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基于硫代氨基脲的双功能“开启”荧光化学传感器用于快速检测锌阳离子和氟阴离子:理论研究、智能手机辅助比色检测及其在斑马鱼幼虫生物成像和分子逻辑门操作中的应用

Thiosemicarbazone-Based Bifunctional 'Turn On' Fluorometric Chemosensors for the Rapid Detection of Zn Cation and F Anion: Theoretical Investigation, Smartphone-Assisted Colorimetric Detection and Applications in Bioimaging of Zebrafish Larvae and Molecular Logic Gate Operation.

作者信息

Ahmed Abbas Khaja Raees, Gajendhiran Ramalingam, Paulpandiyan Rajakkani, Mithra Sivaraj, Majeed Seepoo Abdul, Hameed Azeez Sait Sahul, Rahiman Aziz Kalilur

机构信息

Post-Graduate and Research Department of Chemistry, The New College, University of Madras, Chennai, India.

Research Department of Chemistry, VHNSN College, Virudhunagar, India.

出版信息

Luminescence. 2025 Jun;40(6):e70203. doi: 10.1002/bio.70203.

Abstract

Three thiosemicarbazone-based bifunctional chemosensors 2-(3-ethoxy-2-hydroxybenzylidene)hydrazinecarbothioamide (S1), 2-(3-ethoxy-2-hydroxybenzylidene)-N-methylhydrazinecarbothioamide (S2) and 2-(3-ethoxy-2-hydroxybenzylidene)-N-phenylhydrazinecarbothioamide (S3) have been designed and synthesized. The sensor molecules displayed highly selective and sensitive colorimetric detection towards Co, Ni, Cu, Zn and Fe cations and F anion, in addition to the remarkable selective 'turn on' fluorometric responses for Zn cation and F anion. The high binding constant values are observed when S2 binds with Zn cation (2.83 × 10 M) and S1 binds with F anion (1.16 × 10 M) with lower detection limit of 1.26 and 1.69 μM, respectively The theoretical studies endorsed the emission responses observed in the fluorescence spectral studies and the binding mode of chemosensors with sensed ions. Interestingly, the bioimaging studies with the chemosensors using DrG cells and zebrafish larvae demonstrated the detection of Zn/F ions at relatively lower concentration. Additionally, the chemosensors were successfully integrated into the molecular logic gate systems and the smartphone-assisted RGB colour values, which enabled the real-time detection of Zn/F ions in various environmental and biological samples.

摘要

设计并合成了三种基于硫代碳酰肼的双功能化学传感器

2-(3-乙氧基-2-羟基亚苄基)肼基硫代甲酰胺(S1)、2-(3-乙氧基-2-羟基亚苄基)-N-甲基肼基硫代甲酰胺(S2)和2-(3-乙氧基-2-羟基亚苄基)-N-苯基肼基硫代甲酰胺(S3)。这些传感器分子除了对Zn阳离子和F阴离子具有显著的选择性“开启”荧光响应外,还对Co、Ni、Cu、Zn和Fe阳离子以及F阴离子表现出高度选择性和灵敏的比色检测。当S2与Zn阳离子(2.83×10 M)结合且S1与F阴离子(1.16×10 M)结合时,观察到高结合常数,检测限分别为1.26和1.69 μM。理论研究证实了荧光光谱研究中观察到的发射响应以及化学传感器与被感测离子的结合模式。有趣的是,使用DrG细胞和斑马鱼幼虫对化学传感器进行的生物成像研究表明,在相对较低浓度下可以检测到Zn/F离子。此外,这些化学传感器成功集成到分子逻辑门系统和智能手机辅助的RGB颜色值中,能够实时检测各种环境和生物样品中的Zn/F离子。

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