Study of genoprotective features of preparation «Flaraksin» in conditions of tetrachloromethane damage action

Authors

  • Yu. I. Gubskiy Institute of Pharmacology and Toxicology of National Medical Academy of Science of Ukraine 14, Eugene Pottier Str., Kyiv, Ukraine, 03057 Author
  • E. L. Levitsky Institute of Pharmacology and Toxicology of National Medical Academy of Science of Ukraine 14, Eugene Pottier Str., Kyiv, Ukraine, 03057 Author
  • I. A. Kulick Institute of Pharmacology and Toxicology of National Medical Academy of Science of Ukraine 14, Eugene Pottier Str., Kyiv, Ukraine, 03057 Author
  • A. G. Goryushko Institute of Pharmacology and Toxicology of National Medical Academy of Science of Ukraine 14, Eugene Pottier Str., Kyiv, Ukraine, 03057 Author
  • R. G. Primak Institute of Pharmacology and Toxicology of National Medical Academy of Science of Ukraine 14, Eugene Pottier Str., Kyiv, Ukraine, 03057 Author
  • L. G. Sachenko Institute of Pharmacology and Toxicology of National Medical Academy of Science of Ukraine 14, Eugene Pottier Str., Kyiv, Ukraine, 03057 Author
  • I. E. Vistunova Institute of Pharmacology and Toxicology of National Medical Academy of Science of Ukraine 14, Eugene Pottier Str., Kyiv, Ukraine, 03057 Author

DOI:

https://doi.org/10.7124/bc.0003D6

Abstract

The presence of genoprotective features of antitumour preparation «Flaraksin» in conditions of the rat liver nuclear chromatin damage by tetrachloromethane was revealed. At least partially this effect may be conditioned by antioxidant action of the preparation. This action is expressed as a normalization of the lipoperoxidation reactions in the transcriptionally active and repressed chromatin fractions. Partial correction of chromatin structural and functional characteristics in condition of chromatin damage by tetrachloromethane is realized probably in result of flaraksin bounding to functionally different chromatin sites. The character of this bounding is various in these sites. If in active fraction interaction is caused mainly by chromatin proteins, then in repressed one – DNA. Such chromatin-flaraksin complexes do not prevent the genetic information realization, however they protect the nuclear chromatin from damage by oxigen and tetrachloromethane free radicals.

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Published

1995-01-20

Issue

Section

Biopolymers and Cell