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An impedimetric bioaffinity sensing chip integrated with the long-range DC-biased AC electrokinetic centripetal vortex produced in a high conductivity solution

机译:与高电导率解决方案中产生的长程直流偏置交流电动向心涡流集成的阻抗式生物亲和感测芯片

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摘要

Immunoreaction of specific antibodies to antigens is widely used in numerous immunoanalysis applications. However, diffusion-dominated transport in stationary solutions limits the rate and binding density of immunoreaction. This research describes the construction of chip-type concentric multi-double ring electrodes and single central disk electrode. A +1 V-biased 6 Vpp voltage was applied to the multi-double ring electrodes to induce a long-range DC-biased AC electrokinetic flow (ACEKF). The immunoreaction was quantified by electrochemical impedance spectrum (EIS). Fluorescence-labeled secondary antibody (FLSA) and protein A were exemplified as an immunoreacting model to demonstrate the effect of ACEKF on immunoreaction efficiency. The results showed that FLSA binding can reach a plateau in 8 min with the DC-biased ACEKF vortex, and the increment of electron transfer resistance is 2.26 times larger than that obtained in the unstirred solution. The sensitivity of the calibration curves obtained by EIS detection with the aid of DC-biased ACEKF vortex is 1.51 times larger than that obtained in an unstirred solution. The label-free EIS-based sensing chip integrated with the long-range DC-biased ACEKF vortex promises to facilitate immunoreaction efficiency, which is beneficial for the development of a miniature and fast-detection in vitro diagnostic device.
机译:特异性抗体对抗原的免疫反应被广泛用于许多免疫分析应用中。但是,固定溶液中以扩散为主的转运限制了免疫反应的速率和结合密度。该研究描述了芯片型同心多双环电极和单中心圆盘电极的构造。将+1 V偏置的6 Vpp电压施加到多双环电极上,以引起远距离DC偏置的交流电动势(ACEKF)。通过电化学阻抗谱(EIS)定量免疫反应。以荧光标记的二抗(FLSA)和蛋白A作为免疫反应模型为例,以证明ACEKF对免疫反应效率的影响。结果表明,通过直流偏置的ACEKF涡旋,FLSA结合可以在8分钟内达到平稳状态,并且电子传递阻力的增加是未搅拌溶液中电子转移阻力的2.26倍。通过直流偏置的ACEKF涡流通过EIS检测获得的校准曲线的灵敏度比未搅拌的溶液高1.51倍。无标签的基于EIS的传感芯片与远程DC偏置的ACEKF涡流集成在一起,有望提高免疫反应效率,这有利于开发小型,快速检测的体外诊断设备。

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