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合理设计一种新型 Zn-MOF 用于荧光检测硝基呋喃类抗生素:合成、结构与传感应用。

Rationally design a novel Zn-MOF for fluorescent detection of nitrofuran antibiotics: The synthesis, structure and sensing applications.

机构信息

Key Laboratory of Life-Organic Analysis of Shandong Province, School of Chemistry and Chemical Engineering, Qufu Normal University, Qufu, Shandong 273165, PR China.

Key Laboratory of Life-Organic Analysis of Shandong Province, School of Chemistry and Chemical Engineering, Qufu Normal University, Qufu, Shandong 273165, PR China.

出版信息

Spectrochim Acta A Mol Biomol Spectrosc. 2024 Dec 5;322:124836. doi: 10.1016/j.saa.2024.124836. Epub 2024 Jul 15.

DOI:10.1016/j.saa.2024.124836
PMID:39032236
Abstract

Nitrofuran antibiotics (NFAs) residues in waterare a persistent concern for the public due to the potential threats they pose to human health and the environment. Therefore, efficient probes that are capable of detecting trace amounts of antibiotics in real water environments have become a top priority. Herein, a novel fluorescent Zn-MOF probe (MOF-1) was revealed for the highly selective and sensitive sensing of NFAs. MOF-1 was rationally constructed with Zn(NO)·6HO, 5,5'-(anthracene-9,10-diyl) diisophthalic acid (HADIP) and 1,3-bis(imidazol-1-ylmethyl)-benzene (mbib) by using the solvothermal method. Fluorescence sensing experiments demonstrate that MOF-1 can function as a fluorescent sensor for selective, sensitive, and rapid detection of NFAs among 15 antibiotics including ciprofloxacin (CPFX), chloramphenicol (CAP), sulfonamides and NFAs. Fluorescence titration experiments indicated that MOF-1 exhibited remarkably low detection limits of 0.19 μM, 0.26 μM, and 0.34 μM for furazolidone (FZD), furaltadone (FDH) and nitrofurazone (NFZ), respectively. Meanwhile, MOF-1 was successfully employed for NFAs detection in real samples with the recoveries of 98.7 % - 104.1 %, and a relative standard deviation below 5.1 %. Moreover, the sensing mechanism could be ascribed to the synergistic effect between the internal filtering effect and photoinduced electron transfer according to the experiment results and DFT calculations. Additionally, test strips were prepared based on MOF-1 for point of care testing of NFAs.

摘要

水中的硝基呋喃类抗生素(NFAs)残留由于对人类健康和环境构成潜在威胁,一直受到公众关注。因此,能够在实际水环境中检测痕量抗生素的高效探针已成为当务之急。在此,本文揭示了一种新型荧光 Zn-MOF 探针(MOF-1),用于高度选择性和灵敏地检测 NFAs。MOF-1 是通过溶剂热法,以 Zn(NO)·6HO、5,5'-(蒽-9,10-二基)二异酞酸(HADIP)和 1,3-双(咪唑-1-基甲基)-苯(mbib)为原料,合理构建而成的。荧光传感实验表明,MOF-1 可以作为一种荧光传感器,用于在包括环丙沙星(CPFX)、氯霉素(CAP)、磺胺类药物和 NFAs 在内的 15 种抗生素中,选择性、灵敏且快速地检测 NFAs。荧光滴定实验表明,MOF-1 对呋喃唑酮(FZD)、呋喃它酮(FDH)和呋喃西林(NFZ)的检测限分别低至 0.19 μM、0.26 μM 和 0.34 μM。同时,MOF-1 成功地用于实际样品中 NFAs 的检测,回收率为 98.7% - 104.1%,相对标准偏差低于 5.1%。此外,根据实验结果和 DFT 计算,可以将传感机制归因于内滤效应和光致电子转移的协同作用。此外,还基于 MOF-1 制备了测试条,用于 NFAs 的即时检测。

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