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Quantitative electrical detection of immobilized protein using gold nanoparticles and gold enhancement on a biochip

机译:使用金纳米颗粒和生物芯片上的金增强对固定化蛋白质进行定量电检测

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摘要

Electrical detection of the concentration of protein immobilized on a biochip is demonstrated. The concentration of the direct immobilized protein can be determined by the resistance values measured by an ohm-meter directly. Indium tin oxide interdigitated electrodes were utilized as the detection sites on the biochip. Protein, i.e. antibody, of certain concentration was first immobilized on the detection site. Gold nanoparticles were then applied to indicate the immobilized protein. Since the gold nanoparticles were tiny, a detectable electrical signal could not be generated. Hence, a gold enhancement process was performed for signal amplification. Gold nanoparticles were enlarged physically, such that a conductive metal layer was formed on the detection site. The presence and concentration of protein can be determined by the resistance value across the electrode measured by an ohm-meter. An immobilized protein concentration ranging from 50 to 1000 ng ml~(-1) can be detected quantitatively by the resistance values from 4300 to 1700 OMEGA. The proposed technique is potentially extended for the detection of immunoassay on the biochip. Since the protocol of the electrical detection does not involve sophisticated equipment, it can therefore be used for the development of a portable immunoassay device.
机译:证明了电检测固定在生物芯片上蛋白质的浓度。直接固定的蛋白质的浓度可以通过由欧姆计直接测量的电阻值来确定。氧化铟锡叉指电极被用作生物芯片上的检测位点。首先将一定浓度的蛋白质,即抗体,固定在检测位点上。然后将金纳米颗粒用于指示固定的蛋白质。由于金纳米颗粒很小,因此无法生成可检测到的电信号。因此,执行了金增强工艺以进行信号放大。金纳米颗粒在物理上被扩大,从而在检测部位上形成了导电金属层。蛋白质的存在和浓度可以通过欧姆表测量的电极两端的电阻值来确定。通过4300至1700 OMEGA的抗性值可以定量检测50-1000 ng ml〜(-1)范围内的固定蛋白浓度。所提出的技术可能会扩展到生物芯片上免疫检测的检测。由于电检测方案不涉及复杂的设备,因此可以用于便携式免疫测定设备的开发。

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