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

机译:S-Cis二烯构象:近红外荧光可切换染料的新的红移策略和成像应用。

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摘要

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.
机译:在本文中,我们提出了一种基于部花青的新型无电荷荧光可切换近红外(IR)染料,用于目标特异性成像。与通过扩展π共轭作用的典型的红移方法相反,我们的花菁染料向近红外区的红移是由于不寻常的S-顺式二烯构象异构体。这是荧光染料采用稳定的S -S顺式构象的第一个例子。除了新颖的红移机制外,该染料还具有响应极性和粘度的荧光可切换特性。通过将蛋白质特异性配体掺入染料,探针(用于SNAP标签和hCAII蛋白)在与目标蛋白结合后显示出惊人的荧光增强(最多300倍)。大范围的荧光增强,近红外吸收/发射和无电荷的支架使活细胞和体内的目标蛋白无需清洗和定点成像,背景荧光最少。我们相信,我们对具有-S-顺式二烯构象的近红外染料的非常规方法可以导致设计近红外染料的新策略。

著录项

  • 来源
    《Journal of the American Chemical Society》 |2018年第15期|5224-5234|共11页
  • 作者单位

    Department of Chemistry and Frontier Research Center on Fundamental and Applied Sciences of Matters, National Tsing Hua University, 101 Section 2, Kuang Fu Road, Hsinchu 30013, Taiwan (ROC);

    Department of Chemistry and Frontier Research Center on Fundamental and Applied Sciences of Matters, National Tsing Hua University, 101 Section 2, Kuang Fu Road, Hsinchu 30013, Taiwan (ROC);

    Department of Chemistry and Frontier Research Center on Fundamental and Applied Sciences of Matters, National Tsing Hua University, 101 Section 2, Kuang Fu Road, Hsinchu 30013, Taiwan (ROC);

    Department of Chemistry and Frontier Research Center on Fundamental and Applied Sciences of Matters, National Tsing Hua University, 101 Section 2, Kuang Fu Road, Hsinchu 30013, Taiwan (ROC);

    Department of Chemistry and Frontier Research Center on Fundamental and Applied Sciences of Matters, National Tsing Hua University, 101 Section 2, Kuang Fu Road, Hsinchu 30013, Taiwan (ROC);

    Department of Chemistry and Frontier Research Center on Fundamental and Applied Sciences of Matters, National Tsing Hua University, 101 Section 2, Kuang Fu Road, Hsinchu 30013, Taiwan (ROC);

    Institute of Biomedical Engineering and Nanomedicine, National Health Research Institutes, Miaoli 35053, Taiwan (ROC);

    Institute of Biomedical Engineering and Nanomedicine, National Health Research Institutes, Miaoli 35053, Taiwan (ROC);

    Institute of Biomedical Engineering and Nanomedicine, National Health Research Institutes, Miaoli 35053, Taiwan (ROC);

    Institute of Biomedical Engineering and Nanomedicine, National Health Research Institutes, Miaoli 35053, Taiwan (ROC);

    Department of Chemistry and Frontier Research Center on Fundamental and Applied Sciences of Matters, National Tsing Hua University, 101 Section 2, Kuang Fu Road, Hsinchu 30013, Taiwan (ROC);

    Department of Chemistry and Frontier Research Center on Fundamental and Applied Sciences of Matters, National Tsing Hua University, 101 Section 2, Kuang Fu Road, Hsinchu 30013, Taiwan (ROC);

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