Fan Fan, Povedailo Vladimir A, Lysenko Ivan L, Seviarynchyk Tatsiana P, Sharko Olga L, Mazunin Ilya O, Shmanai Vadim V
Institute of Physical Organic Chemistry, National Academy of Sciences of Belarus, 13 Surganova str., 220072, Minsk, Belarus.
B.I. Stepanov Institute of Physics, National Academy of Sciences of Belarus, 68 Nezavisimost' Ave., 220072, Minsk, Belarus.
J Fluoresc. 2024 Mar;34(2):925-933. doi: 10.1007/s10895-023-03321-0. Epub 2023 Jul 8.
In non-viscous aqueous solutions, the cyanine fluorescent dyes Cy3 and Cy5 have rather low fluorescence efficiency (the fluorescence quantum yields of Cy3 and Cy5 are 0.04 and 0.3, respectively [1, 2]) and short excited state lifetimes due to their structural features. In this work, we investigated the effect of solubility and rotational degrees of freedom on the fluorescence efficiency of Cy3 and Cy5 in several ways. We compared the fluorescence efficiencies of two cyanine dyes sCy3 and sCy5 with the introduction of a sulfonyl substituent in the aromatic ring as well as covalently bound to T10 oligonucleotides. The results show that because of the different lengths of the polymethine chains between the aromatic rings of the dyes, cis-trans-isomerization has a much greater effect on the Cy3 molecule than on the Cy5 molecule, while the effect of aggregation is also significant.
在非粘性水溶液中,花菁荧光染料Cy3和Cy5由于其结构特征,具有相当低的荧光效率(Cy3和Cy5的荧光量子产率分别为0.04和0.3 [1, 2])以及较短的激发态寿命。在这项工作中,我们通过几种方式研究了溶解度和旋转自由度对Cy3和Cy5荧光效率的影响。我们比较了两种花菁染料sCy3和sCy5的荧光效率,它们在芳香环中引入了磺酰基取代基,并与T10寡核苷酸共价结合。结果表明,由于染料芳香环之间聚甲炔链长度不同,顺反异构化对Cy3分子的影响比对Cy5分子的影响大得多,而聚集的影响也很显著。