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Updated: Jun 14, 2026

In vivo 19F MRI for Cell Tracking
Published on: November 25, 2013
Visualization and Quantification of Base-Level SO2 in Live Cells without Intracellular Background Interference Using
Chao-Yu Cui1, Bin Li1, Xing Zhang1
1State Key Laboratory of Elemento-organic Chemistry, Tianjin Key Laboratory of Biosensing and Molecular Recognition, College of Chemistry, Nankai University, Tianjin 300071, China.
None:
Sulfur dioxide (SO2), as an endogenous gasotransmitter, is involved in a variety of physiological processes in living systems, however, distinction and quantification of base-level SO2 in live cells pose great challenges for the current analytical techniques. We report an efficient way to visualize and quantify base-level SO2 in different live mammalian cells by 19F-NMR. This method relies on a high-performance 19F-probe (P1-CF3) that reacts with the reactive sulfur species (RSS) in the generation of distinct chemical shift profiles, which are well-resolved in the NMR spectrum. The quantitative reaction of the 19F-probe with SO2 is fast and produces a stable addition product that is well distinguishable between the intra- and extracellular environment. The high performance of this method discloses that the base-level SO2 in live cells varies greatly in different cell lines. The high accuracy and precision of RSS measurement by the reactive 19F NMR probe allow simultaneous quantification of base-level SO2 in living cells and culture medium in real time without interference from other RSS and potential competitors and also without background signals.

