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pH 可切换荧光探针用于细胞内过氧化氢的空间限定可视化。

pH-Switchable Fluorescent Probe for Spatially-Confined Visualization of Intracellular Hydrogen Peroxide.

机构信息

The MOE Key Laboratory of Spectrochemical Analysis and Instrumentation, State Key Laboratory of Physical Chemistry of Solid Surfaces, Department of Chemistry, College of Chemistry and Chemical Engineering, Xiamen University , Xiamen, 361005, P. R. China.

出版信息

Anal Chem. 2016 Jun 7;88(11):5865-70. doi: 10.1021/acs.analchem.6b00654. Epub 2016 May 16.

Abstract

Intracellular H2O2 plays an important role in regulating a variety of cellular functions. Fluorescent probes that can make response to intracellular levels of H2O2 would provide valuable tools for revealing the functions of H2O2 in living organisms. However, traditional pH-insensitive probes and lysosome-targetable probes can only provide spatially nonspecific visualization of intracellular H2O2 and specific sensing of lysosomal H2O2, respectively. In this work, we developed a H2O2-responsive and pH-switchable fluorescent probe (HP-L1) which can make response sequentially to intracellular H2O2 and lysosomal pH. The fluorescent probe is comprised of a H2O2-responsive boronate moiety and a pH-switchable spirobenzopyran fluorophore. When the probe was applied for intracellular H2O2 sensing, only fluorescent emission from lysosomes is visible, and the fluorescence from other regions is not able to be obviously detected, which is due to the pH-switchable property of the spirobenzopyran fluorophore. Thus, the developed fluorescence probe enables the spatially confined (i.e., lysosome-specific) visualization of the intracellular H2O2. We envisioned that this kind of fluorescent probe (or the proposed sensing strategy) would allow the visualization of the overall levels of intracellular H2O2 without interferences of possible fluorescent signals from other sources (e.g., dyes for cellular staining and multiplex analysis).

摘要

细胞内 H2O2 对调节多种细胞功能起着重要作用。能够对细胞内 H2O2 水平做出响应的荧光探针将为揭示 H2O2 在生物活体中的功能提供有价值的工具。然而,传统的对 pH 值不敏感的探针和溶酶体靶向探针分别只能提供细胞内 H2O2 的非特异性空间可视化和溶酶体 H2O2 的特异性感应。在这项工作中,我们开发了一种对 H2O2 响应和 pH 值可切换的荧光探针(HP-L1),它可以依次对细胞内 H2O2 和溶酶体 pH 值做出响应。该荧光探针由 H2O2 响应的硼酸酯部分和 pH 值可切换的螺苯并吡喃荧光团组成。当该探针用于检测细胞内 H2O2 时,只有来自溶酶体的荧光发射是可见的,而其他区域的荧光则无法明显检测到,这是由于螺苯并吡喃荧光团的 pH 值可切换性质。因此,所开发的荧光探针能够实现对细胞内 H2O2 的空间限制(即溶酶体特异性)可视化。我们设想,这种荧光探针(或所提出的感应策略)将允许在没有来自其他来源(例如细胞染色和多重分析用染料)的可能荧光信号干扰的情况下可视化细胞内 H2O2 的总水平。

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