School of Public Health, Zhengzhou University, Zhengzhou 450001, China.
School of Chemistry, Zhengzhou University, Zhengzhou 450001, China.
J Hazard Mater. 2024 Nov 5;479:135751. doi: 10.1016/j.jhazmat.2024.135751. Epub 2024 Sep 5.
Thiophenol (PhSH) is an important industrial intermediate but displays significant toxicity towards environmental and biological systems. Here, we introduce a supramolecular system based on β-cyclodextrin (β-CD) and boron dipyrromethene (BODIPY) as a ratiometric fluorescence probe to discriminate PhSH in environmental water samples, cells, and in vivo. In aqueous solutions, BODIPY shows extremely weak fluorescence intensity due to its aggregation into nanometer-sized clusters, which prevents its interaction with thiols. However, within a β-CD environment, it can selectively and sensitively detect PhSH. Also, the stability of the probe was significantly improved. The mechanism studies based on stoichiometry, NMR spectroscopy, and theoretical calculation revealed distinct intermolecular interactions between β-CD and BODIPY, including host-guest interactions and hydrogen bonds. Low limit of detection (10.7 nM) and rapid response time (5 min) have been achieved, and the practicality of the supramolecular system (BODIPY@β-CD) has been verified by actual sample analysis. Furthermore, the first hydrogel-based sensing system for portable PhSH detection has been developed, facilitating rapid and on-site colorimetric visualization across both liquid and gas phases. Most importantly, using a low amount of the probe, early stages of low-dose exposure to PhSH can be visualized in living cells and zebrafish. Therefore, BODIPY@β-CD is a robust new monitoring tool for the detection of PhSH in various scenarios, indicating the promising application value of the host-guest supramolecular probe in detecting highly toxic substances.
噻吩酚(PhSH)是一种重要的工业中间体,但对环境和生物系统具有显著的毒性。在这里,我们引入了一种基于β-环糊精(β-CD)和硼二吡咯甲烷(BODIPY)的超分子体系作为比率荧光探针,用于区分环境水样、细胞和体内的 PhSH。在水溶液中,由于其聚集形成纳米级簇,BODIPY 的荧光强度非常弱,这阻止了它与硫醇的相互作用。然而,在β-CD 环境中,它可以选择性和灵敏地检测 PhSH。此外,探针的稳定性显著提高。基于化学计量学、NMR 光谱和理论计算的机理研究表明,β-CD 和 BODIPY 之间存在明显的分子间相互作用,包括主体-客体相互作用和氢键。实现了低检测限(10.7 nM)和快速响应时间(5 分钟),并通过实际样品分析验证了超分子体系(BODIPY@β-CD)的实用性。此外,还开发了第一个基于水凝胶的便携式 PhSH 检测传感系统,可在液相和气相中快速且现场进行比色可视化。最重要的是,使用少量探针,可以在活细胞和斑马鱼中可视化低剂量暴露早期阶段的 PhSH。因此,BODIPY@β-CD 是一种用于检测各种场景中 PhSH 的强大新监测工具,表明主客体超分子探针在检测高毒性物质方面具有有前景的应用价值。