Luo Weifang, Zhang Shuan, Ye Jing, Jiang Bohong, Meng Qinghua, Zhang Guanghui, Li Jiayi, Tang Yuping
State Key Laboratory of Research & Development of Characteristic Qin Medicine Resources (Cultivation), Key Laboratory of Shaanxi Administration of Traditional Chinese Medicine for TCM Compatibility, and Shaanxi Collaborative Innovation Center of Chinese Medicinal Resources Industrialization, and Shaanxi Key Laboratory of Chinese Medicine Fundamentals and New Drugs Research, Shaanxi University of Chinese Medicine, Xi'an 712046, Shaanxi Province, China.
State Key Laboratory of Research & Development of Characteristic Qin Medicine Resources (Cultivation), Key Laboratory of Shaanxi Administration of Traditional Chinese Medicine for TCM Compatibility, and Shaanxi Collaborative Innovation Center of Chinese Medicinal Resources Industrialization, and Shaanxi Key Laboratory of Chinese Medicine Fundamentals and New Drugs Research, Shaanxi University of Chinese Medicine, Xi'an 712046, Shaanxi Province, China.
Spectrochim Acta A Mol Biomol Spectrosc. 2022 Feb 15;267(Pt 1):120554. doi: 10.1016/j.saa.2021.120554. Epub 2021 Oct 28.
Mitochondria, as vital energy supplying organelles, play important roles in cellular metabolism, which are closely related with mitochondrial pH (∼8.0). In this work, a novel multimodal fluorescent probe was employed for ratiometric and colorimetric detection of pH. The probe is designed to work by controlling benzothiazole phenol-hemicyanine system as the interaction site and hemicyanine connected by conjugate bonds as the mitochondrial targeting, which also could make the fluorescence of probe red-shifted. This system results in a perfect ratiometric fluorescent response, whose emission changed from red to blue under pH 2.0-10.0, having a broad linear range (pH = 3.0-10.0). And the marked colour change (light yellow to deep purple via naked eye under pH 2.0-11.0) could be used to construct the test strip colorimetry and smartphone APP detection method, realizing the fast, portable, and accurate detection of pH in vitro and environment. Besides, the probe owns the characteristics of easy loading, high selectivity and staining ability of mitochondria, and low cytotoxicity, thereby allowing imaging of pH values and real-time monitor the subcellular mitochondria pH changes caused by drugs in living cells. It thus could be used to monitor the organ-specific dynamics related to transitions between pathological and physiological states.
线粒体作为至关重要的能量供应细胞器,在细胞代谢中发挥着重要作用,这与线粒体pH值(约8.0)密切相关。在这项工作中,一种新型多模态荧光探针被用于pH的比率和比色检测。该探针的设计原理是,以苯并噻唑苯酚-半菁体系作为相互作用位点,并通过共轭键连接半菁作为线粒体靶向基团,这也会使探针的荧光发生红移。该体系产生了完美的比率荧光响应,在pH 2.0 - 10.0范围内其发射光从红色变为蓝色,具有较宽的线性范围(pH = 3.0 - 10.0)。并且明显的颜色变化(在pH 2.0 - 11.0范围内肉眼观察从浅黄色变为深紫色)可用于构建试纸比色法和智能手机APP检测方法,实现体外和环境中pH的快速、便携且准确的检测。此外,该探针具有易于加载、对线粒体具有高选择性和染色能力以及低细胞毒性等特点,从而能够对pH值进行成像并实时监测活细胞中药物引起的亚细胞线粒体pH变化。因此,它可用于监测与病理和生理状态转变相关的器官特异性动态变化。