Related Experiment Video
Updated: Jan 13, 2026

Live Imaging of the Mitochondrial Glutathione Redox State in Primary Neurons using a Ratiometric Indicator
Published on: October 20, 2021
A GSH-responsive Ru(II) complex: Mitochondria-targeted cell imaging and photodynamic therapy
Meihua Chen1, Rui Tu1, Xiangjun Mu1
1Ministry of Education Key Laboratory for Analytical Science of Food Safety and Biology, Fujian Key Laboratory of Analysis and Testing Technology for Food Safety and Health, Department of Chemistry, Fuzhou University, Fuzhou, PR China.
None:
Glutathione (GSH) is a critical intracellular antioxidant. In cancer cells, the overexpression of GSH scavenges reactive oxygen species (ROS) produced during photodynamic therapy (PDT), thereby compromising therapeutic efficacy. To address this limitation, we designed and synthesized a GSH-responsive Ru(II) complex (Ru(phen)2(bpy-nap)(PF6)2) for simultaneous GSH imaging and enhanced PDT. This probe exhibits excellent GSH-sensing performance, including a significant phosphorescence turn-on response and a low detection limit (0.05 μM). It was successfully employed for visualizing both endogenous and exogenous GSH in HepG2 cells by imaging. Furthermore, under 450 nm bandpass xenon lamp irradiation, it demonstrates remarkable photostability and generates both Type I and Type II ROS, leading to potent phototoxicity against cancer cells. Notably, the probe selectively localizes in mitochondria, further enhancing its therapeutic potential. Given these advantages, Ru(phen)2(bpy-nap)(PF6)2 represents a promising dual-functional phosphorescence probe for GSH detection and PDT applications.

