4.8 Review

The chronological evolution of small organic molecular fluorescent probes for thiols

期刊

CHEMICAL SCIENCE
卷 12, 期 4, 页码 1220-1226

出版社

ROYAL SOC CHEMISTRY
DOI: 10.1039/d0sc04960c

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资金

  1. National Natural Science Foundation of China [21907062, 21775096]
  2. Shanxi Province 1331 project key innovation team construction plan cultivation team [2018-CT-1]
  3. 2018 Xiangyuan County Solid Waste Comprehensive Utilization Science and Technology Project [2018XYSDJS-05]
  4. Shanxi Province Foundation for Returnees [2017-026]
  5. Shanxi Collaborative Innovation Center of High Value-added Utilization of Coal-related Wastes [2015-10-B3]
  6. Scientific and Technological Innovation Programs of Higher Education Institutions in Shanxi [2019L0031]
  7. Key R&D Program of Shanxi Province [201903D421069]
  8. Shanxi Province Science Foundation [201901D111015]
  9. Scientific Instrument Center of Shanxi University [201512]
  10. Innovative Talents of Higher Education Institutions of Shanxi
  11. One hundred people plan of Shanxi Province

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This review discusses the evolution of small organic molecular fluorescent probes for detecting thiols in the past 60 years, highlighting the design of thiol probes and their specific applications in semi-quantification of cellular thiols and real-time labeling. It also addresses current challenges that limit their further application.
Abnormal concentrations of biothiols such as cysteine, homocysteine and glutathione are associated with various major diseases. In biological systems, the structural similarity and functional distinction of these three small molecular thiols has not only required rigorous molecular design of the fluorescent probes used to detect each thiol specifically, but it has also inspired scientists to uncover the ambiguous biological relationships between these bio-thiols. In this minireview, we will discuss the evolution of small organic molecular fluorescent probes for the detection of thiols over the past 60 years, highlighting the potent methodologies used in the design of thiol probes and their particular applications in the semi-quantification of cellular thiols and real-time labelling. At the same time, the present challenges that limit their further application will be discussed. We hope that this minireview will promote future research to enable deeper insight into the crucial role of thiols in biological systems.

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