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首页> 外文期刊>Journal of Materials Science >In vitro degradation and cell attachment of a PLGA coated biodegradable Mg–6Zn based alloy
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In vitro degradation and cell attachment of a PLGA coated biodegradable Mg–6Zn based alloy

机译:PLGA涂层可生物降解的Mg-6Zn基合金的体外降解和细胞附着

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摘要

Currently available engineering magnesium alloys have several critical concerns if they are about to be used as biomaterials, particularly the concern about the toxicity of the common alloying elements such as aluminum and rare earth (RE). There is an increasing demand to develop new magnesium alloys that do not contain any toxic elements. It is also desirable, yet challenging, to develop such a material that has a controllable degradation rate in the human fluid environment. This paper presents mechanical properties, degradation, and in vitro cell attachment of a newly developed Mg–6Zn magnesium alloy. The alloy demonstrated comparable mechanical properties with typical engineering magnesium alloys. However, the bare alloy did not show an acceptable corrosion (degradation) rate. Application of a polymeric PLGA or poly(lactide-co-glycolide) coating significantly decreased the degradation rate. The results obtained from cell attachment experiments indicated that the mouse osteoblast-like MC3T3 cells could develop enhanced confluence on and interactions with the coated samples.
机译:当前可用的工程镁合金如果要用作生物材料,则有几个关键问题,特别是铝和稀土(RE)等常见合金元素的毒性问题。对开发不含任何有毒元素的新型镁合金的需求不断增长。还希望开发一种在人流体环境中具有可控制的降解速率的材料,但仍具有挑战性。本文介绍了一种新开发的Mg-6Zn镁合金的机械性能,降解和体外细胞附着。该合金具有与典型的工程镁合金相当的机械性能。但是,裸露的合金没有显示出可接受的腐蚀(降解)速率。聚合PLGA或聚丙交酯-乙交酯共聚物涂层的应用显着降低了降解速率。从细胞贴壁实验获得的结果表明,小鼠成骨样MC3T3细胞可以在包被样品上产生增强的融合作用并与之相互作用。

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