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Development of Cell Impedance Based Sensing System for the Nanotoxicity Assay

机译:基于细胞阻抗的纳米毒性测定传感系统的研制

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The integration of nanomaterials and biotechnology is widely utilized and has great potential in rapidly developing fields such as biomedical engineering research, drug delivery, environmental health, pharmaceutical industries and even electronics and communication technologies. With this rapid development, questions have arisen whether the use of these new nanoscale materials (including nanotubes, nanowires, nanowhiskers, fullerenes or buckyballs, and quantum dots) might have unintended human health hazards. In this paper, we describe an electrical impedance measuring biosensor that can perform cytotoxicity assays of gold, silver cadmium oxide and carbon nanotubes (multi-walled and single-walled) on human lung fibroblasts with a shorter run time, easier performance and more precise results than previous methods. By measuring the resistance change when cells attach to the electrodes on the biosensing chip, toxicity levels of the various materials were recorded. Our method was successful in measuring the known toxic effects of cadmium oxide as well as the unexpected toxicity of silver in the small range of size (10 nm) within a much shorter time frame of 40 hours compared to 24 to 96 hours of current the biological methods.
机译:纳米材料和生物技术的集成广泛的应用,并在迅速发展的领域,如生物医学工程研究,药物递送,健康环保,制药等行业,甚至电子和通信技术的巨大潜力。有了这个快速发展,问题已经出现了使用这些新的纳米材料(包括纳米管,纳米线,纳米晶须,富勒烯或巴基球和量子点)是否可能产生意想不到的危害人类健康。在本文中,我们描述一个电阻抗测量的生物传感器,可以执行的金细胞毒性测定法,氧化银镉和碳纳米管(多壁和单壁)对人肺成纤维细胞用更短的运行时间,更容易性能和更精确的结果比以前的方法。通过测量电阻变化时的细胞附着到生物传感芯片上的电极,所述各种材料的毒性水平的记录。我们的方法成功地相比24至96小时的电流的生物的40小时更短的时间框架内测量氧化镉的已知毒性作用以及银的在小范围内的尺寸(10纳米)的出乎意料的毒性方法。

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