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September 5, 2025Nature Communications13 citationsOpen Access

Breaking shackles of molecular weight and emission for NIR-II fluorophores by regulating Columb attraction interaction

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MYMiantai YeXWXiaoyu WangJZJingwen Zou

Key Points

  • Emission wavelengths exceeded 1200 nm for GFP-based dyes, addressing emission limitations.
  • A 22.7-fold increase in fluorescence was observed in vitro when binding to Aβ42 fibrils.
  • A novel strategy to mitigate Coulomb attraction enables better NIR-II dye performance.
  • Real-time imaging of Alzheimer's-related deposits was achieved in living mice models.

Abstract

The second near-infrared (NIR-II) dyes provide advantages for in vivo imaging, but challenges persist. A primary issue is the lack of practicable strategies to balance emission wavelength and molecular weight, particularly for low-molecular-weight ( 1000 nm) dyes. Here, we propose a strategy that tunes NIR-II emissions by reducing Coulomb attraction interaction, contrasting with traditional approaches that redshift absorption wavelengths through energy gap reduction. Leveraging this concept, we extend the emission wavelength of GFP chromophore-based dyes LS1-12 from the visible range into the NIR-II region, achieving a maximum emission wavelength exceeding 1200 nm with molecular weights between 226 and 449 Da. Further, the optimized NIR-II dye LS7 selectively binds Aβ42 fibrils, yielding a 22.7-fold fluorescence increase in vitro and enabling real-time imaging of deposited Aβ proteins in the brains of living mice with Alzheimer's disease. This study introduces a distinct design strategy for low-molecular-weight NIR-II dyes and addresses a longstanding bottleneck in this field.

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Cite This Study

Ye et al. (2025) studied this question.

synapsesocial.com/papers/68bb3a3d2b87ece8dc9552d9https://doi.org/10.1038/s41467-025-63353-x
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