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Graphene oxide and DNA aptamer based sub-nanomolar potassium detecting optical nanosensor

机译:石墨烯氧化物和基于DNA适体的亚载钾检测光学纳米传感器

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摘要

Quantum-dot (QD) based nanosensors are frequently used by researchers to detect small molecules, ions and different biomolecules. In this article, we present a sensor complex/system comprised of deoxyribonucleic acid (DNA) aptamer, gold nanoparticle and semiconductor QD, attached to a graphene oxide (GO) flake for detection of potassium. As reported herein, it is demonstrated that QD-aptamer-quencher nanosensor functions even when tethered to GO, opening the way to future applications where sensing can be accomplished simultaneously with other previously demonstrated applications of GO such as serving as a nanocarrier for drug delivery. Herein, it is demonstrated that the DNA based thrombin binding aptamer used in this study undergoes the conformational change needed for sensing even when the nanosensor complex is anchored to the GO. Analysis with the Hill equation indicates the interaction between aptamer and potassium follows sigmoidal Hill kinetics. It is found that the quenching efficiency of the optical sensor is linear with the logarithm of concentration from 1 pM to 100 nM and decreases for higher concentration due to unavailability of aptamer binding sites. Such a simple and sensitive optical aptasensor with minimum detection capability of 1.96 pM for potassium ion can also be employed in-vitro detection of different physiological ions, pathogens and disease detection methods.
机译:基于量子点(QD)的纳米传感器经常使用研究人员检测小分子,离子和不同的生物分子。在本文中,我们介绍了由脱氧核糖核酸(DNA)适体,金纳米颗粒和半导体QD组成的传感器复合体/系统,其附着在用于检测钾的石墨烯氧化物(GO)薄片上。如本文所报道的,证明QD-Aptamer-Quecher纳米传感器即使在彼托上的情况下,开启到未来应用的方式,其中可以与其他先前证明的去的其他方式同时进行感测,例如用作药物递送的纳米载体。在此,证明在本研究中使用的基于DNA的凝血酶结合适体,即使当纳米传感器复合物锚定到GO时,也会经历感测所需的构象变化。利用山丘方程分析表明适体和钾之间的相互作用遵循Sigmoidal Hill Kinetics。发现光学传感器的淬火效率是线性的,其对数为1pm至100nm的浓度,并且由于适于置换体结合位点的不可用而降低较高的浓度。这种简单敏感的光学Aptasensor,具有1.96μm的钾离子的最小检测能力,也可以在体外检测不同的生理离子,病原体和疾病检测方法。

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