粒体自噬
荧光
荧光团
化学
线粒体
脱质子化
生物物理学
体内
细胞凋亡
生物化学
离子
生物
物理
生物技术
有机化学
量子力学
自噬
作者
Mingxi Fang,X. K. Zhou,Shaocai Wang,Yinshuang Yang,Yueting Cheng,Boling Wang,Xiaoqian Rong,Xiuli Zhang,Kai Xu,Yibin Zhang,Shaohui Zheng
标识
DOI:10.1016/j.saa.2023.122791
摘要
Mitochondria, as an energy-producing powerhouse in live cells, is considered to be directly linked to cellular health. However, dysfunctional mitochondria and abnormal mitochondria pH would possibly activate mitophagy, cell apoptosis and intercellular acidification process. In this work, we synthesized a novel near infrared fluorescent probe (FNIR-pH) for measurement of mitochondrial pH based on the hemicyanine skeleton as a fluorophore. The FNIR-pH probe functioned as a mitochondrial pH substrate and exhibited quick and sensitive turn-on fluorescence responses to mitochondrial pH in basic solution due to the deprotonation of hydroxy group in the structure. From pH 3.0 to 10.0, the FNIR-pH exhibited almost 100-fold increase in fluorescence intensity at 766 nm wavelength. The FNIR-pH also displayed superior selectivity to various metal ions, excellent photostability, and low cytotoxicity, which facilitated further biological application. Owing to the proper pKa value of 7.2, the FNIR-pH paved the way for real-time monitoring of mitochondria pH changes in live cells and sensitive sensing of mitophagy. Moreover, the FNIR-pH probe was also implemented for fluorescent imaging of tumor-bearing mice to validate its potential application for in vivo imaging of bioanalytes and biomarkers.
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