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基于α-FeOOH@CdS/Ag纳米晶中共振能量转移的17β-雌二醇检测电化学发光传感器。

An electrochemiluminescence sensor for 17β-estradiol detection based on resonance energy transfer in α-FeOOH@CdS/Ag NCs.

作者信息

Liu Yixin, Li Binxiao, Yao Yuanyuan, Yang Beibei, Tian Tongtong, Miao Yan, Liu Baohong

机构信息

Department of Chemistry, Shanghai Stomatological Hospital, And State Key Lab of Molecular Engineering of Polymers, Fudan University, Shanghai, 200433, China.

Department of Pharmacy, Qingdao Municipal Hospital, Qingdao, 266011, China.

出版信息

Talanta. 2021 Jan 1;221:121479. doi: 10.1016/j.talanta.2020.121479. Epub 2020 Aug 7.

DOI:10.1016/j.talanta.2020.121479
PMID:33076091
Abstract

An electrochemiluminescence (ECL) resonance energy transfer system is constructed for 17β-estradiol (E2) detection using α-FeOOH@CdS nanospheres as the ECL-active substrates and Ag NCs as an efficient quencher. CdS QDs loaded onto three-dimensional (3D) urchin-like α-FeOOH nanospheres (α-FeOOH@CdS nanospheres) exhibited excellent ECL responses, which is attributed to dual-amplification of α-FeOOH frameworks. The 3D hierarchical structure of the α-FeOOH nanospheres provided abundant sites for loading ECL-active species, thus significantly improving the ECL performance of substrates; While Fe presented on surface of α-FeOOH nanospheres could be reduced to Fe in negative potentials, after which might activate persulfate in a Fenton-like process, resulting in more sulfate free radicals for more effective ECL responses via electron transfer reactions. Additionally, Ag nanoclusters (Ag NCs) stabilized by single stranded oligonucleotide were introduced as quenching probes for CdS QDs owing to the well-matched donor-acceptor spectrum for efficient energy transfer, which makes them appropriate for detection of E2. The proposed strategy displayed a desirable dynamic range from 0.01 to 10 pg mL with a limit of detection of 0.003 pg mL. The proposed strategy based on the ECL-RET strategy offered an ideal way for E2 detection, and also revealed an alternative platform for detection of other small molecules.

摘要

构建了一种电化学发光(ECL)共振能量转移体系用于检测17β-雌二醇(E2),该体系以α-FeOOH@CdS纳米球作为ECL活性底物,以Ag纳米簇(Ag NCs)作为高效猝灭剂。负载在三维(3D)海胆状α-FeOOH纳米球(α-FeOOH@CdS纳米球)上的CdS量子点表现出优异的ECL响应,这归因于α-FeOOH骨架的双重放大作用。α-FeOOH纳米球的3D分级结构为负载ECL活性物种提供了丰富的位点,从而显著提高了底物的ECL性能;而α-FeOOH纳米球表面存在的Fe在负电位下可被还原为Fe,之后可能通过类芬顿过程激活过硫酸盐,产生更多的硫酸根自由基,通过电子转移反应实现更有效的ECL响应。此外,由于供体-受体光谱匹配良好,可实现高效能量转移,由单链寡核苷酸稳定的Ag纳米簇(Ag NCs)被引入作为CdS量子点的猝灭探针,这使得它们适用于检测E2。所提出的策略显示出0.01至10 pg mL的理想动态范围,检测限为0.003 pg mL。基于ECL-RET策略所提出的方法为E2检测提供了一种理想途径,同时也为检测其他小分子揭示了一个替代平台。

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