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A electrochemiluminescence aptasensor for detection of thrombin incorporating the capture aptamer labeled with gold nanoparticles immobilized onto the thio-silanized ITO electrode

机译:一种用于检测凝血酶的电化学发光适体传感器,该传感器包含固定有硫代硅烷化ITO电极的金纳米颗粒标记的捕获适体

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摘要

A novel electrochemiluminescence (ECL) aptasensor was proposed for sensitive and cost-effective detection of the target thrombin adopted an aptamer-based sandwich format. To detect thrombin, capture aptamers labeled with gold nanoparticles (AuNPs) were first immobilized onto the thio-silanized ITO electrode surface through strong Au-S bonds. After catching the target thrombin, signal aptamers tagged with ECL labels were attached to the assembled electrode surface. As a result, an AuNPs-capture-aptamer/thrombin/ECL-tagged-signal-aptamer sandwich type was formed. Treating the resulting electrode surface with tri-n-propylamine (TPA) and applying a swept potential to the electrode, ECL response was generated which realized the detection of target protein. Spectroscopy and electrochemical impedance techniques were used to characterize and confirm the fabrication of the ECL aptasensor. AuNPs amplification and smart sensor fabrication art were implemented for the sensitive and cost-effective detection purpose. Signal-to-dose curve excellently followed a sandwich format equation and could be used to quantify the protein, and the detection limit was estimated to be 10 nM. Other forms of thrombin such as β- and γ-thrombins had negligible response, which indicated a high specificity of α-thrombin detection. The aptasensor opened up new fields of aptamer applications in ECL domain, a highly sensitive technique, and had a promising perspective to be applied in microarray analysis.
机译:提出了一种新颖的电化学发光(ECL)适体传感器,用于采用基于适体的夹心形式对目标凝血酶进行灵敏且经济高效的检测。为了检测凝血酶,首先将金纳米颗粒(AuNPs)标记的捕获适体通过牢固的Au-S键固定在硫代硅烷化的ITO电极表面上。捕获目标凝血酶后,将标记有ECL标签的信号适体附着到组装好的电极表面。结果,形成了AuNPs捕获适体/凝血酶/ ECL标记信号适体夹心型。用三正丙胺(TPA)处理所得电极表面并向电极施加扫描电位,产生ECL响应,从而实现了目标蛋白的检测。光谱学和电化学阻抗技术被用来表征和确认ECL aptasensor的制造。 AuNPs扩增和智能传感器制造技术的实现是为了灵敏且具有成本效益的检测目的。信号-剂量曲线极好地遵循三明治格式方程,可用于定量蛋白质,检测极限估计为10 nM。其他形式的凝血酶,例如β-和γ-凝血酶,其响应可以忽略不计,这表明α-凝血酶检测具有很高的特异性。适体传感器在高度敏感的ECL领域开辟了适体应用的新领域,并在微阵列分析中具有广阔的应用前景。

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