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On mechanism of antioxidant effect of fullerenols

Fullerenols are nanosized water-soluble polyhydroxylated derivatives of fullerenes, specific allotropic form of carbon, bioactive compounds and perspective pharmaceutical agents. Antioxidant activity of fullerenols was studied in model solutions of organic and inorganic toxicants of oxidative type –...

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Autores principales: Sachkova, A.S., Kovel, E.S., Churilov, G.N., Guseynov, O.A., Bondar, A.A., Dubinina, I.A., Kudryasheva, N.S.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Elsevier 2016
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5614482/
https://www.ncbi.nlm.nih.gov/pubmed/28955983
http://dx.doi.org/10.1016/j.bbrep.2016.10.011
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author Sachkova, A.S.
Kovel, E.S.
Churilov, G.N.
Guseynov, O.A.
Bondar, A.A.
Dubinina, I.A.
Kudryasheva, N.S.
author_facet Sachkova, A.S.
Kovel, E.S.
Churilov, G.N.
Guseynov, O.A.
Bondar, A.A.
Dubinina, I.A.
Kudryasheva, N.S.
author_sort Sachkova, A.S.
collection PubMed
description Fullerenols are nanosized water-soluble polyhydroxylated derivatives of fullerenes, specific allotropic form of carbon, bioactive compounds and perspective pharmaceutical agents. Antioxidant activity of fullerenols was studied in model solutions of organic and inorganic toxicants of oxidative type – 1,4-benzoquinone and potassium ferricyanide. Two fullerenol preparations were tested: С(60)О(2–4)(ОН)(20–24) and mixture of two types of fullerenols С(60)О(2–4)(ОН)(20–24)+С(70)О(2–4)(ОН)(20–24). Bacteria-based and enzyme-based bioluminescent assays were used to evaluate a decrease in cellular and biochemical toxicities, respectively. Additionally, the enzyme-based assay was used for the direct monitoring of efficiency of the oxidative enzymatic processes. The bacteria-based and enzyme-based assays showed similar peculiarities of the detoxification processes: (1) ultralow concentrations of fullerenols were active (ca 10(–17)–10(−4) and 10(–17)–10(−)(5) g/L, respectively), (2) no monotonic dependence of detoxification efficiency on fullerenol concentrations was observed, and (3) detoxification of organic oxidizer solutions was more effective than that of the inorganic oxidizer. The antioxidant effect of highly diluted fullerenol solutions on bacterial cells was attributed to hormesis phenomenon; the detoxification was concerned with stimulation of adaptive cellular response under low-dose exposures. Sequence analysis of 16S ribosomal RNA was carried out; it did not reveal mutations in bacterial DNA. The suggestion was made that hydrophobic membrane-dependent processes are involved to the detoxifying mechanism. Catalytic activity of fullerenol (10(−)(8) g/L) in NADH-dependent enzymatic reactions was demonstrated and supposed to contribute to adaptive bacterial response.
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spelling pubmed-56144822017-09-27 On mechanism of antioxidant effect of fullerenols Sachkova, A.S. Kovel, E.S. Churilov, G.N. Guseynov, O.A. Bondar, A.A. Dubinina, I.A. Kudryasheva, N.S. Biochem Biophys Rep Research Article Fullerenols are nanosized water-soluble polyhydroxylated derivatives of fullerenes, specific allotropic form of carbon, bioactive compounds and perspective pharmaceutical agents. Antioxidant activity of fullerenols was studied in model solutions of organic and inorganic toxicants of oxidative type – 1,4-benzoquinone and potassium ferricyanide. Two fullerenol preparations were tested: С(60)О(2–4)(ОН)(20–24) and mixture of two types of fullerenols С(60)О(2–4)(ОН)(20–24)+С(70)О(2–4)(ОН)(20–24). Bacteria-based and enzyme-based bioluminescent assays were used to evaluate a decrease in cellular and biochemical toxicities, respectively. Additionally, the enzyme-based assay was used for the direct monitoring of efficiency of the oxidative enzymatic processes. The bacteria-based and enzyme-based assays showed similar peculiarities of the detoxification processes: (1) ultralow concentrations of fullerenols were active (ca 10(–17)–10(−4) and 10(–17)–10(−)(5) g/L, respectively), (2) no monotonic dependence of detoxification efficiency on fullerenol concentrations was observed, and (3) detoxification of organic oxidizer solutions was more effective than that of the inorganic oxidizer. The antioxidant effect of highly diluted fullerenol solutions on bacterial cells was attributed to hormesis phenomenon; the detoxification was concerned with stimulation of adaptive cellular response under low-dose exposures. Sequence analysis of 16S ribosomal RNA was carried out; it did not reveal mutations in bacterial DNA. The suggestion was made that hydrophobic membrane-dependent processes are involved to the detoxifying mechanism. Catalytic activity of fullerenol (10(−)(8) g/L) in NADH-dependent enzymatic reactions was demonstrated and supposed to contribute to adaptive bacterial response. Elsevier 2016-11-09 /pmc/articles/PMC5614482/ /pubmed/28955983 http://dx.doi.org/10.1016/j.bbrep.2016.10.011 Text en © 2016 The Authors http://creativecommons.org/licenses/by-nc-nd/4.0/ This is an open access article under the CC BY-NC-ND license (http://creativecommons.org/licenses/by-nc-nd/4.0/).
spellingShingle Research Article
Sachkova, A.S.
Kovel, E.S.
Churilov, G.N.
Guseynov, O.A.
Bondar, A.A.
Dubinina, I.A.
Kudryasheva, N.S.
On mechanism of antioxidant effect of fullerenols
title On mechanism of antioxidant effect of fullerenols
title_full On mechanism of antioxidant effect of fullerenols
title_fullStr On mechanism of antioxidant effect of fullerenols
title_full_unstemmed On mechanism of antioxidant effect of fullerenols
title_short On mechanism of antioxidant effect of fullerenols
title_sort on mechanism of antioxidant effect of fullerenols
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5614482/
https://www.ncbi.nlm.nih.gov/pubmed/28955983
http://dx.doi.org/10.1016/j.bbrep.2016.10.011
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