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镁基可生物降解合金:降解、应用及合金元素

Magnesium-based biodegradable alloys: Degradation, application, and alloying elements.

作者信息

Pogorielov Maksym, Husak Eugenia, Solodivnik Alexandr, Zhdanov Sergii

机构信息

Medical Institute, Sumy State University, Sumy, Ukraine.

出版信息

Interv Med Appl Sci. 2017 Mar;9(1):27-38. doi: 10.1556/1646.9.2017.1.04.

Abstract

In recent years, the paradigm about the metal with improved corrosion resistance for application in surgery and orthopedy was broken. The new class of biodegradable metal emerges as an alternative for biomedical implants. These metals corrode gradually with an appropriate host response and release of corrosion products. And it is absolutely necessary to use essential metals metabolized by hosting organism with local and general nontoxic effect. Magnesium serves this aim best; it plays the essential role in body metabolism and should be completely excreted within a few days after degradation. This review summarizes data from Mg discovery and its first experimental and clinical application of modern concept of Mg alloy development. We focused on biodegradable metal application in general surgery and orthopedic practice and showed the advantages and disadvantages Mg alloys offer. We focused on methods of and investigation of degradable Mg alloys and correlation between these methods. Based on the observed data, a better way for new alloy pre-clinical investigation is suggested. This review analyzes possible alloying elements that improve corrosion rate, mechanical properties, and gives the appropriate host response.

摘要

近年来,用于外科手术和矫形术的具有改善耐腐蚀性的金属范式被打破。新型可生物降解金属作为生物医学植入物的替代品出现。这些金属会随着适当的宿主反应和腐蚀产物的释放而逐渐腐蚀。并且使用被宿主机体代谢且具有局部和全身无毒作用的必需金属是绝对必要的。镁最能满足这一目标;它在身体代谢中起重要作用,并且在降解后几天内应该完全排出体外。本综述总结了镁的发现数据及其在现代镁合金开发概念中的首次实验和临床应用。我们重点关注了可生物降解金属在普通外科和骨科实践中的应用,并展示了镁合金的优缺点。我们重点关注了可降解镁合金的研究方法以及这些方法之间的相关性。基于观察到的数据,提出了一种更好的新型合金临床前研究方法。本综述分析了可能改善腐蚀速率、机械性能并给出适当宿主反应的合金元素。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/bc15/5598119/9ff822ed84ce/imas-09-01-27_f001.jpg

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