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

机译:推挽二氧杂萘灵作为荧光分子转子:配体-受体相互作用的远红荧光探针

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摘要

Fluorescent solvatochromic dyes and molecular rotors increase their popularity as fluorogenic probes for background-free detection of biomolecules in cellulo in no-wash conditions. Here, we introduce a push-pull boron-containing (dioxaborine) dye that presents unique spectroscopic behavior combining solvatochromism and molecular rotor properties. Indeed, in organic solvents, it shows strong red shifts in the absorption and fluorescence spectra upon increase in solvent polarity, typical for push-pull dyes. On the other hand, in polar solvents, where it probably undergoes Twisted Intramolecular Charge Transfer (TICT), the dye displays strong dependence of its quantum yield on solvent viscosity, in accordance to Förster-Hoffmann equation. In comparison to solvatochromic and molecular rotor dyes, dioxaborine derivative shows exceptional extinction coefficient (120,000 M-1 cm-1), high fluorescence quantum yields and red/far-red operating spectral range. It also displays much higher photostability in apolar media as compared to Nile Red, a fluorogenic dye of similar color. Its reactive carboxy derivative has been successfully grafted to carbetocin, a ligand of the oxytocin G protein-coupled receptor. This conjugate exhibits >1000-fold turn on between apolar 1,4-dioxane and water. It targets specifically the oxytocin receptor at the cell surface, which enables receptor imaging with excellent signal-to-background ratio (>130). We believe that presented push-pull dioxaborine dye opens a new page in the development of fluorogenic probes for bioimaging applications.
机译:荧光溶剂化变色染料和分子转子作为无源条件下无纤维素检测纤维素中生物分子的荧光探针而日益普及。在这里,我们介绍一种推挽式含硼(dioxaborine)染料,该染料结合了溶剂致变色和分子转子特性,表现出独特的光谱行为。确实,在有机溶剂中,随着溶剂极性的增加,它在吸收和荧光光谱中会显示出强烈的红移,这对于推挽式染料来说是典型的。另一方面,根据Förster-Hoffmann方程,在极性溶剂中,它可能会经历分子内扭曲电荷转移(TICT),该染料表现出其量子产率对溶剂粘度的强烈依赖性。与溶剂变色染料和分子转子染料相比,二氧杂硼啉衍生物具有出色的消光系数(120,000 M -1 cm -1 ),高荧光量子产率和红色/远红色操作光谱范围。与类似颜色的荧光染料尼罗红相比,它在非极性介质中也显示出更高的光稳定性。它的反应性羧基衍生物已成功移植到催产素G蛋白偶联受体的配体carbetocin上。该共轭物在非极性1,4-二恶烷和水之间显示> 1000倍的开启。它专门针对细胞表面的催产素受体,使受体成像具有出色的信噪比(> 130)。我们相信,提出的推挽二氧杂硼嘌呤染料为生物成像应用的荧光探针的开发打开了新的一页。

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