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一种基于碳硫酯的远红色荧光探针,用于活细胞和斑马鱼中汞离子的特异性检测。

A carbonothioate-based far-red fluorescent probe for the specific detection of mercury ions in living cells and zebrafish.

机构信息

School of Resources and Environment, University of Jinan, Shandong Provincial Engineering Technology Research Center for Ecological Carbon Sink and Capture Utilization, Jinan 250022, P. R. China.

出版信息

Analyst. 2019 Feb 11;144(4):1426-1432. doi: 10.1039/c8an01696h.

Abstract

The detection of ionic mercury (Hg2+) is very important because it is a highly toxic environmental pollutant that could cause serious diseases and threaten human health. Herein, we designed a new carbonothioate-based far-red fluorescent probe, CBRB, with a seminaphthorhodafluor dye as the fluorophore for the detection of Hg2+. The CBRB probe by itself exhibited very weak fluorescence due to the enhanced photo-induced electron transfer (PET) effect and inhibited the intramolecular charge transfer (ICT) process caused by the carbonothioate moiety. Upon addition of Hg2+, a tremendous fluorescence enhancement was achieved, attributed to the removal of the carbonothioate group via a specific mercury-promoted desulfurization reaction. Moreover, the probe displayed a large Stokes shift (about 105 nm) and was used to quantitatively measure the concentration of Hg2+ for concentrations ranging from 0 to 1 μM (DL = 3.6 nM). In addition, CBRB in our experiments responded exclusively to Hg2+, even in the presence of high concentrations other ions. Gratifyingly, this probe was successfully used to monitor Hg2+ in environmental water samples and to image Hg2+ in living cells as well as in zebrafish.

摘要

离子汞(Hg2+)的检测非常重要,因为它是一种剧毒的环境污染物,可能导致严重疾病并威胁人类健康。在此,我们设计了一种新型的碳硫酯基近红外荧光探针 CBRB,以半萘并噁嗪染料作为荧光团,用于检测 Hg2+。由于碳硫酯部分的增强光诱导电子转移(PET)效应和抑制了分子内电荷转移(ICT)过程,CBRB 探针本身的荧光非常弱。当加入 Hg2+时,由于发生了特定的汞促进脱硫反应,碳硫酯基团被去除,从而实现了巨大的荧光增强。此外,探针具有较大的斯托克斯位移(约 105nm),可用于定量测量浓度在 0 至 1μM 范围内的 Hg2+(DL = 3.6 nM)。此外,在我们的实验中,CBRB 仅对 Hg2+作出响应,即使存在高浓度的其他离子也是如此。令人高兴的是,该探针成功地用于监测环境水样中的 Hg2+,并用于在活细胞以及斑马鱼中成像 Hg2+。

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