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首页> 外文期刊>Acta biomaterialia >Effective inhibition of the early copper ion burst release with ultra-fine grained copper and single crystal copper for intrauterine device application
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Effective inhibition of the early copper ion burst release with ultra-fine grained copper and single crystal copper for intrauterine device application

机译:超细晶粒铜和单晶铜有效抑制宫腔器械应用中早期铜离子爆发释放

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摘要

To solve the main problems of existing coarse grained copper (CG Cu) intrauterine devices (IUD) - namely burst release and a low transfer efficiency of the cupric ions during usage - ultra-fine grained copper (UFG Cu) and single crystal copper (SC Cu) have been investigated as potential substitutes. Their corrosion properties with CG Cu as a control have been studied in simulated uterine fluid (SUF) under different conditions using electrochemical measurement methods. Long-term immersion of UFG Cu, SC Cu and CG Cu samples in SUF at 37°C have been studied for 300 days. A lower copper ion burst release and a higher efficiency release of cupric ions were observed for UFG Cu and SC Cu compared with CG Cu in the first month of immersion and 2 months later. The respective corrosion mechanisms for UFG Cu, SC Cu and CG Cu in SUF are proposed. In vitro biocompatibility tests show a better cellular response to UFG Cu and SC Cu than CG Cu. In terms of instantaneous corrosion behavior, long-term corrosion performance and in vitro biocompatibility, the three pure copper materials follow the order: UFG Cu > SC Cu > CG Cu, which indicates that UFG Cu could be the most suitable candidate material for intrauterine devices.
机译:为了解决现有的粗晶粒铜(CG Cu)宫内节育器(IUD)的主要问题-即爆裂释放和使用过程中铜离子的低转移效率-超细晶粒铜(UFG Cu)和单晶铜(SC Cu)已被研究为潜在的替代品。使用电化学测量方法,在不同条件下的模拟子宫液(SUF)中研究了以CG Cu为对照的腐蚀性能。研究了UFG Cu,SC Cu和CG Cu样品在37°C的SUF中长期浸泡300天。在浸入的第一个月和之后的两个月中,UFG Cu和SC Cu的铜离子爆裂释放量较低,而铜离子的释放效率更高。提出了SUF中UFG Cu,SC Cu和CG Cu的腐蚀机理。体外生物相容性测试显示,与CG Cu相比,细胞对UFG Cu和SC Cu的响应更好。在瞬时腐蚀行为,长期腐蚀性能和体外生物相容性方面,三种纯铜材料遵循以下顺序:UFG Cu> SC Cu> CG Cu,这表明UFG Cu可能是最适合宫内节育器的候选材料。 。

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