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基于阳离子共轭聚合物聚集的金纳米粒子和发光金属有机骨架组装的对硫磷荧光适体传感。

Fluorescent aptasensing of chlorpyrifos based on the assembly of cationic conjugated polymer-aggregated gold nanoparticles and luminescent metal-organic frameworks.

机构信息

Beijing Research Center for Agriculture Standards and Testing, Beijing 100097, China.

出版信息

Analyst. 2019 Oct 21;144(20):6025-6032. doi: 10.1039/c9an00943d. Epub 2019 Sep 10.

Abstract

This study reports on a fluorescent aptasensor of chlorpyrifos (CPF) based on terbium(iii) based on metal-organic frameworks (Tb-MOFs) and PDDA-aggregated-gold nanoparticles (AuNPs). The dispersed AuNPs quench the emissions of the Tb-MOF, while the PDDA-aggregated AuNPs have little effect. The aptamer interacts with PDDA via electrostatic interaction to prevent the aggregation of the AuNPs, which protects the AuNPs from PDDA-induced aggregation and the fluorescence of the Tb-MOF is quenched by FRET between the Tb-MOF and the dispersed AuNPs. Upon the addition of CPF, aptamers are exhausted to form a CPF-aptamer complex, and the following PDDA causes the aggregation of AuNPs, accompanied by weak quenching of the fluorescence of the Tb-MOF. This unlabelled strategy sensitively detects CPF at a concentration of 3.8 nM with a linear range of 5-600 nM. The assay is selective for CPF over other interfering compounds. The method was successfully applied to the determination of CPF in (spiked) tap water and vegetables and fruits samples, indicating its potential applications in enlarging the target scope of luminescent-MOF-based detection for environmental and agricultural samples.

摘要

本研究报告了一种基于荧光适体的基于三价铽的金属-有机骨架(Tb-MOFs)和 PDDA 聚集金纳米粒子(AuNPs)的毒死蜱(CPF)荧光适体传感器。分散的 AuNPs 猝灭了 Tb-MOF 的发射,而 PDDA 聚集的 AuNPs 几乎没有影响。适体通过静电相互作用与 PDDA 相互作用,以防止 AuNPs 的聚集,从而保护 AuNPs 免受 PDDA 诱导的聚集,并且 Tb-MOF 和分散的 AuNPs 之间的 FRET 猝灭了 Tb-MOF 的荧光。加入 CPF 后,适体耗尽形成 CPF-适体复合物,随后 PDDA 导致 AuNPs 聚集,同时 Tb-MOF 的荧光猝灭减弱。这种无标记策略以 3.8 nM 的浓度灵敏地检测 CPF,线性范围为 5-600 nM。该测定法对 CPF 具有选择性,优于其他干扰化合物。该方法成功应用于自来水中和蔬菜、水果样品中 CPF 的测定,表明其在扩大基于发光 MOF 的检测方法在环境和农业样品中的目标范围方面具有潜在应用。

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