4.7 Article

Dithienylethene-Bridged Fluoroquinolone Derivatives for ImagingGuided Reversible Control of Antibacterial Activity

Journal

JOURNAL OF ORGANIC CHEMISTRY
Volume 87, Issue 11, Pages 7446-7455

Publisher

AMER CHEMICAL SOC
DOI: 10.1021/acs.joc.2c00797

Keywords

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Funding

  1. Natural Science Foundation of Henan Province [222300420501]
  2. Science and Technology Attack Plan Foundation of Henan Province [212102210549, 222102310356]
  3. Key Scientific Research Project of Higher Education of Henan Province [22A430007, 22B350004]
  4. National cultivation fund project of Luoyang Normal University [2017-PYJJ-005]
  5. National College Students Innovation and Entrepreneurship Training Program [202110482010]

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The emerging field of photopharmacology offers a promising alternative to combat bacterial resistance. However, concerns over degradation, toxicity, and thermal reversibility have hampered its potential applications. In this study, two novel dithienylethene-bridged dual-fluoroquinolone derivatives were developed, displaying efficient photochromism and fluorescence switching behavior. These derivatives also showed improved antibacterial activities compared to monofluoroquinolone derivatives, and demonstrated photoswitchable bacterial imaging.
The emerging field of photopharmacology has offered a promising alternative to guard against the bacterial resistance by effectively avoiding antibiotic accumulation in the body or environment. However, the degradation, toxicity, and thermal reversibility have always been an ongoing concern for potential applications of azobenzene-based photopharmacology. Developing novel photopharmacological agents based on a more matched switch is highly in demand and remains a major challenge. Herein, two novel dithienylethene-bridged dual-fluoroquinolone derivatives have been developed by introducing two fluoroquinolone drugs into both ends of the dithienylethene (DTE) switch, in which the fluoroquinolone acts as a fluorophore except for the pharmacodynamic component. For comparison, two monofluoroquinolone-DTE hybrids were also prepared by a similar strategy. As expected, these resultant DTE-based antibacterial agents displayed efficient photochromism and fluorescence switching behavior in dimethyl sulfoxide. Moreover, improved antibacterial activities compared to those of monofluoroquinolone derivatives and a maximum fourfold active difference against Escherichia coli (E. coli) for open and closed isomers and photoswitchable bacterial imaging for Staphylococcus aureus and E. coli were observed. The molecular docking to DNA gyrase gave a rationale for the discrepancies in antibacterial activity for both isomers. Therefore, these fluoroquinolone derivatives can act as interesting imaging-guided photopharmacological agents for further in vivo studies.

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