Secció de Química Orgànica, Departament de Química Inorgànica i Orgànica, Universitat de Barcelona , Martí i Franquès 1-11, E-08028 Barcelona, Spain.
Institut de Biomedicina de la Universitat de Barcelona (IBUB) , E-08028 Barcelona, Spain.
J Org Chem. 2018 Feb 2;83(3):1185-1195. doi: 10.1021/acs.joc.7b02660. Epub 2018 Jan 11.
Among the palette of previously described fluorescent organic molecules, coumarins are ideal candidates for developing cellular and molecular imaging tools due to their high cell permeability and minimal perturbation of living systems. However, blue-to-cyan fluorescence emission is usually difficult in in vivo applications due to the inherent toxicity and poor tissue penetration of short visible light wavelengths. Here, we introduce a new family of coumarin-based fluorophores, nicknamed COUPY, with promising photophysical properties, including emission in the far-red/near-infrared (NIR) region, large Stokes shifts, high photostability, and excellent brightness. COUPY fluorophores were efficiently synthesized in only three linear synthetic steps from commercially available precursors, with the N-alkylation of a pyridine moiety being the key step at the end of the synthetic route, as it allows for the tuning of the photophysical properties of the resulting dye. Owing to their low molecular weights, COUPY dyes show excellent cell permeability and accumulate selectively in nucleoli and/or mitochondria of HeLa cells, as their far-red/NIR fluorescence emission is easily detected at a concentration as low as 0.5 μM after an incubation of only 20 min. We anticipate that these coumarin scaffolds will open a way to the development of novel coumarin-based far-red to NIR emitting fluorophores with potential applications for organelle imaging and biomolecule labeling.
在先前描述的荧光有机分子中,香豆素由于其高细胞通透性和对活系统的最小干扰,是开发细胞和分子成像工具的理想候选物。然而,由于短可见光波长的固有毒性和较差的组织穿透性,其在体内应用中通常难以实现蓝到青的荧光发射。在这里,我们引入了一类新的香豆素基荧光团,名为 COUPY,具有有前途的光物理性质,包括在远红/近红外(NIR)区域的发射、大斯托克斯位移、高光稳定性和出色的亮度。COUPY 荧光团仅通过从商业上可获得的前体进行三个线性合成步骤即可有效地合成,其中吡啶部分的 N-烷基化是合成路线末端的关键步骤,因为它允许调节所得染料的光物理性质。由于其低分子量,COUPY 染料表现出优异的细胞通透性,并选择性地在 HeLa 细胞的核仁内和/或线粒体中积累,因为其远红/NIR 荧光发射在仅孵育 20 分钟后,在低至 0.5 μM 的浓度下就很容易检测到。我们预计这些香豆素支架将为开发新型基于香豆素的远红到 NIR 发射荧光团开辟道路,这些荧光团可能应用于细胞器成像和生物分子标记。