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Novel pH-responsive highly fluorescent lipophilic eoumarins as efficient two-photon sensors of acidic and basic environments

机译:新型pH-响应高度荧光亲脂性Eoumarins作为酸性和基本环境的有效双光子传感器

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Two-photon excitation of fluorescence (2PEF) is a versatile tool for high-resolution functional microscopy, but few existing fluorophores combine high two-photon brightness with ability to report on key in vivo- and in vitro environmental factors such as pH, ionic strength, or solvent polarity. We describe four novel pH-sensitive derivatives of coumarin 151 with different attached phosphazene moieties, offering high lipophilicity both in their neutral- and protonated forms at near physiological conditions (neutral to mildly basic). We measure the two-photon absorption (2PA) and 2PEF emission spectra, as well as the fluorescence quantum yields in neutral acetonitrile solution, as well as with the addition of small amount of trifluoromethanesulfonic (triflic) or hydrochloric acid. We show that the neutral form has high two-photon brightness in the basic environments, whereas protonation quenches the fluorescence by a factor of ~ 20, while blue-shifting the absorption- and emission peaks by 60 nm. By evaluating the ratio of the measured 2PA and 1PA spectra corresponding to the transition to the lowest excited singlet state Si we show, for the first time, that the permanent molecular dipole moment change is reduced upon the protonation. This conclusion is supported by our quantum-chemical calculations which indicate that protonation leads to reduction of extent of conjugation in the system. We also measure the time-dependent fluorescence and show that in neutral environment the fluorescence displays a single-exponential decay, while upon protonation the decay is distinctly non-single-exponential in character.
机译:荧光(2pef)的双光子激发是用于高分辨率功能显微镜的多功能工具,但少数现有的荧光团将高二光子亮度结合在体外和体外环境因素(如pH,离子强度)中报告关键的能力或溶剂极性。我们描述了具有不同附加的磷腈部分的香豆素151的四种新型pH敏感衍生物,在近期生理条件下以其中性和质子化形式提供高亲脂性(中性至轻微的碱性)。我们测量双光子吸收(2Pa)和2PEF发射光谱,以及中性乙腈溶液中的荧光量子,以及加入少量的三氟甲磺酸(三氟甲磺酸或盐酸。我们表明中性形式在基本环境中具有高的双光子亮度,而质子化将荧光催化为〜20的因子,同时将吸收和发射峰的蓝色移位60nm。通过评估测量的2Pa和1Pa光谱对应于过渡到最低激发单态Si的比例,首次在质子化上降低了永久分子偶极力矩变化。我们的结论是我们量子化学计算的支持,表明质子化导致系统中缀合程度的降低。我们还测量时间依赖性荧光,表明在中性环境中,荧光显示单指数衰减,而质子上的衰减是明显的字符中的非单指数。

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