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Opportunities and challenges for the biodegradable magnesium alloys as next-generation biomaterials

机译:可降解镁合金作为下一代生物材料的机遇与挑战

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In recent years, biodegradable magnesium alloys emerge as a new class of biomaterials for tissue engineering and medical devices. Deploying biodegradable magnesium-based materials not only avoids a second surgical intervention for implant removal but also circumvents the long-term foreign body effect of permanent implants. However, these materials are often subjected to an uncontrolled and fast degradation, acute toxic responses and rapid structural failure presumably due to a localized, too rapid corrosion process. The patented Mg–Nd–Zn–based alloys (JiaoDa BioMg [JDBM]) have been developed in Shanghai Jiao Tong University in recent years. The alloy series exhibit lower biodegradation rate and homogeneous nanophasic degradation patterns as compared with other biodegradable Mg alloys. The in vitro cytotoxicity tests using various types of cells indicate excellent biocompatibility of JDBM. Finally, bone implants using JDBM-1 alloy and cardiovascular stents using JDBM-2 alloy have been successfully fabricated and in vivo long-term assessment via implantation in animal model have been performed. The results confirmed the reduced degradation rate in vivo, excellent tissue compatibility and long-term structural and mechanical durability. Thus, this novel Mg-alloy series with highly uniform nanophasic biodegradation represent a major breakthrough in the field and a promising candidate for manufacturing the next generation biodegradable implants.
机译:近年来,可生物降解的镁合金作为一种新型的用于组织工程和医疗设备的生物材料出现。部署可生物降解的镁基材料不仅避免了第二次手术去除植入物,而且避免了永久性植入物的长期异物影响。但是,这些材料经常会由于局部的,过快的腐蚀过程而受到无法控制的快速降解,剧烈的毒性反应和快速的结构破坏。近年来,上海交通大学已经开发了获得专利的Mg-Nd-Zn基合金(JiaoDa BioMg [JDBM])。与其他可生物降解的镁合金相比,该系列合金具有较低的生物降解速率和均相的纳米相降解模式。使用各种类型细胞的体外细胞毒性测试表明,JDBM具有出色的生物相容性。最后,已成功制造了使用JDBM-1合金的骨植入物和使用JDBM-2合金的心血管支架,并通过动物模型进行了体内长期体内评估。结果证实体内降低的降解速率,优异的组织相容性以及长期的结构和机械耐久性。因此,这种具有高度均一的纳米相生物降解性的新型镁合金系列是该领域的重大突破,是制造下一代可生物降解植入物的有希望的候选者。

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