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一种双功能荧光“开启”探针,可用于 Zn(II)的生物成像和有机溶剂中水的定量分析。

A dual-function fluorescence 'turn-on' probe that allows Zn (II) bioimaging and quantification of water in the organic solvent.

机构信息

Institute of Applied Chemistry and Department of Chemistry, Hallym University, Chuncheon 24252, Republic of Korea.

School of Chemical Science, North Maharashtra University, Jalgaon 425001, India.

出版信息

Methods. 2023 Oct;218:84-93. doi: 10.1016/j.ymeth.2023.07.009. Epub 2023 Aug 1.

Abstract

Herein, a Eugenol-derived fluorescence 'turn-on' probe FLHE was synthesized by condensing 2-((3-(trifluoromethyl)phenyl)amino)benzohydrazide with 5-allyl-2-hydroxy-3-methoxybenzaldehyde. FLHE demonstrated very low fluorescence in the studied organic solvents of varying polarities. However, upon titration with Zn in HEPES buffer (pH = 7.4, 50% ACN, v/v), FLHE showed 40-fold higher fluorescence signals indicating the formation of the FLHE-Zn complex. The fluorescence turn-on phenomenon upon FLHE-Zn complex formation results from a chelation-enhanced fluorescence (CHEF) effect. The FLHE-Zn complexation demonstrated a stokes shift of 156 nm (λ = 350 nm, λ = 506 nm) and an about 33-fold increase in the quantum yield (FLHE, Φ = 0.007; FLHE-Zn complex, Φ = 0.23). The binding constant (K) determined by the Benesi-Hildebrand plot for interaction between FLHE and Zn was 5.33 × 10 M. FLHE demonstrated a LOD of 31.8 nM for detecting Zn in the environmental samples without interference from other cations and anions. FLHE-based paper strip (FLHE-PS) assay was developed to quantify the Zn ions in water and the water content of organic solvent. FLHE-PS allows the detection of Zn in aqueous solutions with a LOD of 63.2 nM and quantifying water in acetonitrile with a LOD of 0.14%. These results indicate that the FLHE has high applicability for detecting Zn in living cells and environmental samples and detecting the presence of water in the organic solvents.

摘要

在此,通过将 2-((3-(三氟甲基)苯基)氨基)苯甲酰肼与 5-烯丙基-2-羟基-3-甲氧基苯甲醛缩合,合成了一种丁香酚衍生的荧光“开启”探针 FLHE。FLHE 在不同极性的研究有机溶剂中的荧光非常低。然而,在 HEPES 缓冲液(pH = 7.4,50%ACN,v/v)中用 Zn 滴定时,FLHE 显示出 40 倍更高的荧光信号,表明形成了 FLHE-Zn 配合物。FLHE-Zn 配合物形成时的荧光开启现象源于螯合增强荧光(CHEF)效应。FLHE-Zn 络合表现出 156nm 的斯托克斯位移(λ=350nm,λ=506nm)和量子产率约 33 倍的增加(FLHE,Φ=0.007;FLHE-Zn 配合物,Φ=0.23)。通过 Benesi-Hildebrand 图谱确定的 FLHE 与 Zn 之间相互作用的结合常数(K)为 5.33×10 M。FLHE 在环境样品中检测 Zn 时,无需干扰其他阳离子和阴离子,LOD 为 31.8nM。基于 FLHE 的纸条(FLHE-PS)测定法被开发用于定量水中的 Zn 离子和有机溶剂的含水量。FLHE-PS 允许以 63.2nM 的 LOD 检测水溶液中的 Zn,并以 0.14%的 LOD 定量测定乙腈中的水。这些结果表明,FLHE 非常适用于检测活细胞和环境样品中的 Zn 以及检测有机溶剂中的水。

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