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Detection of C-Reactive Protein using network-deployable DNA aptamer based optical nanosensor

机译:使用可网络部署的DNA适体的光学纳米传感器检测C反应蛋白

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Aptamer based sensors have been observed to have excellent recognition capacity towards various types of target molecules such as metal ions, proteins and other biomolecules. In this study, we report an optical `turn off' nanosensor, which consists of a deoxyribonucleic acid aptamer attached to a quantum dot on the 5' terminus and gold nanoparticle on the 3' terminus. The sensor uses the principle of fluorescence resonance energy transfer to detect C - reactive protein. With an increase in the target concentration in the sensor, the photoluminescence intensity decreases resulting in an increase in quenching efficiency. The nanosensor has a limit of detection as low as 1.77 picomolar and is observed to be highly specific to C-reactive protein. It also successfully detects the target protein in clinical samples exhibiting around 10% quenching at 10 picomolar target concentration. Future work on this sensor will involve investigation of this sensor in an in vivo environment so that it can be deployed for inflammatory disease management.
机译:已经发现基于适体的传感器对各种类型的目标分子(例如金属离子,蛋白质和其他生物分子)具有出色的识别能力。在这项研究中,我们报道了一种光学“关闭”纳米传感器,该传感器由连接到5'末端量子点的脱氧核糖核酸适体和3'末端金纳米颗粒组成。该传感器使用荧光共振能量转移原理来检测C反应蛋白。随着传感器中目标浓度的增加,光致发光强度降低,导致淬灭效率提高。纳米传感器的检测限低至1.77皮摩尔,并且被观察到对C反应蛋白具有高度特异性。它还成功地检测了在10皮摩尔目标浓度下表现出约10%猝灭的临床样品中的目标蛋白质。该传感器的未来工作将涉及在体内环境中对该传感器的研究,以便可以将其部署用于炎症性疾病的治疗。

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