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基于碳点的荧光测定法中通过链位移进行的信号放大用于检测 ATP。

Signal amplification by strand displacement in a carbon dot based fluorometric assay for ATP.

机构信息

School of Pharmacy, Nanjing Medical University, Nanjing, 211166, Jiangsu, China.

出版信息

Mikrochim Acta. 2018 Jul 28;185(8):392. doi: 10.1007/s00604-018-2931-2.

Abstract

A fluorometric ATP assay is described that makes use of carbon dots and graphene oxide along with toehold-mediated strand displacement reaction. In the absence of target, the fluorescence of carbon dots (with excitation/emission maxima at 360/447 nm) is strong and in the "on" state, because the signal probe hybridizes with the aptamer strand and cannot combine with graphene oxide. In the presence of ATP, it will bind to the aptamer and induce a strand displacement reaction. Consequently, the signal probe is released, the sensing strategy will change into the "off" state with the addition of graphene oxide. This aptasensor exhibits selective and sensitive response to ATP and has a 3.3 nM detection limit. Graphical abstract Schematic of signal amplification by strand displacement in a carbon dot based fluorometric assay for ATP. This strategy exhibits high sensitivity and selectivity with a detection limit as low as 3.3 nM.

摘要

一种基于荧光的 ATP 分析方法,利用碳点和氧化石墨烯以及引发链置换反应。在没有目标的情况下,碳点的荧光(激发/发射最大值在 360/447nm)很强,处于“开”状态,因为信号探针与适体链杂交,不能与氧化石墨烯结合。在存在 ATP 的情况下,它将与适体结合并诱导链置换反应。因此,随着氧化石墨烯的加入,信号探针被释放,传感策略将变为“关”状态。该适体传感器对 ATP 表现出选择性和灵敏的响应,检测限低至 3.3nM。

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