Recent advances in self-immobilizing fluorescent probes for in vivo imaging

  • Smart Mol. 2024 Aug 23;2(3):e20240031. doi: 10.1002/smo.20240031.
Yong Zhang  1 Xuemei Lv  1 Yafu Wang  2 Xueqian Chen  3 Jinchao Zhang  1 Dongdong Su  3
Affiliations
  • 1. State Key Laboratory of New Pharmaceutical Preparations and Excipients Key Laboratory of Medicinal Chemistry and Molecular Diagnosis of Ministry of Education College of Chemistry & Materials Science Chemical Biology Key Laboratory of Hebei Province Hebei University Baoding China.
  • 2. School of Chemistry and Chemical Engineering Henan Normal University Xinxiang Henan China.
  • 3. Department of Chemistry Center of Excellence for Environmental Safety and Biological Effects Beijing Key Laboratory for Green Catalysis and Separation Beijing University of Technology Beijing China.
Abstract

In situ precise detection of bioactive molecules with high sensitivity and spatiotemporal resolution is essential for studying physiological events and disease diagnosis. The utilization of versatile fluorescent probes in fluorescence imaging offers a powerful tool for in vivo imaging of biomarkers closely associated with pathological conditions. However, the dynamic behavior leading to rapid clearance of small molecule probes from regions of interest severely compromises their potential for precise imaging. Notably, self-immobilizing fluorescent probes that selectively recognize diseased tissues while improving in situ retention and enrichment enable accurate high-fidelity fluorescence imaging. In this review, we aim to summarize the strategies employed for recent advances in the performance and precision of in vivo fluorescence imaging using self-immobilizing techniques. Lastly, we discuss the prospects and potential challenges associated with self-immobilizing fluorescent probes to promote further development and application of more delicate fluorescent probes.

Keywords
biomarkers; fluorescent probes; in situ precise imaging; self‐immobilizing.
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