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A lysosome-targetable and ratiometric fluorescent probe for hypochlorous acid in living cells based on a 1,8-naphthalimide derivative

机译:基于1,8-萘酰亚胺衍生物的活细胞中次氯酸的溶酶体靶向和比率荧光探针

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Hypochlorous acid (HClO) is an important reactive oxygen species (ROS) and plays a significant role in living organisms. Highly selective and lysosome-targetable probes for sensing hypochlorous add are rare. In this article, we designed and prepared a new lysosome-targeting and ratiometric fluorescent probe for monitoring the levels of hypochlorous acid. 4-Aminonaphthalimide was chosen as the fluorescent group and (2-aminoethyl) thiourea group was used as a specific recognition group for HClO. A morpholine unit was employed as a lysosome-targeting group. In the absence of HClO the probe underwent intramolecular charge transfer (ICT) and showed a green emission. When excess HClO is present, the ICT process was interrupted which caused a 57 nm blue-shift of fluorescence emission from 533 nm to 476 nm. The ratiometric fluorescent probe showed outstanding selectivity toward HClO over other various bioactive species. Furthermore, the ratiometric fluorescent probe exhibited rapid response time and ability of working in a wide pH range. The linear response of I-476(nm)/I-533nm toward HClO was obtained in a concentration range of HClO from 1.0 x 10(-6) to 1.0 x 10(-4) mol.L-1. The detection limit was estimated to be 8.0 x 10(-7) mol.L-1 for HClO. Moreover, the probe showed a perfect lysosome-targeting ability, and has been successfully used to the confocal imaging of HClO in lysosomes of HepG2 cells with little cell toxicity. All of such good properties illustrated that it could be applied to determine HClO at lysosomes in living cells. (C) 2019 Elsevier B.V. All rights reserved.
机译:次氯酸(HCLO)是一种重要的活性氧物质(ROS),在生物体中发挥重要作用。用于感测次氯缺乏的高度选择性和溶酶体可靶向探针是罕见的。在本文中,我们设计并制备了一种新的溶酶体靶向和比例荧光荧光探针,用于监测次氯酸水平。选择4-氨基萘依附亚胺作为荧光基团,(2-氨基乙基)硫脲基团用作HCLO的特定识别基团。将正文单元用作溶酶体靶向组。在没有HCLO的情况下探针接受了分子内电荷转移(ICT)并显示出绿色发射。当存在过量的HCLO时,ICT过程中断,导致533nm至476nm的荧光发射的57nm蓝相。比率荧光探针显示出对其他各种生物活性物质的HCLO的出色选择性。此外,比率荧光探针表现出快速响应时间和在宽pH范围内工作的能力。在从1.0×10(-6)至1.0×10(-4)mol.L-1的HClO的浓度范围内获得I-476(NM)/ I-533nm朝向HCLO的线性响应。估计HCLO的检出限估计为8.0×10(-7)Mol.L-1。此外,探针显示出完美的溶酶体靶向能力,并且已成功用于HCLO在HEPG2细胞溶酶体中的共焦成像,细胞毒性小。所有这样的良好性质表明它可以应用于在活细胞溶酶体中测定HCLO。 (c)2019 Elsevier B.v.保留所有权利。

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