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Structurally Modulated Formation of Cyanine J-Aggregates with Sharp and Tunable Spectra for Multiplexed Optoacoustic and Fluorescence Bioimaging. | LitMetric

AI Article Synopsis

  • J-aggregation enhances the optical and electronic properties of molecular dyes, broadening their use, but designing effective J-aggregating dyes remains challenging.
  • Researchers created new J-aggregating dyes by modifying the structure of heptamethine cyanine, achieving significant improvements in spectral clarity.
  • Analysis showed a relationship between the dye's molecular structure and its ability to form J-aggregates, leading to successful applications in advanced imaging techniques in animals, allowing for detailed multispectral imaging.

Article Abstract

J-aggregation brings intriguing optical and electronic properties to molecular dyes and significantly expands their applicability across diverse domains, yet the challenge for rationally designing J-aggregating dyes persists. Herein, we developed a large number of J-aggregating dyes from scratch by progressively refining structure of a common heptamethine cyanine. J-aggregates with sharp spectral bands (full-width at half-maximum≤38 nm) are attained by introducing a branched structure featuring a benzyl and a trifluoroacetyl group at meso-position of dyes. Fine-tuning the benzyl group enables spectral regulation of J-aggregates. Analysis of single crystal data of nine dyes reveals a correlation between J-aggregation propensity and molecular arrangement within crystals. Some J-aggregates are successfully implemented in multiplexed optoacoustic and fluorescence imaging in animals. Notably, three-color multispectral optoacoustic tomography imaging with high spatiotemporal resolution is achieved, owing to the sharp and distinct absorption bands of the J-aggregates.

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Source
http://dx.doi.org/10.1002/anie.202406694DOI Listing

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