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An amphiphilic ratiometric fluorescent probe with aggregation-induced emission feature for specific detection of hypochlorite in aqueous solution and living cells

次氯酸盐 荧光 两亲性 聚集诱导发射 水溶液 化学 光化学 特征(语言学) 有机化学 聚合物 共聚物 语言学 量子力学 物理 哲学
作者
Juan Fu,Xin Hu,Liang Ye,Teng Guo,Fengjie Deng,Weifeng Zhu,Meiying Liu,Yuanqing Wen,Xiao‐Yong Zhang,Yen Wei
出处
期刊:Dyes and Pigments [Elsevier BV]
卷期号:207: 110764-110764 被引量:10
标识
DOI:10.1016/j.dyepig.2022.110764
摘要

Hypochlorite (ClO − ) as one of reactive oxygen species (ROS), that has been widely used in our daily life and played a crucial role in immune function systems of living organisms. However, due to the hydrophobic nature of most fluorescent probes , direct utilization of these probes for detection of ClO − in biological systems has demonstrated to be problem. In this work, hydrophilic amino-terminated polyethylene glycol (PEG-NH 2 ) and the organic dye (named as TPAMA) with aggregation-induced emission (AIE) feature were conjugated together using hexachlorocyclotriphosphazene (HCCP) as linking agent. The resultant probe (named as TPAMA-HCCP-PEG) was examined as ratiometric fluorescent probe for detection of ClO − in pure aqueous solution by taking advantage of its amphiphilic property. After adding ClO − , the fluorescence of TPAMA was quickly quenched, therefore it can be used for sensing ClO − with high sensitivity and selectivity. The mechanism was attributed to the reaction of TPAMA with ClO − , resulting in a blue-shift in absorbance and fluorescence emission . The potential of TPAMA-HCCP-PEG for sensing ClO − in biological systems was also evaluated further. Results showed that TPAMA-HCCP-PEG could form highly dispersible nanoparticles in aqueous solution and displayed low cytotoxicity towards model cancer cell lines, making it promising for monitoring ClO − in living systems. We believe this work will provide a general tool for fabrication of fluorescent probes suitable for visual detection various molecules with important biological roles. • The fluorescent probe with aggregation-induced emission was designed and synthesized. • The fluorescent probe shows short response time, high sensitivity and selectivity. • TPAMA-HCCP-PEG is amphiphilic and shows high water dispersibility and low cytotoxicity. • TPAMA-HCCP-PEG can be used for detection of ClO − in living systems.
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