Chizhov Dmitrii L, Kvashnin Yuriy A, Demina Nadezhda S, Zhilina Ekaterina F, Minin Artem S, Verbitskaia Natalia A, Dinastiia Ekaterina M, Rusinov Gennady L, Verbitskiy Egor V, Charushin Valery N
I. Ya. Postovsky Institute of Organic Synthesis, Ural Branch of the Russian Academy of Sciences, S. Kovalevskaya Str., 22, 620066 Ekaterinburg, Russia.
Institute of Natural Sciences and Mathematics, Ural Federal University, Kuibysheva St. 48, 620026 Ekaterinburg, Russia.
Int J Mol Sci. 2025 May 30;26(11):5271. doi: 10.3390/ijms26115271.
We have designed novel push-pull systems based on CF-substituted pyridines and pyrimidines. The photophysical properties of these new fluorophores have been examined using both absorption and emission spectral analyses in acetonitrile solutions and solid states. All fluorophores proved to exhibit moderate absolute quantum yields of up to 0.33 in solutions and up to 0.12 in solid states, depending on their specific structures. Most fluorophores have demonstrated significant aggregation-induced emission behavior, making them suitable as robust and low-toxicity bioimaging agents for bioimaging studies. Comparison with known dyes and studies on various cell cultures demonstrated the selectivity of the obtained push-pull systems for visualizing lipid droplets.
我们设计了基于CF取代吡啶和嘧啶的新型推挽体系。利用乙腈溶液和固态中的吸收光谱和发射光谱分析,研究了这些新型荧光团的光物理性质。所有荧光团在溶液中的绝对量子产率最高可达0.33,在固态中最高可达0.12,这取决于它们的具体结构。大多数荧光团表现出显著的聚集诱导发光行为,使其适合作为用于生物成像研究的稳健且低毒性的生物成像剂。与已知染料的比较以及对各种细胞培养物的研究表明,所获得的推挽体系对脂质滴可视化具有选择性。