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Detection of Sequence-Specific Gene by Multi-Channel Electrochemical DNA Chips

机译:多通道电化学DNA芯片检测序列特异性基因

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摘要

Five-channel electrochemical chips were fabricated based on the Micro-electromechanical System (MEMS) technology and were used as platforms to develop DNA arrays. Different kinds of thiolated DNA strands, whose sequences were related to white spot syndrome virus (WSSV) gene, were separately immobilized onto different working electrodes to fabricate a combinatorial biosensor system. As a result, different kinds of target DNA could be analyzed on one chip via a simultaneous recognition process using potassium ferricyanide as an indicator. To perfonn quantitative target DNA detection, a limit of 70 nM (S/N=3) was found in the presence of 600 nM coexisting noncomplementary ssDNA. The real samples of loop-mediated isothermal amplification (LAMP) products were detected by the proposed method with satisfactory result, suggesting that the multichannel chips had the potential for a high effective microdevice to recognize specific gene sequence for point-of-care applications.
机译:基于微机电系统(MEMS)技术制造了五通道电化学芯片,并将其用作开发DNA阵列的平台。将其序列与白斑综合症病毒(WSSV)基因相关的不同种类的硫醇化DNA链分别固定在不同的工作电极上,以制造组合生物传感器系统。结果,通过使用铁氰化钾作为指示剂的同时识别过程,可以在一个芯片上分析不同种类的目标DNA。为了进行定量目标DNA检测,在存在600 nM共存非互补ssDNA的情况下,发现限度为70 nM(S / N = 3)。所提出的方法检测到的环介导的等温扩增(LAMP)产物的真实样品具有令人满意的结果,表明该多通道芯片具有用于高效微设备识别即时基因应用的特定基因序列的潜力。

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