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Absorption and fluorescent spectral studies of imidazophenazine derivatives
Authors:Ryazanova O A  Zozulya V N  Voloshin I M  Karachevtsev V A  Makitruk V L  Stepanian S G
Institution:B. Verkin Institute for Low Temperature Physics and Engineering of NAS of Ukraine, 47 Lenin avenue, 61103 Kharkov, Ukraine. ryazanova@ilt.kharkov.ua
Abstract:Absorption and fluorescent spectra as well as fluorescence polarization degree of imidazo-4,5-d]-phenazine (F1) and its two modified derivatives, 2-trifluoridemethylimidazo-4,5-d]-phenazine (F2) and 1,2,3-triazole-4,5-d]-phenazine (F3), were investigated in organic solvents of various polarities and hydrogen bonding abilities. Extinction coefficients of F2 and F3 are increased, their fluorescence Stokes shifts are reduced in comparison with those for unmodified imidazophenazine. For F3 a red shift of the longwave absorption band is observed by 15-20 nm. Modifications of imidazophenazine have led to a sufficient increase of fluorescence polarization degrees that enables to use F2 and F3 as promising fluorescent probes with polarization method application. The configuration, atomic charge distribution and dipole moments of the isolated dye molecules in the ground state were calculated by the DFT method. The computation has revealed that ground state dipole moments of F1, F2, and F3 differ slightly and are equal to 3.5, 3.2, and 3.7D, respectively. The changes in dipole moments upon the optical excitation for all derivatives estimated using Lippert equation were found to be Deltamu = 9 D. The energies of the electronic S1<--S0 transition in solvents of different proton donor abilities were determined, and energetic diagram illustrating the substituent effect was plotted. For nucleoside analogs of these compounds, covalently incorporated into a nucleotide chain, we have considered a possibility to use them as fluorescent reporters of hybridization of antisense oligonucleotides, as well as molecular anchors for its stabilization.
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