄糖与汉克溶液中的Ca(2+)离子配位,从而促进了纯镁表面Ca-P化合物的形成。这一发现将为一般生物镁材料的生物降解研究开辟新的途径,可能会产生许多新的有趣结果。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b628/4532994/7e52ae0f343e/srep13026-f1.jpg

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