Lv Mengya, Zhang Yanhao, Fan Jiayi, Yang Yanyun, Chen Sheng, Liang Gaolin, Zhang Shusheng
College of Chemistry, Zhengzhou University, 100 Kexue Road, Zhengzhou, Henan 450001, China.
Analyst. 2021 Jan 7;145(24):7985-7992. doi: 10.1039/d0an01468k.
Developing suitable molecular tools for monitoring SO2 and its derivatives in living organisms is attractive due to their importance for human health. Herein, the first near-infrared fluorescent probe Mito-HN with aggregation-induced emission enhancement (AIEE) characteristics for ratiometric sensing of SO2 derivatives in vitro, in cells, and in zebrafish was designed and synthesized. By connecting the electron-donating naphthopyran and electron-withdrawing hemicyanine via the alkenyl group, this probe displays a near-infrared fluorescence emission and notable solid-state luminescence with AIEE features. Based on the specific 1,4-addition reaction of HSO3-/SO32- with the C[double bond, length as m-dash]C double bond of Mito-HN, this probe can specifically sense HSO3- in real time with an excellent near-infrared ratiometric fluorescence effect, a low detection limit of 0.17 μM, and a fast response time of less than 30 s. Cell imaging and zebrafish imaging results demonstrate that Mito-HN can ratiometrically not only sense endogenous SO2 derivatives in mitochondria but also monitor SO2 in living organisms. We anticipate that Mito-HN could be applied for the diagnosis of SO2-related diseases in the future.
由于二氧化硫(SO2)及其衍生物对人类健康的重要性,开发适用于监测生物体内SO2及其衍生物的分子工具具有重要意义。在此,设计并合成了首个具有聚集诱导发光增强(AIEE)特性的近红外荧光探针Mito-HN,用于在体外、细胞内和斑马鱼体内对SO2衍生物进行比率传感。通过烯基连接供电子的萘并吡喃和吸电子的半菁,该探针呈现近红外荧光发射以及具有AIEE特征的显著固态发光。基于HSO3-/SO32-与Mito-HN的C=C双键的特异性1,4-加成反应,该探针能够以出色的近红外比率荧光效应实时特异性地检测HSO3-,检测限低至0.17 μM,响应时间快于30秒。细胞成像和斑马鱼成像结果表明,Mito-HN不仅能够比率式地检测线粒体内的内源性SO2衍生物,还能够监测生物体内的SO2。我们预计Mito-HN未来可应用于与SO2相关疾病的诊断。