Preview

Zhurnal Prikladnoii Spektroskopii

Advanced search
Open Access Open Access  Restricted Access Subscription Access

Spectral properties of a benzothiazole dye modified with polyethylene glycol

https://doi.org/10.47612/0514-7506-2021-88-6-852-857

Abstract

The spectral properties of a new benzothiazole dye modified with polyethylene glycol have been investigated. A strong dependence of the fluorescence quantum yield on the viscosity and polarity of the medium has been shown, i.e. the conjugation of the dye with polyethylene glycol does not lead to the loss of the properties of the molecular rotor, while significantly reduces its aggregation. When incorporated into amyloid fibrils, the quantum yield of the dye increases by more than 40 times; the new dye can be regarded as an efficient fluorescent probe for amyloid fibrils detection and research. In this case, not only the intensity, but also the position of the absorption spectrum can be used as a sensitive parameter. The presence of blood plasma proteins (albumins) in the solution has practically no effect on the position of the absorption spectrum and has little effect on the fluorescence intensity of the probe. 

About the Author

A. A. Maskevich
Yanka Kupala Grodno State University
Belarus

Grodno



References

1. Z. Darwich, A. S. Klymchenko, D. Dujardin, Y. Mély. RSC Adv., 4 (2014) 8481—8488

2. I. A. Karpenko, R. Kreder, C. Valencia, P. Villa, C. Mendre, B. Mouillac, Y. Mely, M. Hibert, D. Bonnet, A. S. Klymchenko. ChemBioChem., 15 (2014) 359—363

3. M. L.Viriot, M. C. Carre, C. Geoffroy-Chapotot, A. Brembilla, S. Muller, J. F. Stoltz. Clin. Hemorheol. Microcirc., 19 (1998) 151—160

4. S. Howell, M. Dakanali, E. A. Theodorakis, M. A. Haidekker. J. Fluores., 22 (2012) 457—465

5. M. A. Haidekker. J. Am. Chem. Soc., 128 (2006) 398—399

6. V. I. Stsiapura, A. A. Maskevich, V. A. Kuzmitsky, V. N. Uversky, I. M. Kuznetsova, K. K. Turoverov. J. Phys. Chem. B, 112 (2008) 15893—15902

7. P. K. Singh, M. Kumbhakar, H. Pal, S. Nath. J. Phys. Chem. B, 114, N 17 (2010) 5920—5927

8. E. S. Voropai, M. P. Samtsov, K. N. Kaplevskii, A. A. Maskevich, V. I. Stepuro, O. I. Povarova, I. M. Kuznetsova, K. K. Turoverov, A. L. Fink, V. N. Uverskii. J. Appl. Spectr., 70 (2003) 868—874

9. A. I. Sulatskaya, A. A. Maskevich, I. M. Kuznetsova, V. N. Uversky, K. K. Turoverov. PLoS ONE, 5, N 10 (2010) 15385-e15385

10. H. Naiki, K. Higuchi, M. Hosokawa, T. Takeda. Anal Biochem., 177 (1989) 244—249

11. T. Ban, D. Hamada, K. Hasegawa, H. Naiki, Y. Goto. J. Biol. Chem., 278 (2003) 16462—16465

12. C. E. Kung, J. K. Reed. Biochemistry, 25 (1986) 6114–6121

13. V. I. Stsiapura, S. A. Kurhuzenkau, V. A. Kuzmitsky, O. V. Bouganov, S. A. Tikhomirov. J. Phys. Chem. A, 120 (2016) 5481–5496

14. A. A. Maskevich, V. I. Stsiapura, V. A. Kuzmitsky, I. M. Kuznetsova, O. I. Povarova, V. N. Uversky, K. K. Turoverov. J. Proteom. Res., 6 (2007) 1392—1401

15. V. I. Stsiapura, A. A. Maskevich, S. A. Tikhomirov, O. V. Buganov. J. Phys. Chem. A, 114, N 32 (2010) 8345—8350

16. E. M. Kosower, D. Huppert. Chem. Phys. Lett., 96 (1983) 433—435

17. A. V. Lavysh, A. A. Maskevich, A. A. Lugovskii, E. S. Voropai, A. I. Sulatskaya, I. M. Kuznetsova, K. K. Turoverov. J. Appl. Spectr., 83 (2017) 917—923

18. А. А. Маскевич. Веснік ГрДзУ імя Янкі Купалы. Сер. 2, Матэматыка. Фізіка. Інфарматыка, вылічальная тэхніка і кіраванне, 10, № 1 (2020) 83—92


Review

For citations:


Maskevich A.A. Spectral properties of a benzothiazole dye modified with polyethylene glycol. Zhurnal Prikladnoii Spektroskopii. 2021;88(6):852-857. (In Russ.) https://doi.org/10.47612/0514-7506-2021-88-6-852-857

Views: 405


ISSN 0514-7506 (Print)