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Integration of Fractal Biosensor in a Digital Microfluidic Platform

机译:分形生物传感器在数字微流控平台中的集成

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摘要

The digital microfluidic (DMF) platform introduces many applications in biomedical assays. If it is to be commercially available to the public, it needs to have the essential features of smart sensing and a compact size. In this work, we report on a fractal electrode biosensor that is used for both droplet actuation and sensing C-reactive protein (CRP) concentration levels to assess cardiac disease risk. Our proposed electrode is the first two-terminal electrode design to be integrated into DMF platforms. A simulation of the electrical field distribution shows reduced peak intensities and uniform distribution of the field. When compared to a V-notch square electrode, the fractal electrode shows a superior performance in both aspects, i.e. field uniformity and intensity. These improvements are translated into a successful and responsive actuation of a water droplet with 100V. Likewise, the effective dielectric strength is improved by a 33% increase in the fractal electrode breakdown voltage. Additionally, the capability of the fractal electrode to work as a capacitive biosensor is evaluated with CRP quantification test. Selected fractal electrodes undergo a surface treatment to immobilize anti-CRP antibodies on their surface. The measurement shows a response to the added CRP in capacitance within three minutes. When the untreated electrodes were used for quantification, there was no significant change in capacitance, and this suggested that immobilization was necessary. The electrodes configuration in the fabricated DMF platform allows the fractal electrodes to be selectively used as biosensors, which means the device could be integrated into point-of-care applications.
机译:数字微流控(DMF)平台在生物医学检测中引入了许多应用。如果要在市场上出售,则必须具有智能感应的基本功能和紧凑的尺寸。在这项工作中,我们报告了一种分形电极生物传感器,该传感器既可用于液滴驱动,又可用于检测C反应蛋白(CRP)浓度水平,以评估心脏病的风险。我们提出的电极是第一个集成到DMF平台中的两端子电极设计。电场分布的模拟显示出降低的峰值强度和均匀的电场分布。当与V形切口方形电极相比时,分形电极在两个方面即场均匀性和强度方面都表现出优异的性能。这些改进转化为100V水滴的成功响应。同样,通过将分形电极击穿电压提高33%,可以提高有效介电强度。另外,通过CRP定量测试评估了分形电极用作电容式生物传感器的能力。选定的分形电极经过表面处理,将抗CRP抗体固定在其表面上。测量结果显示在三分钟内对增加的电容CRP的响应。当未处理的电极用于定量时,电容没有显着变化,这表明固定是必要的。制成的DMF平台中的电极配置使分形电极可以有选择地用作生物传感器,这意味着该设备可以集成到即时医疗应用中。

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