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Aptamer-Based Single-Step Assay by the Fluorescence Enhancement on Electroless Plated Nano Au Substrate

机译:化学镀纳米金基底上荧光增强的基于适体的一步测定

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摘要

A new single-step aptamer-based surface-enhanced fluorescent optical sensor is built, by combining an aptamer–target interaction for target recognition and a fluorophore interaction for signal enhancement. The developed aptasensor is simple, sensitive, specific and stable for the detection of thrombin. A new nanometallic Au structure in the range of 100 nm was constructed through effective electroless plating method on a Cu thin film. Cu+ ions act as sacrificial seeds for the reduction of Au2+/3+ ions to form Au nanolawns. In order to utilize the structure for a fluorescence-based sensor, aptamer conjugated with Cy3 was immobilized on the nanogold substrate through electrostatic attraction. The Au substrate was coated with chitosan (molecular weight 1000 Da). Thrombin binding aptamer (TBA) was applied as a model system demonstrating the aptamer-based fluorescence assay on nanogold substrates. Thrice-enhanced fluorescence emission was achieved with Cy3-conjugated TBA stably immobilized on the chitosan-coated Au substrate. The intensity change was proportional to the concentration of thrombin from 10 μM to 10 pM, whereas the intensity change was ignorable for other proteins such as human serum albumin (HSA). Aptamer-based assay benefited from simple immobilization of receptors and Au nanostructure contributed in building an effective surface enhancing/positively charged substrate was proved. Such an aptasensor holding high utilities for point-of-care devices by incorporating simplicity, sensitivity and selectivity in detection, low-cost for test, small sample volumes has been developed.
机译:通过结合适体-靶相互作用以进行靶识别和荧光团相互作用以增强信号,构建了一种新的基于适体的单步表面增强型荧光光学传感器。开发的适体传感器简单,灵敏,特异且稳定,可检测凝血酶。通过有效的化学镀方法在Cu薄膜上构建了100 nm范围内的新型纳米金属Au结构。 Cu + 离子作为牺牲种子,用于还原Au 2 + / 3 + 离子,形成Au纳米草坪。为了将结构用于基于荧光的传感器,通过静电吸引将与Cy3共轭的适体固定在纳米金基质上。 Au底物涂覆有壳聚糖(分子量1000Da)。凝血酶结合适体(TBA)被用作模型系统,展示了在纳米金底物上基于适体的荧光测定。通过将Cy3偶联的TBA稳定地固定在壳聚糖包被的Au底物上,可实现三次增强的荧光发射。强度变化与凝血酶浓度从10μM到10 pM成正比,而强度变化对于其他蛋白质(例如人血清白蛋白(HSA))可忽略。基于适体的分析得益于受体的简单固定,并且金纳米结构有助于构建有效的表面增强/带正电的底物。已经开发出了这样的适体传感器,其通过结合检测中的简单性,灵敏度和选择性,用于测试的低成本,小样本量而在即时医疗设备中具有很高的实用性。

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