Single-cell signaling network profiling during redox stress reveals dynamic redox regulation in immune cells.
basic_science · Level V
Where this comes from
- Record sourced from PubMed, PMID 40593569.
- Also identified by DOI 10.1038/s41467-025-60727-z and PMC identifier 12215076.
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Abstract
In eukaryotic cells, reactive oxygen species (ROS) serve as crucial signaling components. ROS are potentially toxic, so constant adjustments are needed to maintain cellular health. Here we describe a single-cell, mass cytometry-based method that we call signaling network under redox stress profiling (SN-ROP) to monitor dynamic changes in redox-related pathways during redox stress. SN-ROP quantifies ROS transporters, enzymes, oxidative stress products and associated signaling pathways to provide information on cellular redox regulation. Applied to diverse cell types and conditions, SN-ROP reveals unique redox patterns and dynamics including coordinated shifts in CD8<sup>+</sup> T cells upon antigen stimulation as well as variations in CAR-T cell persistence. Furthermore, SN-ROP analysis uncovers environmental factors such as hypoxia and T cell exhaustion for influencing redox balance, and also reveals distinct features in patients on hemodialysis. Our findings thus support the use of SN-ROP to elucidate intricate redox networks and their implications in immune cell function and disease.
Medical subject headings
- Signal Transduction
- Oxidative Stress
- Single-Cell Analysis
- CD8-Positive T-Lymphocytes