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首页> 外文期刊>Journal of the American Chemical Society >Fluorogenic Squaraine Dimers with Polarity-Sensitive Folding As Bright Far-Red Probes for Background-Free Bioimaging
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Fluorogenic Squaraine Dimers with Polarity-Sensitive Folding As Bright Far-Red Probes for Background-Free Bioimaging

机译:具有极性敏感折叠功能的荧光方形ara二聚体,可作为无背景生物成像的明亮的远红色探针

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摘要

Polarity-sensitive fluorogenic dyes raised considerable attention because they can turn on their fluorescence after binding to biological targets, allowing background-free imaging. However, their brightness is limited, and they do not operate in the far-red region. Here, we present a new concept of fluorogenic dye based on a squaraine dimer that unfolds on changing environment from aqueous to organic and thus turns on its fluorescence. In aqueous media, all three newly synthesized dimers displayed a short wavelength band characteristic of an H-aggregate that was practically non-fluorescent, whereas in organic media, they displayed a strong fluorescence similar to that of the squaraine monomer. For the best dimer, which contained a pegylated squaraine core, we obtained a very high turn-on response (organic vs aqueous) up to 82-fold. Time-resolved studies confirmed the presence of nonfluorescent intramolecular H-aggregates that increased with the water content. To apply these fluorogenic dimers for targeted imaging, we grafted them to carbetocin, a ligand of the oxytocin G protein-coupled receptor. A strong receptor-specific signal was observed for all three conjugates at nanomolar concentrations. The probe derived from the core-pegylated squaraine showed the highest specificity to the target receptor together with minimal nonspecific binding to serum and lipid membranes. The obtained dimers can be considered as the brightest polarity-sensitive fluorogenic molecules reported to date, having ~660,000 M~(-1) cm~(-1) extinction coefficient and up to 40% quantum yield, whereas far-red operation region enables both in vitro and in vivo applications. The proposed concept can be extended to other dye families and other membrane receptors, opening the route to new ultrabright fluorogenic dyes.
机译:极性敏感的荧光染料引起了极大的关注,因为它们可以在与生物靶标结合后打开其荧光,从而实现无背景成像。但是,它们的亮度是有限的,并且它们不能在远红色区域工作。在这里,我们提出一种基于方酸二聚体的荧光染料的新概念,该荧光素在环境从水变到有机物时发生变化,从而开启了荧光。在水性介质中,所有三个新合成的二聚体均显示出几乎无荧光的H聚集体的短波长带特征,而在有机介质中,它们显示出与方酸单体相似的强荧光。为了获得最佳的二聚体,其中包含聚乙二醇化的方酸方形核心,我们获得了高达82倍的非常高的开启响应(有机或水性)。时间分辨的研究证实了无荧光分子内H聚集体的存在,其随着水含量的增加而增加。为了将这些荧光二聚体用于靶向成像,我们将它们嫁接到了催产素G蛋白偶联受体的配体carbetocin。在纳摩尔浓度下,所有三种缀合物均观察到了强的受体特异性信号。衍生自核心聚乙二醇化的方酸的探针对靶受体的特异性最高,与血清和脂质膜的非特异性结合最少。获得的二聚体可以认为是迄今为止报道的对极性最敏感的荧光分子,消光系数约为660,000 M〜(-1)cm〜(-1),量子产率高达40%,而远红外操作区可以实现体外和体内应用。所提出的概念可以扩展到其他染料家族和其他膜受体,为新的超亮荧光染料的开发开辟了道路。

著录项

  • 来源
    《Journal of the American Chemical Society 》 |2015年第1期| 405-412| 共8页
  • 作者单位

    Laboratoire d'Innovation Therapeutique, UMR 7200 CNRS/Universite de Strasbourg, Labex MEDALIS, Faculte de Pharmacie, 74 route du Rhin, 67401 Illkirch, France;

    Laboratoire de Biophotonique et Pharmacologie, UMR 7213 CNRS/Universite de Strasbourg, Faculte de Pharmacie, 74 route du Rhin, 67401 Illkirch, France;

    Laboratoire de Biophotonique et Pharmacologie, UMR 7213 CNRS/Universite de Strasbourg, Faculte de Pharmacie, 74 route du Rhin, 67401 Illkirch, France;

    Platform of Integrative Chemical Biology of Strasbourg (PCBIS), FMTS, UMS 3286 CNRS/Universite de Strasbourg, ESBS Pole API, Bld Sebastien Brant, 67401 Illkirch, France;

    Platform of Integrative Chemical Biology of Strasbourg (PCBIS), FMTS, UMS 3286 CNRS/Universite de Strasbourg, ESBS Pole API, Bld Sebastien Brant, 67401 Illkirch, France;

    Laboratoire de Biophotonique et Pharmacologie, UMR 7213 CNRS/Universite de Strasbourg, Faculte de Pharmacie, 74 route du Rhin, 67401 Illkirch, France;

    Laboratoire d'Innovation Therapeutique, UMR 7200 CNRS/Universite de Strasbourg, Labex MEDALIS, Faculte de Pharmacie, 74 route du Rhin, 67401 Illkirch, France;

    Laboratoire d'Innovation Therapeutique, UMR 7200 CNRS/Universite de Strasbourg, Labex MEDALIS, Faculte de Pharmacie, 74 route du Rhin, 67401 Illkirch, France;

    Laboratoire de Biophotonique et Pharmacologie, UMR 7213 CNRS/Universite de Strasbourg, Faculte de Pharmacie, 74 route du Rhin, 67401 Illkirch, France;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
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  • 正文语种 eng
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