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UiO-66-NH 引发级联反应:构建比率荧光传感器用于超灵敏检测神经毒剂模拟物。

UiO-66-NH initiated cascade reaction: Constructing a ratiometric fluorescence sensor for ultrasensitive detection of nerve agent simulant.

机构信息

School of Chemistry and Chemical Engineering, Nanchang University, Nanchang, 330031, China.

School of Chemistry and Chemical Engineering, Nanchang University, Nanchang, 330031, China.

出版信息

Anal Chim Acta. 2024 Apr 22;1299:342421. doi: 10.1016/j.aca.2024.342421. Epub 2024 Feb 27.

Abstract

BACKGROUND

Highly toxic organophosphorus nerve agents often exist in the form of gas in the environment and can damage human neuroregulatory system by inhibiting the activity of acetylcholinesterase (AChE). However, fluorescent probes based on small organic molecules bring a secondary burden to environment, and their sensitivity and specificity for sarin simulant diethyl chlorophosphate (DCP) detection are unsatisfactory. Nanozyme cascade systems with signal amplification can be used for highly sensitive identification of analytes, but are rarely used in ratiometric analysis of DCP. Combination of enzyme cascades and ratiometric fluorescence ensures the accuracy and sensitivity of the output signal.

RESULTS

We prepared a self-assembled nanohybrid (Ag-AuNCs@UiO-66-NH) by metal-organic framework material and gold nanoclusters. On the one hand, UiO-66-NH with enzyme-like activity was used to hydrolyze DCP into diethyl phosphate (DEP) and chloridion (Cl). Cl hindered aggregation-induced enhanced emission (AIEE) of AuNCs by binding with Ag and decreased the fluorescence of AuNCs. On the other hand, ligand metal charge transfer effect (LMCT) of UiO-66-NH was blocked by DCP to enhance the fluorescence of UiO-66-NH. Combining ratiometric analysis and nanozyme cascade reaction, an ultra-sensitive fluorescence sensor for detecting DCP was constructed, and ensured the accuracy of experimental results. In addition, Ag-AuNCs@UiO-66-NH was embedded into the agarose hydrogel substrate, the resulting agarose hydrogel film allowed quantitative assessment of DCP vapor and high sensitivity was demonstrated (detection limit as low as 1.02 ppb).

SIGNIFICANCE

A strategy combining enzyme cascade with ratiometric fluorescence was proposed, which improved the accuracy and sensitivity of the analysis results. The soft-solid platform based on agarose hydrogel film was constructed to realize the quantitative monitoring of sarin simulant gas. The LOD value obtained in this work is much lower than the immediately life-threatening or health threatening concentration of sarin.

摘要

背景

高毒性有机磷神经毒剂常以气体形式存在于环境中,通过抑制乙酰胆碱酯酶(AChE)的活性来破坏人体神经调节系统。然而,基于小分子的荧光探针会给环境带来二次负担,而且它们对沙林模拟物二乙基氯膦(DCP)的检测灵敏度和特异性并不令人满意。具有信号放大功能的纳米酶级联系统可用于对分析物进行高灵敏度识别,但很少用于 DCP 的比率荧光分析。酶级联和比率荧光的结合可确保输出信号的准确性和灵敏度。

结果

我们通过金属有机骨架材料和金纳米簇制备了一种自组装纳米杂化材料(Ag-AuNCs@UiO-66-NH)。一方面,具有酶样活性的 UiO-66-NH 可将 DCP 水解为二乙基膦(DEP)和氯离子(Cl)。Cl 通过与 Ag 结合阻碍金纳米簇的聚集诱导增强发射(AIEE),从而降低了金纳米簇的荧光。另一方面,DCP 阻断了 UiO-66-NH 的配体金属电荷转移效应(LMCT),从而增强了 UiO-66-NH 的荧光。通过比率分析和纳米酶级联反应相结合,构建了一种用于检测 DCP 的超灵敏荧光传感器,从而确保了实验结果的准确性。此外,Ag-AuNCs@UiO-66-NH 被嵌入琼脂糖水凝胶基质中,所得到的琼脂糖水凝胶膜允许对 DCP 蒸气进行定量评估,并表现出高灵敏度(检测限低至 1.02 ppb)。

意义

提出了一种将酶级联与比率荧光相结合的策略,提高了分析结果的准确性和灵敏度。构建了基于琼脂糖水凝胶膜的软固态平台,实现了对沙林模拟气体的定量监测。本工作获得的 LOD 值远低于沙林的即刻危及生命或健康的浓度。

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