State Key Laboratory of Coordination Chemistry, School of Chemistry and Chemical Engineering, Collaborative Innovation Center of Advanced Microstructures, Nanjing University, Nanjing 210023, P. R. China.
Anal Chem. 2022 Mar 29;94(12):5006-5013. doi: 10.1021/acs.analchem.1c04895. Epub 2022 Mar 16.
Small-molecule biothiols, including cysteine (Cys), homocysteine (Hcy), and glutathione (GSH), participate in various pathological and physiological processes. It is still a challenge to simultaneously distinguish Cys and Hcy because of their similar structures and reactivities, as well as the interference from the high intramolecular concentration of GSH. Herein, a novel fluorescent probe, , based on cyanine and thioester was developed to differentiate Cys and Hcy through a single-wavelength excitation and two distinctly separated emission channels. The probe exhibited a turn-on fluorescence response to Cys at both 625 nm (the red channel) and 740 nm (the near-infrared channel) but only showed fluorescence turn-on to Hcy at 740 nm (the near-infrared channel) and no fluorescent response to GSH. With the aid of built-in self-calibration of single excitation and dual emissions, simultaneous discriminative determinations of Cys and Hcy were realized through red and near-infrared channels. exhibited excellent selectivity toward Cys and Hcy with a fast response. This probe was further exploited to visualize exogenous Cys and Hcy in cells through dual emission channels under one excitation. Moreover, it could efficiently target mitochondria and was applied to monitor the endogenous Cys fluctuations independently in mitochondria through the red emission channel.
小分子生物硫醇,包括半胱氨酸 (Cys)、同型半胱氨酸 (Hcy) 和谷胱甘肽 (GSH),参与各种病理和生理过程。由于它们结构和反应性相似,以及 GSH 分子内浓度高的干扰,同时区分 Cys 和 Hcy 仍然是一个挑战。在此,开发了一种基于菁和硫酯的新型荧光探针 ,通过单波长激发和两个明显分离的发射通道来区分 Cys 和 Hcy。该探针对 Cys 在 625nm(红色通道)和 740nm(近红外通道)处均表现出开启型荧光响应,但仅在 740nm(近红外通道)处对 Hcy 表现出荧光开启,对 GSH 没有荧光响应。借助单激发和双发射的内置自校准,通过红色和近红外通道实现了对 Cys 和 Hcy 的同时判别测定。该探针对 Cys 和 Hcy 具有出色的选择性和快速响应。该探针进一步通过双发射通道在细胞中可视化外源性 Cys 和 Hcy,并且可以通过红色发射通道有效靶向线粒体,并应用于通过红色发射通道独立监测线粒体中内源性 Cys 的波动。