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Характеристика активной субстанции препарата дрожжей Saccharomyces сerevisiae, обладающей радиопротекторными свойствами

The paper describes some biological features of the radioprotective effect of double-stranded RNA preparation. It was found that yeast RNA preparation has a prolonged radioprotective effect after irradiation by a lethal dose of 9.4 Gy. 100 % of animals survive on the 70th day of observation when irr...

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Autores principales: Ritter, G.S., Nikolin, V.P., Popova, N.A., Proskurina, A.S., Kisaretova, P.E., Taranov, O.S., Dubatolova, T.D., E.V. Dolgova, E.V., Potter, E.A., Kirikovich, S.S., Efremov, Y.R., Bayborodin, S.I., Romanenko, M.V., Meschaninova, M.I., Venyaminova, A.G., Kolchanov, N.A., Bogachev, S.S.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: The Federal Research Center Institute of Cytology and Genetics of Siberian Branch of the Russian Academy of Sciences 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7716560/
https://www.ncbi.nlm.nih.gov/pubmed/33659850
http://dx.doi.org/10.18699/VJ20.658
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author Ritter, G.S.
Nikolin, V.P.
Popova, N.A.
Proskurina, A.S.
Kisaretova, P.E.
Taranov, O.S.
Dubatolova, T.D.
E.V. Dolgova, E.V.
Potter, E.A.
Kirikovich, S.S.
Efremov, Y.R.
Bayborodin, S.I.
Romanenko, M.V.
Meschaninova, M.I.
Venyaminova, A.G.
Kolchanov, N.A.
Bogachev, S.S.
author_facet Ritter, G.S.
Nikolin, V.P.
Popova, N.A.
Proskurina, A.S.
Kisaretova, P.E.
Taranov, O.S.
Dubatolova, T.D.
E.V. Dolgova, E.V.
Potter, E.A.
Kirikovich, S.S.
Efremov, Y.R.
Bayborodin, S.I.
Romanenko, M.V.
Meschaninova, M.I.
Venyaminova, A.G.
Kolchanov, N.A.
Bogachev, S.S.
author_sort Ritter, G.S.
collection PubMed
description The paper describes some biological features of the radioprotective effect of double-stranded RNA preparation. It was found that yeast RNA preparation has a prolonged radioprotective effect after irradiation by a lethal dose of 9.4 Gy. 100 % of animals survive on the 70th day of observation when irradiated 1 hour or 4 days after 7 mg RNA preparation injection, 60 % animals survive when irradiated on day 8 or 12. Time parameters of repair of double-stranded breaks induced by gamma rays were estimated. It was found that the injection of the RNA preparation at the time of maximum number of double-stranded breaks, 1 hour after irradiation, reduces the efficacy of radioprotective action compared with the injection 1 hour before irradiation and 4 hours after irradiation. A comparison of the radioprotective effect of the standard radioprotector B-190 and the RNA preparation was made in one experiment. It has been established that the total RNA preparation is more efficacious than B-190. Survival on the 40th day after irradiation was 78 % for the group of mice treated with the RNA preparation and 67 % for those treated with B-190. In the course of analytical studies of the total yeast RNA preparation, it was found that the preparation is a mixture of single-stranded and double-stranded RNA. It was shown that only double-stranded RNA has radioprotective properties. Injection of 160 μg double-stranded RNA protects 100 % of the experimental animals from an absolutely lethal dose of gamma radiation, 9.4 Gy. It was established that the radioprotective effect of double-stranded RNA does not depend on sequence, but depends on its double-stranded form and the presence of “open” ends of the molecule. It is supposed that the radioprotective effect of double-stranded RNA is associated with the participation of RNA molecules in the correct repair of radiation-damaged chromatin in blood stem cells. The hematopoietic pluripotent cells that have survived migrate to the periphery, reach the spleen and actively proliferate. The newly formed cell population restores the hematopoietic and immune systems, which determines the survival of lethally irradiated animals.
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spelling pubmed-77165602021-03-02 Характеристика активной субстанции препарата дрожжей Saccharomyces сerevisiae, обладающей радиопротекторными свойствами Ritter, G.S. Nikolin, V.P. Popova, N.A. Proskurina, A.S. Kisaretova, P.E. Taranov, O.S. Dubatolova, T.D. E.V. Dolgova, E.V. Potter, E.A. Kirikovich, S.S. Efremov, Y.R. Bayborodin, S.I. Romanenko, M.V. Meschaninova, M.I. Venyaminova, A.G. Kolchanov, N.A. Bogachev, S.S. Vavilovskii Zhurnal Genet Selektsii Original Article The paper describes some biological features of the radioprotective effect of double-stranded RNA preparation. It was found that yeast RNA preparation has a prolonged radioprotective effect after irradiation by a lethal dose of 9.4 Gy. 100 % of animals survive on the 70th day of observation when irradiated 1 hour or 4 days after 7 mg RNA preparation injection, 60 % animals survive when irradiated on day 8 or 12. Time parameters of repair of double-stranded breaks induced by gamma rays were estimated. It was found that the injection of the RNA preparation at the time of maximum number of double-stranded breaks, 1 hour after irradiation, reduces the efficacy of radioprotective action compared with the injection 1 hour before irradiation and 4 hours after irradiation. A comparison of the radioprotective effect of the standard radioprotector B-190 and the RNA preparation was made in one experiment. It has been established that the total RNA preparation is more efficacious than B-190. Survival on the 40th day after irradiation was 78 % for the group of mice treated with the RNA preparation and 67 % for those treated with B-190. In the course of analytical studies of the total yeast RNA preparation, it was found that the preparation is a mixture of single-stranded and double-stranded RNA. It was shown that only double-stranded RNA has radioprotective properties. Injection of 160 μg double-stranded RNA protects 100 % of the experimental animals from an absolutely lethal dose of gamma radiation, 9.4 Gy. It was established that the radioprotective effect of double-stranded RNA does not depend on sequence, but depends on its double-stranded form and the presence of “open” ends of the molecule. It is supposed that the radioprotective effect of double-stranded RNA is associated with the participation of RNA molecules in the correct repair of radiation-damaged chromatin in blood stem cells. The hematopoietic pluripotent cells that have survived migrate to the periphery, reach the spleen and actively proliferate. The newly formed cell population restores the hematopoietic and immune systems, which determines the survival of lethally irradiated animals. The Federal Research Center Institute of Cytology and Genetics of Siberian Branch of the Russian Academy of Sciences 2020-10 /pmc/articles/PMC7716560/ /pubmed/33659850 http://dx.doi.org/10.18699/VJ20.658 Text en Copyright © AUTHORS http://creativecommons.org/licenses/by/2.5/ This work is licensed under a Creative Commons Attribution 4.0 License
spellingShingle Original Article
Ritter, G.S.
Nikolin, V.P.
Popova, N.A.
Proskurina, A.S.
Kisaretova, P.E.
Taranov, O.S.
Dubatolova, T.D.
E.V. Dolgova, E.V.
Potter, E.A.
Kirikovich, S.S.
Efremov, Y.R.
Bayborodin, S.I.
Romanenko, M.V.
Meschaninova, M.I.
Venyaminova, A.G.
Kolchanov, N.A.
Bogachev, S.S.
Характеристика активной субстанции препарата дрожжей Saccharomyces сerevisiae, обладающей радиопротекторными свойствами
title Характеристика активной субстанции препарата дрожжей Saccharomyces сerevisiae, обладающей радиопротекторными свойствами
title_full Характеристика активной субстанции препарата дрожжей Saccharomyces сerevisiae, обладающей радиопротекторными свойствами
title_fullStr Характеристика активной субстанции препарата дрожжей Saccharomyces сerevisiae, обладающей радиопротекторными свойствами
title_full_unstemmed Характеристика активной субстанции препарата дрожжей Saccharomyces сerevisiae, обладающей радиопротекторными свойствами
title_short Характеристика активной субстанции препарата дрожжей Saccharomyces сerevisiae, обладающей радиопротекторными свойствами
title_sort характеристика активной субстанции препарата дрожжей saccharomyces сerevisiae, обладающей радиопротекторными свойствами
topic Original Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7716560/
https://www.ncbi.nlm.nih.gov/pubmed/33659850
http://dx.doi.org/10.18699/VJ20.658
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