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Electrochemically Modulated Nitric Oxide (NO) Releasing Biomedical Devices via Copper(II)-Tri(2-pyridylmethyl)amine Mediated Reduction of Nitrite

机译:通过铜(II)-三(2-吡啶甲基甲基)胺介导的亚硝酸盐还原的电化学调节一氧化氮(NO)释放生物医学装置

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摘要

A controllable and inexpensive electrochemical nitric oxide (NO) release system is demonstrated to improve hemocompatibility and reduce bacterial biofilm formation on biomedical devices. Nitric oxide is produced from the electrochemical reduction of nitrite using a copper(II)-tri(2-pyridylmethyl)amine (Cu(II)TPMA) complex as a mediator, and the temporal profile of NO release can be modulated readily by applying different cathodic potentials. Single lumen and dual lumen silicone rubber catheters are employed as initial model biomedical devices incorporating this novel NO release approach. The modified catheters can release a steady, physiologically-relevant flux of NO for more than 7 days. Both single and dual lumen catheters with continuous NO release exhibit greatly reduced thrombus formation on their surfaces after short-term 7-h intravascular placement in rabbit veins (p < 0,02, n = 6). Three day in vitro antimicrobial experiments, in which the catheters are "turned on" for only 3 h of NO release each day, exhibit more than a 100-fold decrease in the amount of surface attached live bacteria (n = 5). These results suggest that this electrochemical NO generation system could provide a robust and highly effective new approach to improving the thromboresistance and antimicrobial properties of intravascular catheters and potentially other biomedical devices.
机译:已证明可控且便宜的电化学一氧化氮(NO)释放系统可改善血液相容性并减少生物医学设备上细菌生物膜的形成。使用铜(II)-三(2-吡啶基甲基)胺(Cu(II)TPMA)络合物作为介体,通过亚硝酸盐的电化学还原生成一氧化氮,可以通过应用不同的方法轻松调节NO释放的时间分布阴极电位。单腔和双腔硅橡胶导管被用作结合了这种新型NO释放方法的初始模型生物医学设备。改进的导管可以释放稳定的,与生理相关的NO通量超过7天。连续NO释放的单腔和双腔导管在兔子静脉内短期放置7小时后,其表面血栓形成均大大减少(p <0,02,n = 6)。在为期三天的体外抗菌实验中,每天仅“打开” 3小时的NO释放导管,其表面附着的活细菌数量减少了100倍以上(n = 5)。这些结果表明,该电化学NO生成系统可以提供鲁棒且高效的新方法,以改善血管内导管和潜在的其他生物医学装置的抗血栓形成和抗微生物特性。

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