S-Cis Diene Conformation: A New Bathochromic Shift Strategy for Near-Infrared Fluorescence Switchable Dye and the Imaging Applications

In this paper, we present a novel charge-free fluorescence-switchable near-infrared (IR) dye based on merocyanine for target specific imaging. In contrast to the typical bathochromic shift approach by extending π-conjugation, the bathochromic shift of our merocyanine dye to the near-IR region is due...

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Veröffentlicht in:Journal of the American Chemical Society 2018-04, Vol.140 (15), p.5224-5234
Hauptverfasser: Chen, Hsiang-Jung, Chew, Chee Ying, Chang, En-Hao, Tu, Yu-Wei, Wei, Li-Yu, Wu, Bo-Han, Chen, Chien-Hung, Yang, Ya-Ting, Huang, Su-Chin, Chen, Jen-Kun, Chen, I-Chia, Tan, Kui-Thong
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Sprache:eng
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Zusammenfassung:In this paper, we present a novel charge-free fluorescence-switchable near-infrared (IR) dye based on merocyanine for target specific imaging. In contrast to the typical bathochromic shift approach by extending π-conjugation, the bathochromic shift of our merocyanine dye to the near-IR region is due to an unusual S-cis diene conformer. This is the first example where a fluorescent dye adopts the stable S-cis conformation. In addition to the novel bathochromic shift mechanism, the dye exhibits fluorescence-switchable properties in response to polarity and viscosity. By incorporating a protein-specific ligand to the dye, the probes (for SNAP-tag and hCAII proteins) exhibited dramatic fluorescence increase (up to 300-fold) upon binding with its target protein. The large fluorescence enhancement, near-IR absorption/emission, and charge-free scaffold enabled no-wash and site-specific imaging of target proteins in living cells and in vivo with minimum background fluorescence. We believe that our unconventional approach for a near-IR dye with the S-cis diene conformation can lead to new strategies for the design of near-IR dyes.
ISSN:0002-7863
1520-5126
DOI:10.1021/jacs.8b01159