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Optimization of Photosensitized Tryptophan Oxidation in the Presence of Dimegin-Polyvinylpyrrolidone-Chitosan Systems

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Journal Sci Rep
Specialty Science
Date 2018 May 26
PMID 29795266
Citations 1
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Abstract

By the example of a model process of tryptophan photooxidation in the aqueous medium in the presence of a three-component photosensitizing complex (porphyrin photosensitizer-polyvinylpyrrolidone- chitosan, PPS-PVP-CT) in the temperature range of 20-40 °С, we have demonstrated a possibility of modification of such a process by selecting different molar ratios of the components in the reaction mixture. The actual objective of this selection is the formation of a certain PPS-PVP-CT composition in which PVP macromolecules would coordinate with PPS molecules and at the same time practically block the complex binding of PPS molecules with chitosan macromolecules. Such blocking allows utilization of the bactericidal properties of chitosan to a greater extent, since chitosan is known to depress the PPS photosensitizing activity in PPS-PVP-CT complexes when using those in photodynamic therapy (PDT). The optimal composition of photosensitizing complexes appears to be dependent on the temperature at which the PDT sessions are performed. We have analyzed the correlations of the effective rate constants of tryptophan photooxidation with the photophysical characteristics of the formed complexes.

Citing Articles

Effect of Chitosan on the Activity of Water-Soluble and Hydrophobic Porphyrin Photosensitizers Solubilized by Amphiphilic Polymers.

Kardumyan V, Aksenova N, Timofeeva V, Krivandin A, Shatalova O, Dubovik A Polymers (Basel). 2021; 13(7).

PMID: 33805853 PMC: 8037264. DOI: 10.3390/polym13071007.

References
1.
Chen Z, Lohr A, Saha-Moller C, Wurthner F . Self-assembled pi-stacks of functional dyes in solution: structural and thermodynamic features. Chem Soc Rev. 2009; 38(2):564-84. DOI: 10.1039/b809359h. View

2.
Bench B, Beveridge A, Sharman W, Diebold G, van Lier J, Gorun S . Introduction of bulky perfluoroalkyl groups at the periphery of zinc perfluorophthalocyanine: chemical, structural, electronic, and preliminary photophysical and biological effects. Angew Chem Int Ed Engl. 2002; 41(5):747-50. DOI: 10.1002/1521-3773(20020301)41:5<747::aid-anie747>3.0.co;2-j. View

3.
Roby A, Erdogan S, Torchilin V . Solubilization of poorly soluble PDT agent, meso-tetraphenylporphin, in plain or immunotargeted PEG-PE micelles results in dramatically improved cancer cell killing in vitro. Eur J Pharm Biopharm. 2005; 62(3):235-40. PMC: 1634738. DOI: 10.1016/j.ejpb.2005.09.010. View

4.
Philippova O, Korchagina E, Volkov E, Smirnov V, Khokhlov A, Rinaudo M . Aggregation of some water-soluble derivatives of chitin in aqueous solutions: Role of the degree of acetylation and effect of hydrogen bond breaker. Carbohydr Polym. 2021; 87(1):687-694. DOI: 10.1016/j.carbpol.2011.08.043. View

5.
Schatz C, Viton C, Delair T, Pichot C, Domard A . Typical physicochemical behaviors of chitosan in aqueous solution. Biomacromolecules. 2003; 4(3):641-8. DOI: 10.1021/bm025724c. View