Selected publications

Original articles

  1. Markova L.I., Fedyunyayeva I.A., Povrozin Ye.A., Semenova O.M., Khabuseva S.U., Terpetschnig E.A., Patsenker L.D. Water soluble indodicarbocyanine dyes based on 2,3-dimethyl-3-(4-sulfobutyl)-3H-indole-5-sulfonic acid, Dyes and Pigments, 2013, V.96, Iss. 2, 535–546.

  2. Collot M., Kreder R., Tatarets A.L., Patsenker L.D., Mely Y., Klymchenko A.S. Bright fluorogenic squaraines with tuned cell entry for selective imaging of plasma membrane vs. endoplasmic reticulum, Chem. Commun., 2015, V. 51, 17136–17139.

  3. ‎Shkand T.V., Chizh M.O., Sleta I.V., Sandomirsky B.P., Tatarets A.L., Patsenker L.D. ‎Assessment of alginate hydrogel degradation in biological tissue using viscosity-sensitive ‎fluorescent dyes, Methods Appl. Fluoresc., 2016, V. 4, 044002.‎

  4. Govor I.V., Tatarets A.L., Obukhova O.M., Terpetschnig E.A., Gellerman G., Patsenker L.D. ‎Tracing the conformational changes in BSA using FRET with environmentally-sensitive ‎squaraine probes, Methods Appl. Fluoresc., 2016, V. 4, 024007.‎

  5. Hovor I.V., Kolosova O.S., Sanin E.V., Obukhova O.M., Tatarets A.L., Terpetschnig E.A., Patsenker L.D. Water-soluble norsquaraine dyes for protein labeling and pH-sensing applications, Dyes and Pigments, 2019, V. 170, 107567.

  6. Kolosova O.S., Shishkina S.V., Marks V., Gellerman G., Hovor I.V., Tatarets A.L., Terpetschnig E.A., ‎ Patsenker L.D. Molecular structure and spectral properties of indolenine ‎based norsquaraines versus squaraines, Dyes and Pigments, 2019, V. 163, 318–329.

  7. Semenova O., Kobzev D., Yazbak F., Nakonechny F., Kolosova O., Tatarets A., Gellerman G., Patsenker L. Unexpected effect of iodine atoms in heptamethine cyanine dyes on the photodynamic eradication of Gram-positive and Gram-negative pathogens, Dyes and Pigments, 2021, V. 195, 109745.

  8. Mass O.A., Wilson Ch.K., Barcenas G., Terpetschnig E.A., Obukhova O.M., Kolosova O.S., Tatarets A.L., Li L., Yurke B., Knowlton W.B., Pensack R.D., Lee J. Influence of hydrophobicity on excitonic coupling in DNA-templated indolenine squaraine dye aggregates, J. Phys. Chem. C, 2022, V. 126, 3475-3488.

  9. Barclay M.S., Wilson Ch.K., Roy S.K., Mass O.A., Obukhova O.M., Svoiakov R.P., Tatarets A.L., Chowdhury A.U., Huff J.S., Turner D.B., Davis P.H., Terpetschnig E.A., Yurke B., Knowlton W.B., Lee J., Pensack R.D. Oblique packing and tunable excitonic coupling in DNA-templated squaraine rotaxane dimer aggregates, ChemPhotoChem, 2022, V. 6 (7), e202200039.

  10. Kulyk O.G., Kolosova O.S., Svoiakov R.P., Kobzev D.V., Hovor I.V., Kraievska I.M., Sanin E.V., Krivoshey A.I., Tkachuk Z.Yu., Tatarets A.L. Novel dimeric dyes based on the acridine orange chromophore: Synthesis, characterization and application in real-time PCR, Dyes and Pigments, 2022, V. 200, 110148.

Books

  1. Patsenker L.D., Tatarets A.L., Klochko O.P., Terpetschnig E.A. Conjugates, complexes and interlocked systems based on squaraines and cyanines. In Springer Series on Fluorescence, V.9: "Advanced Fluorescence Reporters in Chemistry and Biology II". Vol. Ed. A. Demchenko, Ser. Ed. O.S.Wolfbeis. Springer Verlag, 2010, pp. 159–190.

  2. Patsenker L.D., Tatarets A.L., Terpetschnig E.A. Long-Wavelength Probes and Labels Based on Cyanines and Squaraines. In Springer Series on Fluorescence, V.8: "Advanced Fluorescence Reporters in Chemistry and Biology I". Vol. Ed. A. Demchenko, Ser. Ed. O.S.Wolfbeis. Springer Verlag, 2010, pp. 65–104.

  3. Patsenker L.D., Tatarets A.L., Povrozin Ye.A., Terpetschnig E.A., Long-wavelength fluorescence lifetime labels, Bioanal. Rev., 2011, V.3, 115–137.