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Study on an electrochemical biosensor for thrombin recognition based on aptamers and nano particles

机译:基于适体和纳米粒子的凝血酶识别电化学生物传感器的研究

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摘要

This paper presents a high specific, sensitive electrochemical biosensor for recognition of protein such as thrombin based on aptamers and nano particles. Two different aptamers were chosen to construct a sandwich manner for detecting thrombin. Aptamer I was immobilized on nano magnetic particle for capturing thrombin, and aptamer II labled with nano gold was used for detection. The electrical current generated from gold after the formation of the complex of magnetic particle, thrombin and nano gold, and then an electrochemical cell designed by ourselves was used for separating, gathering, and electrochemical detecting. Through magnetic separation, high specific and sensitive detection of the target protein, thrombin, was achieved. Linear response was observed over the range 5.6×10~(-12)-1.12×10~(-9) mol/L, with a detection limit of 1.42×10~(-12) mol/L. The presence of other protein as BSA did not affect the detection, which indicates that high selective recognition of thrombin can be achieved in complex biological samples such as human plasma.
机译:本文提出了一种高特异性,灵敏的电化学生物传感器,用于识别基于适体和纳米粒子的蛋白质,例如凝血酶。选择两种不同的适体来构建用于检测凝血酶的夹心方式。将适体I固定在纳米磁性颗粒上以捕获凝血酶,并且将用纳米金标记的适体II用于检测。磁性颗粒,凝血酶和纳米金的复合物形成后,由金产生的电流,然后由我们自己设计的电化学电池用于分离,收集和电化学检测。通过磁分离,实现了目标蛋白凝血酶的高特异性和灵敏检测。在5.6×10〜(-12)-1.12×10〜(-9)mol / L范围内观察到线性响应,检出限为1.42×10〜(-12)mol / L。作为BSA的其他蛋白质的存在不影响检测,这表明可以在复杂的生物样品(例如人血浆)中实现对凝血酶的高度选择性识别。

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