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一种用于高灵敏和选择性检测镉(II)的多功能荧光适配体探针。

A multifunctional fluorescent aptamer probe for highly sensitive and selective detection of cadmium(II).

作者信息

Zhu Yu-Feng, Wang Yong-Sheng, Zhou Bin, Yu Jun-Hui, Peng Li-Lan, Huang Yan-Qin, Li Xue-Jiao, Chen Si-Han, Tang Xian, Wang Xiao-Feng

机构信息

College of Public Health, University of South China, West Changsheng Road 28#, Hengyang, Hunan, 421001, China.

The Central Hospital of Shaoyang, Qianyuan Lane No. 36, Shaoyang, Hunan, 422000, China.

出版信息

Anal Bioanal Chem. 2017 Aug;409(21):4951-4958. doi: 10.1007/s00216-017-0436-1. Epub 2017 Jun 29.

DOI:10.1007/s00216-017-0436-1
PMID:28660339
Abstract

We report a highly sensitive and selective strategy for Cd(II) assay using a singly labeled multifunctional probe consisting of a Cd(II)-specific aptamer (CAP), which acted as a recognition element for Cd(II) and a signal reporter. The presence of Cd(II) can induce the conformational switching of the CAP, accompanied by a change in fluorescence intensity. Thereby, a fluorescence strategy for Cd(II) assay was established. The proposed method has a detection limit of 2.15 nM, which is much lower than the detection limits reported in related literature. This strategy involves only an aptamer probe, and the use of such a G-based quencher avoids the dual labeling of the CAP with fluorophore/quencher units. It is obviously more convenient and economical than the other aptamer-based biosensors for Cd(II) detection. The mechanism by which Cd(II) induces the CAP to change from a random coil sequence to a stem-loop structure was studied in a series of control experiments. This strategy would be helpful in the design of a sensitive analytical platform for various target assays in environmental and biomedical fields. Graphical Abstract The presence of Cd leads to the conformational change of CAP from a random coil sequence to a stem-loop structure, resulting in a quenching in the fluorescence.

摘要

我们报道了一种用于镉(II)检测的高灵敏度和高选择性策略,该策略使用一种单标记多功能探针,其由一种镉(II)特异性适配体(CAP)组成,该适配体作为镉(II)的识别元件和信号报告分子。镉(II)的存在可诱导CAP的构象转换,同时伴随着荧光强度的变化。由此,建立了一种用于镉(II)检测的荧光策略。所提出的方法检测限为2.15 nM,远低于相关文献报道的检测限。该策略仅涉及一种适配体探针,并且使用这种基于鸟嘌呤的猝灭剂避免了CAP用荧光团/猝灭剂单元进行双重标记。显然,它比其他基于适配体的镉(II)检测生物传感器更方便、更经济。在一系列对照实验中研究了镉(II)诱导CAP从无规卷曲序列转变为茎环结构的机制。该策略将有助于设计用于环境和生物医学领域各种目标检测的灵敏分析平台。图形摘要镉的存在导致CAP从无规卷曲序列构象转变为茎环结构,导致荧光猝灭。

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