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A robust and versatile signal-on fluorescence sensing strategy based on SYBR Green I dye and graphene oxide

机译:基于SYBR Green I染料和氧化石墨烯的强大且通用的信号荧光传感策略

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摘要

A robust and versatile signal-on fluorescence sensing strategy was developed to provide label-free detection of various target analytes. The strategy used SYBR Green I dye and graphene oxide as signal reporter and signal-to-background ratio enhancer, respectively. Multidrug resistance protein 1 (MDR1) gene and mercury ion (Hg2+) were selected as target analytes to investigate the generality of the method. The linear relationship and specificity of the detections showed that the sensitive and selective analyses of target analytes could be achieved by the proposed strategy with low detection limits of 0.5 and 2.2 nM for MDR1 gene and Hg2+, respectively. Moreover, the strategy was used to detect real samples. Analytical results of MDR1 gene in the serum indicated that the developed method is a promising alternative approach for real applications in complex systems. Furthermore, the recovery of the proposed method for Hg2+ detection was acceptable. Thus, the developed label-free signal-on fluorescence sensing strategy exhibited excellent universality, sensitivity, and handling convenience.
机译:开发了一种功能强大且用途广泛的荧光信号传感策略,可对各种目标分析物进行无标记检测。该策略分别使用SYBR Green I染料和氧化石墨烯作为信号报告物和信噪比。选择多药耐药蛋白1(MDR1)基因和汞离子(Hg 2 + )作为目标分析物,以研究该方法的通用性。检测的线性关系和特异性表明,所提出的策略可以实现目标分析物的灵敏和选择性分析,MDR1基因和Hg 2 + 的检测限分别低至0.5和2.2 nM。 。此外,该策略用于检测真实样品。血清中MDR1基因的分析结果表明,所开发的方法是在复杂系统中实际应用的有希望的替代方法。此外,所提出的Hg 2 + 检测方法的回收率是可以接受的。因此,开发的无标记的信号荧光信号传感策略表现出出色的通用性,灵敏度和处理便利性。

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