Institute of Applied Chemistry and Department of Chemistry, Hallym University, Chuncheon 24252, Republic of Korea.
Department of Chemistry, Molecular Logic Gate Laboratory, Korea Advanced Institute of Science and Technology (KAIST), Daejeon 34141, Republic of Korea.
Spectrochim Acta A Mol Biomol Spectrosc. 2025 Jan 15;325:125118. doi: 10.1016/j.saa.2024.125118. Epub 2024 Sep 13.
This study introduces a novel fluorescence 'turn-on' chemosensor, FHDA, based on a trans-Ferulic acid Schiff-base derivative. FHDA stands out as a highly selective and sensitive tool for the fluorescent detection of Al3 with the fluorescence 'turn-on' effect. FHDA exhibits a strong CHEF effect and ICT upon complexation with Al in a 1:2 binding stoichiometry. The significant Stokes shift (Δλ = 108 nm, λ = 422 nm, λ = 530 nm), large binding constant (K = 4.2 × 10 M), ∼9.5-fold increase in the quantum yield (FHDA, Φ = 0.020; FHDA-Al complex, Φ = 0.189), and a LOD of 134 nM, makes FHDA an excellent chemosensor for detecting Al in solution; tests in live cells and environmental samples also showed excellent responses. FHDA offers substantial improvements over existing methods with its ease of use, limited expense, high specificity, and the ability to provide real-time, in-situ monitoring of Al ions. The utility of FHDA is highlighted through applications in monitoring Al ions in e.g. lung cancer cells (A549) and environmental water samples. We believe that applications of FHDA can potentially lead to a novel diagnostic and therapeutic strategy against diseases linked to aluminum dysregulation.
本研究介绍了一种基于反式阿魏酸希夫碱衍生物的新型荧光“开启”型化学传感器 FHDA。FHDA 是一种高选择性和高灵敏度的荧光检测 Al3+的工具,具有荧光“开启”效应。FHDA 与 Al 以 1:2 的配位比络合时,表现出强烈的 CHEF 效应和 ICT。显著的斯托克斯位移(Δλ=108nm,λ=422nm,λ=530nm)、大的结合常数(K=4.2×10 M)、量子产率提高了约 9.5 倍(FHDA,Φ=0.020;FHDA-Al 配合物,Φ=0.189),LOD 为 134nM,使得 FHDA 成为检测溶液中 Al 的优秀化学传感器;活细胞和环境样品的测试也显示出了出色的响应。FHDA 在使用方便、费用有限、高特异性以及能够提供实时、原位监测 Al 离子等方面优于现有方法。FHDA 在监测肺癌细胞(A549)和环境水样中的 Al 离子等方面的应用突出了其应用价值。我们相信,FHDA 的应用有可能为与铝失调相关的疾病提供一种新的诊断和治疗策略。