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首页> 外文期刊>Biosensors & Bioelectronics: The International Journal for the Professional Involved with Research, Technology and Applications of Biosensers and Related Devices >Development of an aptamer-based impedimetric bioassay using microfluidic system and magnetic separation for protein detection
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Development of an aptamer-based impedimetric bioassay using microfluidic system and magnetic separation for protein detection

机译:基于适配子的阻抗测定生物测定法的开发,该测定法采用微流体系统和磁分离技术进行蛋白质检测

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摘要

An aptamer-based impedimetric bioassay using the microfluidic system and magnetic separation was developed for the sensitive and rapid detection of protein. The microfluidic impedance device was fabricated through integrating the gold interdigitated array microelectrode into a flow cell made of polydimethylsiloxane (PDMS). Aptamer modified magnetic beads were used to capture and separate the target protein, and concentrated into a suitable volume. Then the complexes were injected into the microfluidic flow cell for impedance measurement. To demonstrate the high performance of this novel detection system, thrombin was employed as the target protein. The results showed that the impedance signals at the frequency of 90 kHz have a good linearity with the concentrations of thrombin in a range from 0.1 nM to 10 nM and the detection limit is 0.01 nM. Compared with the reported impedimetric aptasensors for thrombin detection, this method possesses several advantages, such as the increasing sensitivity, improving reproducibility, reducing sample volume and assay time. All these demonstrate the proposed detection system is an alternative way to enable sensitive, rapid and specific detection of protein.
机译:开发了基于适配子的阻抗测定生物测定法,该测定法使用微流体系统和磁分离技术来灵敏快速地检测蛋白质。通过将金指状阵列微电极集成到由聚二甲基硅氧烷(PDMS)制成的流通池中来制造微流体阻抗装置。适体修饰的磁珠用于捕获和分离目标蛋白,并浓缩至合适的体积。然后将络合物注入微流体流通池进行阻抗测量。为了证明这种新型检测系统的高性能,凝血酶被用作目标蛋白。结果表明,阻抗信号在90 kHz频率下具有良好的线性,凝血酶浓度在0.1 nM至10 nM之间,检出限为0.01 nM。与报道的用于凝血酶检测的阻抗式适体传感器相比,该方法具有一些优势,例如,灵敏度提高,重现性提高,样品量减少和测定时间减少。所有这些证明了所提出的检测系统是实现灵敏,快速和特异性蛋白质检测的另一种方法。

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