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新型深红光发射荧光探针用于环境和生物体系中噻吩酚的可视化和定量监测。

Visual and quantitative monitoring of thiophenol by a novel deep-red emitting fluorescent probe in environmental and biological systems.

机构信息

Selcuk University, Science Faculty, Department of Chemistry, 42250, Konya, Turkey.

Selcuk University, Science Faculty, Department of Chemistry, 42250, Konya, Turkey.

出版信息

Anal Chim Acta. 2023 Mar 15;1246:340901. doi: 10.1016/j.aca.2023.340901. Epub 2023 Jan 26.

Abstract

Detection of highly toxic thiophenols in biological or environmental systems is of great importance. Therefore, fast, reliable, and sensitive probes are needed to detect thiophenols. Herein, a novel triphenylamine conjugated dicyanoisophorone-based near infrared fluorescence probe is reported to determine trace thiophenol (PhSH) levels. The probe demonstrates a distinct "turn-on" fluorescence response to thiophenol among the tested analytes and its quantum yield (Φ) increases from 0.011 to 0.142. It has low cytotoxicity with cell viability of 90-100% up to 10.0 μM of the probe, a strong anti-interference capability, a large Stokes shift (150 nm), and a fast response time (<1 min). In addition, the probe exhibits a good linear response to PhSH over the range from 0 to 15.0 μM with a detection limit of 32.3 nM (R = 0.9978). The detection process is also confirmed through HPLC. The practical applicability of the probe is proved by a smartphone platform, TLC kit, plant tissue imaging, soil assay, tap, and lake water analysis with good recovery values (92.3-117%), and concentration-dependent live cell bioimaging PhSH from 5.0 to 15.0 μM. Therefore, the present probe is a robust candidate for monitoring PhSH levels in biological and environmental systems.

摘要

检测生物或环境体系中的高毒性噻吩类化合物具有重要意义。因此,需要快速、可靠且灵敏的探针来检测噻吩类化合物。本文报道了一种新型的三苯胺共轭二氰基异佛尔酮基近红外荧光探针,用于测定痕量巯基苯(PhSH)水平。该探针在测试的分析物中对巯基苯表现出明显的“开启”荧光响应,其量子产率(Φ)从 0.011 增加到 0.142。它具有低细胞毒性,探针浓度高达 10.0 μM 时细胞存活率仍为 90-100%,具有很强的抗干扰能力、大斯托克斯位移(150nm)和快速响应时间(<1min)。此外,该探针对 PhSH 的线性响应范围为 0 至 15.0 μM,检测限为 32.3 nM(R=0.9978)。检测过程也通过 HPLC 得到了证实。通过智能手机平台、TLC 试剂盒、植物组织成像、土壤分析、自来水和湖水分析,探针具有良好的回收率(92.3-117%)和浓度依赖性活细胞生物成像 PhSH(5.0-15.0 μM),证明了探针的实际应用价值。因此,该探针是监测生物和环境体系中 PhSH 水平的一种强有力的候选探针。

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