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首页> 外文期刊>Journal of Materials Science: Materials in Medicine >Biocompatibility analysis of an electrically-activated silver-based antibacterial surface system for medical device applications
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Biocompatibility analysis of an electrically-activated silver-based antibacterial surface system for medical device applications

机译:用于医疗设备的电活化银基抗菌表面系统的生物相容性分析

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摘要

The costs associated with the treatment of medical device and surgical site infections are a major cause of concern in the global healthcare system. To prevent transmission of such infections, a prophylactic surface system that provides protracted release of antibacterial silver ions using low intensity direct electric current (LIDC; 28 μA system current at 6 V) activation has been recently developed. To ensure the safety for future in vivo studies and potential clinical applications, this study assessed the biocompatibility of the LIDC-activated interdigitated silver electrodes-based surface system; in vitro toxicity to human epidermal keratinocytes, human dermal fibroblasts, and normal human osteoblasts, and antibacterial efficacy against Staphylococcus aureus and Escherichia coli was evaluated. The study concluded that the technological applications of the surface system for medical devices and surgical tools, which contact human tissues for less than 1.5 h, are expected to be self-sterilizing without causing toxicity in vivo.
机译:与医疗器械和手术部位感染的治疗相关的费用是全球医疗保健系统关注的主要原因。为了防止此类感染的传播,最近开发了一种预防性表面系统,该系统使用低强度直流电(LIDC; 6 V时的28μA系统电流)激活可长时间释放抗菌银离子。为了确保未来体内研究和潜在临床应用的安全性,本研究评估了LIDC激活的叉指式银电极表面系统的生物相容性。评估了对人表皮角质形成细胞,人皮肤成纤维细胞和正常人成骨细胞的体外毒性,以及对金黄色葡萄球菌和大肠杆菌的抗菌效果。该研究得出的结论是,与人体组织接触不到1.5小时的医疗设备和外科手术工具表面系统的技术应用有望自我杀菌,而不会在体内引起毒性。

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    Center for Chemical Toxicology Research and Pharmacokinetics North Carolina State University">(1);

    Edward P. Fitts Department of Industrial Systems and Engineering">(2);

    Joint Department of Biomedical Engineering North Carolina State University">(4);

    Extremity Trauma Research/Regenerative Medicine United States Army Institute of Surgical Research">(5);

    Edward P. Fitts Department of Industrial Systems and Engineering">(2);

    Center for Chemical Toxicology Research and Pharmacokinetics North Carolina State University">(1);

    Joint Department of Biomedical Engineering North Carolina State University">(4);

    Department of Anatomy and Physiology Kansas State University">(6);

    Department of Population Health and Pathobiology North Carolina State University">(3);

    Edward P. Fitts Department of Industrial Systems and Engineering">(2);

    Joint Department of Biomedical Engineering North Carolina State University">(4);

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