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首页> 外文期刊>Acta biomaterialia >In vitro degradation and cytotoxicity of Mg/Ca composites produced by powder metallurgy.
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In vitro degradation and cytotoxicity of Mg/Ca composites produced by powder metallurgy.

机译:粉末冶金法生产的Mg / Ca复合材料的体外降解和细胞毒性。

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摘要

Mg/Ca (1 wt.%, 5 wt.%, 10 wt.% Ca) composites were prepared from pure magnesium and calcium powders using the powder metallurgy method, aiming to enlarge the addition of Ca content without the formation of Mg(2)Ca. The microstructures, mechanical properties and cytotoxicities of Mg/Ca composite samples were investigated. The corrosion of Mg/Ca composites in Dulbecco's modified Eagle's medium (DMEM) for various immersion intervals was studied by electrochemical impedance spectroscopy measurements and environmental scanning electron microscope, with the concentrations of released Mg and Ca ions in DMEM for various immersion time intervals being measured. It was shown that the main constitutional phases were Mg and Ca, which were uniformly distributed in the Mg matrix. The ultimate tensile strength (UTS) and elongation of experimental composites decreased with increasing Ca content, and the UTS of Mg/1Ca composite was comparable with that of as-extruded Mg-1Ca alloy. The corrosion potential increased with increasing Ca content, whereas the current density and the impedance decreased. It was found that the protective surface film formed quickly at the initial immersion stage. With increasing immersion time, the surface film became compact, and the corrosion rate of Mg/Ca composites slowed down. The surface film consisted mainly of CaCO(3), MgCO(3)x3H(2)O, HA and Mg(OH)(2) after 72 h immersion in DMEM. Mg/1Ca and Mg/5Ca composite extracts had no significant toxicity (p>0.05) to L-929 cells, whereas Mg/10Ca composite extract induced approximately 40% reduced cell viability.
机译:使用粉末冶金法从纯镁粉和钙粉制备Mg / Ca(1 wt。%,5 wt。%,10 wt。%Ca)复合材料,目的是在不形成Mg(2)的情况下增加Ca的添加量钙研究了Mg / Ca复合材料样品的微观结构,力学性能和细胞毒性。通过电化学阻抗谱测量和环境扫描电子显微镜研究了Dulbecco改良Eagle介质(DMEM)中Mg / Ca复合材料在不同浸入间隔下的腐蚀情况,并测量了DMEM在不同浸入时间间隔下释放的Mg和Ca离子的浓度。 。结果表明,主要的组织相为Mg和Ca,它们均匀分布在Mg基体中。随着Ca含量的增加,复合材料的极限拉伸强度(UTS)和伸长率均降低,Mg / 1Ca复合材料的UTS与挤出Mg-1Ca合金相当。腐蚀电位随Ca含量的增加而增加,而电流密度和阻抗则降低。发现保护表面膜在初始浸渍阶段迅速形成。随着浸泡时间的增加,表面膜变得致密,并且Mg / Ca复合材料的腐蚀速率变慢。在DMEM中浸泡72小时后,表面膜主要由CaCO(3),MgCO(3)x3H(2)O,HA和Mg(OH)(2)组成。 Mg / 1Ca和Mg / 5Ca复合提取物对L-929细胞无明显毒性(p> 0.05),而Mg / 10Ca复合提取物诱导的细胞活力降低约40%。

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