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Photogeneration of Cytotoxic Radicals in Solutions and Cell Membranes Containing Halomethanes to Increase the Efficiency of Antitumor Therapy

Abstract

Enhancement by halomethanes (CCl4, CHBr3) of photosensitized by Zn-tetraphenylporphin and Zn-tetramethylpyridylporphyrin destruction of protein tryptophanils and lipid peroxidation in isolated erythrocyte membranes has been studied. It is shown that the effect is due to photoinduced electron transfer from Zn-porphyrins to halomethanes with the formation of highly reactive halomethyl radicals. Hydrophilic Zn-tetramethylpyridylporphyrin is more active in halomethane-mediated photosensitization of membrane protein damage, while hydrophobic Zn-tetraphenylporphin is more effective in photosensitizing lipid oxidation.

About the Authors

M. P. Tsvirko
University Jan Dlugosha in Czestochowa
Poland

Czestochowa



V. V. Gurinovich
Greyhills Academy
United States

Tuba City



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Review

For citations:


Tsvirko M.P., Gurinovich V.V. Photogeneration of Cytotoxic Radicals in Solutions and Cell Membranes Containing Halomethanes to Increase the Efficiency of Antitumor Therapy. Zhurnal Prikladnoii Spektroskopii. 2023;90(3):401-405. (In Russ.)

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ISSN 0514-7506 (Print)