Literature DB >> 25506627

Fluorogenic squaraine dimers with polarity-sensitive folding as bright far-red probes for background-free bioimaging.

Iuliia A Karpenko1, Mayeul Collot, Ludovic Richert, Christel Valencia, Pascal Villa, Yves Mély, Marcel Hibert, Dominique Bonnet, Andrey S Klymchenko.   

Abstract

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 nonfluorescent, 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.

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Year:  2014        PMID: 25506627     DOI: 10.1021/ja5111267

Source DB:  PubMed          Journal:  J Am Chem Soc        ISSN: 0002-7863            Impact factor:   15.419


  12 in total

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2.  Deploying Fluorescent Nucleoside Analogues for High-Throughput Inhibitor Screening.

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3.  Bacteriochlorin Dyads as Solvent Polarity Dependent Near-Infrared Fluorophores and Reactive Oxygen Species Photosensitizers.

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4.  Preassembled Fluorescent Multivalent Probes for the Imaging of Anionic Membranes.

Authors:  Felicia M Roland; Evan M Peck; Douglas R Rice; Bradley D Smith
Journal:  Bioconjug Chem       Date:  2017-02-09       Impact factor: 4.774

5.  Type I Phosphatidylinositol-4-Phosphate 5-Kinases α and γ Play a Key Role in Targeting HIV-1 Pr55Gag to the Plasma Membrane.

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6.  Push-pull dioxaborine as fluorescent molecular rotor: far-red fluorogenic probe for ligand-receptor interactions.

Authors:  Iuliia A Karpenko; Yosuke Niko; Viktor P Yakubovskyi; Andriy O Gerasov; Dominique Bonnet; Yuriy P Kovtun; Andrey S Klymchenko
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7.  Real time monitoring of aminothiol level in blood using a near-infrared dye assisted deep tissue fluorescence and photoacoustic bimodal imaging.

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8.  Probing biotin receptors in cancer cells with rationally designed fluorogenic squaraine dimers.

Authors:  Kyong T Fam; Mayeul Collot; Andrey S Klymchenko
Journal:  Chem Sci       Date:  2020-07-09       Impact factor: 9.825

9.  H-Rubies, a new family of red emitting fluorescent pH sensors for living cells.

Authors:  Guillaume Despras; Alsu I Zamaleeva; Lucie Dardevet; Céline Tisseyre; Joao Gamelas Magalhaes; Charlotte Garner; Michel De Waard; Sebastian Amigorena; Anne Feltz; Jean-Maurice Mallet; Mayeul Collot
Journal:  Chem Sci       Date:  2015-07-14       Impact factor: 9.825

10.  Fluorescent Thienothiophene-Containing Squaraine Dyes and Threaded Supramolecular Complexes with Tunable Wavelengths between 600⁻800 nm.

Authors:  Wenqi Liu; Hannah H McGarraugh; Bradley D Smith
Journal:  Molecules       Date:  2018-09-01       Impact factor: 4.411

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