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一种基于双核席夫碱的用于锌的简单快速“开启型”荧光探针及其在细胞成像和试纸条中的应用。

A Simple and Rapid "Turn-On" Fluorescent Probe Based on Binuclear Schiff Base for Zn and Its Application in Cell Imaging and Test Strips.

作者信息

Cheng Jinghui, Li Yi, Zhu Zhiye, Guan Huijuan, Zhai Jinsong, Xiang Yibing, Wang Man

机构信息

Key Laboratory of Chemo/Biosensing and Detection of Xuchang, Key Laboratory of Micro-Nano Materials for Energy Storage and Conversion of Henan Province, Henan Joint International Research Laboratory of Nanomaterials for Energy and Catalysis, College of Chemical and Materials Engineering, Xuchang University, Xuchang 461000, China.

High & New Technology Research Center of Henan Academy of Sciences, No. 56 Hongzhuan Road, Zhengzhou 450002, China.

出版信息

Molecules. 2024 Dec 11;29(24):5850. doi: 10.3390/molecules29245850.

Abstract

A series of colorful binuclear Schiff bases derived from the different diamine bridges including 1,2- ethylenediamine (bis-Et-SA, bis-Et-4-NEt, bis-Et-5-NO, bis-Et-Naph), 1,2-phenylenediamine (bis-Ph-SA, bis-Ph-4-NEt, bis-Ph-5-NO, bis-Ph-Naph), dicyano-1,2-ethenediamine (bis-CN-SA, bis-CN-4-NEt, bis-CN-5-NO, bis-CN-Naph) have been designed and prepared. The optical properties of these binuclear Schiff base ligands were fully determined by UV-Vis absorption spectroscopy, fluorescence emission spectroscopy, and time-dependent-density functional theory (TD-DFT) calculations. The inclusion of D-A systems and/or π-extended systems in these binuclear Schiff base ligands not only enables adjustable RGB light absorption and emission spectra (300~700 nm) but also yields high fluorescence quantum efficiencies of up to 0.84 in MeCN solution. Then, with the ESIPT (excited-state intramolecular proton transfer) property, fluorescence analysis showed that the probe bis-Et-SA and bis-Ph-SA could recognize Zn via the "turn on" mode in the MeCN solution. During the detection process, bis-Et-SA and bis-Ph-SA demonstrate rapid response and high selectivity upon the addition of Zn. The coordination of Zn with the oxygen atom and Schiff base nitrogen atom in a tetrahedral geometry is confirmed by Job's plot, FT-IR, and H NMR spectroscopy. In addition, the paper test and Hela cells were successfully carried out to detect Zn. Moreover, the sensitivity of bis-Et-SA and bis-Ph-SA is much better than that of those Schiff base ligands containing only one chelating unit [O^N^N^O].

摘要

设计并制备了一系列由不同二胺桥衍生而来的彩色双核席夫碱,包括1,2 - 乙二胺(双 - 乙基 - SA、双 - 乙基 - 4 - NEt、双 - 乙基 - 5 - NO、双 - 乙基 - 萘)、1,2 - 苯二胺(双 - 苯基 - SA、双 - 苯基 - 4 - NEt、双 - 苯基 - 5 - NO、双 - 苯基 - 萘)、二氰基 - 1,2 - 乙烯二胺(双 - 氰基 - SA、双 - 氰基 - 4 - NEt、双 - 氰基 - 5 - NO、双 - 氰基 - 萘)。通过紫外 - 可见吸收光谱、荧光发射光谱和含时密度泛函理论(TD - DFT)计算全面测定了这些双核席夫碱配体的光学性质。这些双核席夫碱配体中引入给体 - 受体(D - A)体系和/或π - 扩展体系,不仅能实现300~700 nm范围内可调的RGB光吸收和发射光谱,还能在乙腈溶液中产生高达0.84的高荧光量子效率。然后,基于激发态分子内质子转移(ESIPT)性质,荧光分析表明探针双 - 乙基 - SA和双 - 苯基 - SA在乙腈溶液中可通过“开启”模式识别锌离子。在检测过程中,双 - 乙基 - SA和双 - 苯基 - SA在加入锌离子后表现出快速响应和高选择性。通过Job曲线、傅里叶变换红外光谱(FT - IR)和核磁共振氢谱(H NMR)证实了锌离子与氧原子和席夫碱氮原子以四面体几何构型配位。此外,成功进行了试纸测试和对HeLa细胞检测锌离子的实验。而且,双 - 乙基 - SA和双 - 苯基 - SA的灵敏度比那些仅含一个螯合单元[O^N^N^O]的席夫碱配体要好得多。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/93a0/11678835/53cd2af9d8d8/molecules-29-05850-sch001.jpg

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