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用于活细胞中快速免洗生物正交标记的超亮双光子可激发红色发射荧光探针。

Ultrabright two-photon excitable red-emissive fluorogenic probes for fast and wash-free bioorthogonal labelling in live cells.

作者信息

Auvray Marie, Naud-Martin Delphine, Fontaine Gaëlle, Bolze Frédéric, Clavier Gilles, Mahuteau-Betzer Florence

机构信息

CNRS UMR9187, Inserm U1196, Chemistry and Modeling for the Biology of Cancer Institut Curie, Université PSL 91400 Orsay France

CNRS UMR9187, Inserm U1196, Chemistry and Modeling for the Biology of Cancer, Université Paris-Saclay 91400 Orsay France.

出版信息

Chem Sci. 2023 Jul 4;14(30):8119-8128. doi: 10.1039/d3sc01754k. eCollection 2023 Aug 2.

Abstract

Fluorogenic bioorthogonal reactions are promising tools for tracking small molecules or biomolecules in living organisms. Two-photon excitation, by shifting absorption towards the red, significantly increases the signal-to-noise ratio and decreases photodamage, while allowing imaging about 10 times deeper than with a confocal microscope. However, efficient two-photon excitable fluorogenic probes are currently lacking. We report here the design and synthesis of fluorogenic probes based on a two-photon excitable fluorophore and a tetrazine quenching moiety. These probes react with bicyclo[6.1.0]no-4-yn-9ylmethanol (BCN) with a good to impressive kinetic rate constant (up to 1.1 × 10 M s) and emit in the red window with moderate to high turn-on ratios. TDDFT allowed the rationalization of both the kinetic and fluorogenic performance of the different probes. The best candidate displays a 13.8-fold turn-on measured by quantifying fluorescence intensities in live cells under one-photon excitation, whereas a value of 3 is sufficient for high contrast live-cell imaging. In addition, live-cell imaging under two-photon excitation confirmed that there was no need for washing to monitor the reaction between BCN and this probe since an 8.0-fold turn-on was measured under two-photon excitation. Finally, the high two-photon brightness of the clicked adduct (>300 GM) allows the use of a weak laser power compatible with imaging.

摘要

荧光生物正交反应是用于追踪活生物体中小分子或生物分子的有前景的工具。双光子激发通过将吸收向红光方向移动,显著提高了信噪比并减少了光损伤,同时允许成像深度比共聚焦显微镜深约10倍。然而,目前缺乏高效的双光子可激发荧光探针。我们在此报告基于双光子可激发荧光团和四嗪猝灭部分的荧光探针的设计与合成。这些探针与双环[6.1.0]壬-4-炔-9-基甲醇(BCN)反应,具有良好到令人印象深刻的动力学速率常数(高达1.1×10 M s),并在红色窗口发射,开启比率适中到较高。含时密度泛函理论(TDDFT)使我们能够合理解释不同探针的动力学和荧光性能。最佳候选物在单光子激发下通过量化活细胞中的荧光强度测量显示出13.8倍的开启,而对于高对比度活细胞成像,3的值就足够了。此外,双光子激发下的活细胞成像证实,由于在双光子激发下测量到8.0倍的开启,无需洗涤即可监测BCN与该探针之间的反应。最后,点击加合物的高二光子亮度(>300 GM)允许使用与成像兼容的弱激光功率。

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