4.6 Review

The design strategies and biological applications of probes for the gaseous signaling molecule hydrogen sulfide

Journal

JOURNAL OF MATERIALS CHEMISTRY B
Volume 10, Issue 39, Pages 7924-7954

Publisher

ROYAL SOC CHEMISTRY
DOI: 10.1039/d2tb01210c

Keywords

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Funding

  1. Academy of Science and Technology Project of Shandong Academy of Medical Sciences [2018-19]
  2. Haixi Science and Technology Bureau of Qinghai Province [2017-Q4]
  3. Academic Promotion Programme of Shandong First Medical University [2019LJ003]

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The article discusses the critical role of H2S in physiological and pathological functions, as well as the application of small-molecule fluorescent probes in monitoring H2S levels and dynamics. The author summarizes the latest research developments and explores the development direction and challenges of H2S-responsive fluorescent probes.
H2S, the smallest and simplest biological thiol in living systems, is the third member of the family of signaling mediators. H2S participates in the regulation of a series of complex physiological and pathological functions in the body, making it a critical fulcrum that balances health and disease in human physiology. Small-molecule fluorescent probes have been proven to possess the unique advantages of high temporal and spatial resolution, good biocompatibility and high sensitivity, and thus their use is a powerful approach for monitoring the level and dynamics of H2S in living cells and organisms and better understanding its basic cellular functions. The field of small-molecule fluorescent probes for monitoring the complex biological activities of H2S in vivo has been thriving in recent years. Herein, we systematically summarize the latest developments in the field of fluorescent probes for the detection of H2S, illustrate their biological applications according to the classification of target-responsive sites, and emphasize the development direction and challenges of H2S-responsive fluorescent probes, hoping to give implications of researchers on fluorescent probes for future research.

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