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一种基于香豆素的高选择性化学传感器,用于 Cu 和 Zn 离子的双重感应,具有逻辑门集成和活细胞成像功能。

A highly selective coumarin-based chemosensor for dual sensing of Cu and Zn ions with logic gate integration and live cell imaging.

机构信息

Department of Chemistry, Institute of Science, Banaras Hindu University, Varanasi-221005, India.

Department of Molecular and Human Genetics, Institute of Science, Banaras Hindu University, Varanasi-221005, India.

出版信息

Anal Methods. 2024 Jul 11;16(27):4551-4560. doi: 10.1039/d4ay00594e.

Abstract

In this paper, a coumarin-based Schiff base chemosensor has been synthesized and developed to detect Cu and Zn ions in nanomolar concentrations. The probe selectively distinguishes Cu and Zn from among several metal ions in DMF : HO (7 : 3, v/v, pH 7.4) HEPES buffer. The structure of the probe and its sensing behavior were investigated by FT-IR, UV-vis, fluorescence, HRMS, and NMR analyses, along with X-ray crystallography and computational studies. CIH detects Zn and Cu using different strategies: CHEF-induced fluorescence enhancement and paramagnetic fluorescence quenching, respectively. Job's plots show a 1 : 1 binding interaction between CIH and Cu or Zn ions. The binding constant values for Cu (1.237 × 10 M) and Zn (1.24 × 10 M) suggest a better ability for Cu to interact with CIH than Zn. An extremely high sensitivity of the probe was highlighted by its very low detection limits (LOD) of 5.36 nM for Cu and 3.49 nM for Zn. The regeneration of the probe with the addition of EDTA in its complexes allows the formation of molecular logic gates. CIH has been successfully employed in mitotracking and intracellular detection of Zn and Cu in SiHa cells.

摘要

在本文中,我们合成并开发了一种基于香豆素的席夫碱化学传感器,用于检测纳摩尔浓度的 Cu 和 Zn 离子。该探针在 DMF:HO(7:3,v/v,pH 7.4)HEPES 缓冲液中能够选择性地区分 Cu 和 Zn 与其他几种金属离子。通过 FT-IR、UV-vis、荧光、高分辨率质谱和 NMR 分析以及 X 射线晶体学和计算研究,研究了探针的结构及其传感行为。CIH 采用不同的策略检测 Zn 和 Cu:分别是 CHEF 诱导的荧光增强和顺磁荧光猝灭。Job 图显示 CIH 与 Cu 或 Zn 离子之间存在 1:1 的结合相互作用。Cu(1.237×10 M)和 Zn(1.24×10 M)的结合常数值表明 Cu 与 CIH 的相互作用能力强于 Zn。探针具有非常低的检测限(Cu 为 5.36 nM,Zn 为 3.49 nM),突显了其极高的灵敏度。通过在其配合物中添加 EDTA 来再生探针,允许形成分子逻辑门。CIH 已成功用于 SiHa 细胞中 Zn 和 Cu 的线粒体追踪和细胞内检测。

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