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基于新型 N,O-螯合物的荧光硼配合物作为流式细胞术的有前途的候选物。

Fluorescent boron complexes based on new N,O-chelates as promising candidates for flow cytometry.

机构信息

Ural Federal University, 19 Mira Str., Yekaterinburg, 620002, Russian Federation.

出版信息

Org Biomol Chem. 2018 Jul 18;16(28):5150-5162. doi: 10.1039/c8ob00868j.

Abstract

This study presents the synthesis and optical properties of a new class of bright green-yellow fluorescent dyes with potential applications in bioimaging. A facile synthetic route via the chelation of aryl(hetaryl)aminoacryloylthiophene scaffolds with a BF2 fragment is presented. The photophysical properties of the dyes are attributed to the nature and position of electron-donating and electron-withdrawing substituents. Upon coordination to a BF2 fragment, characteristic emission was observed, with λem ranging from 503 to 543 nm and quantum yields of 0.14-0.42. Compared with parent aryl(hetaryl)aminoacryloylthiophenes, a significant red shift in absorption (up to 480 nm in solution) and emission (up to 543 nm in solution and 610 nm in the solid state) and high chemical stability and photostability were observed. The electron-accepting character of the substituents on the terminal aromatic ring or replacing this fragment with pyridine or pyrazine moieties resulted in increased quantum yields. To gain insight into the electronic structures and optical properties, quantum mechanical calculations were performed. The results of (TD-)DFT calculations supported the structural and spectroscopic data and showed the features of electronic distribution in the frontier molecular orbitals and active electrophilic and nucleophilic sites in the compounds investigated. Synthesized BF2 complexes are promising dyes for cell imaging and flow cytometry owing to their ready penetration and accumulation in cells.

摘要

本研究提出了一类新型的亮黄绿色荧光染料的合成和光学性质,这些染料具有在生物成像中应用的潜力。通过芳基(杂芳基)氨基丙烯酰噻吩支架与 BF2 片段的螯合,提出了一种简便的合成途径。染料的光物理性质归因于供电子和吸电子取代基的性质和位置。在与 BF2 片段配位后,观察到特征发射,发射波长范围为 503nm 至 543nm,量子产率为 0.14-0.42。与母体芳基(杂芳基)氨基丙烯酰噻吩相比,吸收(在溶液中高达 480nm)和发射(在溶液中高达 543nm,在固态中高达 610nm)均有明显的红移,且具有较高的化学稳定性和光稳定性。取代基在末端芳环上的电子接受特性或用吡啶或吡嗪部分取代该片段,导致量子产率增加。为了深入了解电子结构和光学性质,进行了量子力学计算。(TD-)DFT 计算的结果支持了结构和光谱数据,并显示了化合物中前沿分子轨道中的电子分布特征以及活性亲电和亲核部位的特征。合成的 BF2 配合物因其易于穿透和在细胞中积累,有望成为细胞成像和流式细胞术的理想染料。

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