Polymer Complexes of Amikacin with Sulfur-Containing Polymers
https://doi.org/10.37489/0235-2990-2023-68-11-12-4-9
Abstract
Polymer complexes of amikacin based on two sulfonic polymers, dextran sulfonic acid and poly-2-acrylamido-2-methylpropane sulfonic acid, containing 25 and 33 wt % of the antibiotic, respectively, have been synthesized. Molecular weights and limiting binding capacities were determined for carrier polymers. The formation of polymer complexes was confirmed by IR and UV spectroscopy, as well as by GPC. The kinetics of amikacin release from complexes was investigated in water at 37°С. The resulting complexes exhibited high antibacterial activity, close to control, and weak antiviral activity.
About the Authors
A. Yu. SeminaRussian Federation
Anastasiya Yu. Semina
Saint Petersburg
М. Yu. Smirnova
Russian Federation
Marianna Yu. Smirnova — Ph. D. in Chemistry, Researcher at the Laboratory No. 2
Saint Petersburg
ResearcherID: N-3040-2016
М. V. Solovskij
Russian Federation
Michail V. Solovskij
Saint Petersburg
ResearcherID: I-9072-2017
References
1. Ushakov S.N. Sinteticheskie polimery meditsinskogo naznacheniya. L.: Meditsina, 1962; 42. (in Russian)
2. Kopechek J. Polimery s upravlyaemoj biodegradiruemost'jyu kak nositeli biologicheski aktivnykh veshchestv. Zhurnal Vsessojyuznogo Khimicheskogo Obshchestva im. D. I. Mendeleeva. 1985; 30 (4): 372–377. (in Russian)
3. Khomyakov K.P., Virnik A.D., Rogovin Z.A. Prolongirovanie dejstviya lekarstvennykh preparatov putem ispol'zovaniya ikh v smesi s polimerami ili prisoedineniya k polimeram. Uspekhi Khimii. 1964; 33 (9): 1051−1061. (in Russian)
4. Tuchnaya O.A., Gorlachuk O.V., Livshits V.A., Kashiricheva I.I., Shastina N.S., Jyurkevich A.M., Shvets V.I. Sintez anionnykh proizvodnykh mioinozita i drugikh poliolov i issledovanie ikh antivirusnoj aktivnosti. Khimiko-Farmatsevticheskij Zhurnal. 2008; 42 (1): 6−12. (in Russian)
5. Solovskij M.V., Borisenko M.S., Smirnova M.Jyu., Eropkin M.Jyu., Eropkina E.M., Tarabukina E.B. Polimernye kompleksy antibiotika rifampitsina na osnove poli-2-akrilamido-2-metilpropansul'fokisloty. Khimiko-farmatsevticheskij zhurnal. 2022; 56 (8). doi: https://doi.org/10.30906/0023-1134-2022-568-17-20. (in Russian)
6. Eropkin M.Jyu., Solovskij M.V., Tikhomirova O.M., Bryazzhikova T.S., Smirnova M.Jyu., Eropkina E.M., Smirnova T.S. Poluchenie i biologicheskaya aktivnost' kompleksov sul'fosoderzhashchikh polimernykh anionov i gentamitsina. Eksperimental'naya i Klinicheskaya Farmakologiya. 2012; 72 (5): 38−42. (in Russian)
7. Solovskij M.V. Modifikatsiya fiziologicheski aktivnykh veshchestv polimerami: uchebnoe posobie. SPb. : Izd-vo Politekhnicheskogo universiteta. 20124; 115. (in Russian)
8. Guarino V.A., Blau A., Alvarenga J., Loscalzo J., Zhang Y. A crosslinked dextran sulfate-chitosan nanoparticle for delivery of therapeutic heparin-binding proteins. Int J Pharm. 2021; 610: 121287. doi: 10.1016/ j.ijpharm.2021.121287. Epub 2021 Nov 11.
9. Kikuchi T., Matsuura K., Shimizu T. Non-coating method for nonadherent cell culture using high molecular weight dextran sulfate and bovine serum albumin. J Biosci Bioeng. 2021; 132 (5): 537–542. doi: 10.1016/j.jbiosc.2021.08.006.
10. Snezhko V.A., Komar V.P., Khomyakov K.P., Virnik A.D., Zhbankov R.G., Rozenberg G.Ya., Rogovin Z.A. Sintez vodorastvorimykh proizvodnykh dekstrana, soderzhashchikh khimicheski prisoedinennye antibiotiki. Vysokomolekulyarnye Soedineniya. 1974; 16 A (10): 2233−2238. (in Russian)
11. Panarin E.F. Polimernye lekarstva i biologicheski aktivnye veshchestva. Itogi poluvekovykh issledovanij i perspektivy. Polimery i Meditsina. 2005; 1: 20—24. (in Russian)
12. Herrmann A., Korte T., Arnold K., Hillebrecht B. The influence of dextran sulfate on influenza A virus fusion witherythrocyte membranes. Antiviral Res. 1992; 19 (4): 295–311. doi: 10.1016/0166-3542(92)90011-s.
13. Ito M., Baba M., Sato A., Pauwels R., De Clercq E., Shigeta S. Inhibitory effect of dextran sulfate and heparin on the replication of human immunodeficiency virus (HIV) in vitro. Antiviral Res. 1987; 7: 361−367. doi: 10.1016/0166-3542(87)90018-0.
14. https://tools.thermofisher.com/content/sfs/manuals/D00386~.pdf
Review
For citations:
Semina A.Yu., Smirnova М.Yu., Solovskij М.V. Polymer Complexes of Amikacin with Sulfur-Containing Polymers. Antibiot Khimioter = Antibiotics and Chemotherapy. 2023;68(11-12):4-9. (In Russ.) https://doi.org/10.37489/0235-2990-2023-68-11-12-4-9