Blood superoxiddismutase and catalase: enzymes activity under oxidative stress conditions
<p>The activity of catalase and superoxide dismutase depends not only on the used compounds of rhenium, and also on their dimensional structure and form of applying. It is established that the cis- and trans-isomers of complex compounds of rhenium did countervailing effect on superoxide dismut...
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doaj-067e044230a5410daeb92edfa3909f122020-11-24T21:12:38ZengPC Technology CenterScienceRise2313-62862313-84162015-05-0151(10)111510.15587/2313-8416.2015.4252640475Blood superoxiddismutase and catalase: enzymes activity under oxidative stress conditionsКаріна Леонідівна Шамелашвілі0Інга Володимирівна Леус1Тетяна Іванівна Сергієнко2Марина Вячеславівна Горіла3Наталія Іванівна Штеменко4Dnipropetrovsk National University Pr. Gagarin 72, Dnepropetrovsk, Ukraine, 49050Dnipropetrovsk National University Pr. Gagarin 72, Dnepropetrovsk, Ukraine, 49050KZ Magdalinіvska CRL DOR Str. Kolgospna 1, Magdalinіvka, Dnipropetrovsk region, Ukraine, 51100Dnipropetrovsk National University pr. Gagarin 72, Dnepropetrovsk, Ukraine, 49050Dnipropetrovsk National University Pr. Gagarin 72, Dnepropetrovsk, Ukraine, 49050<p>The activity of catalase and superoxide dismutase depends not only on the used compounds of rhenium, and also on their dimensional structure and form of applying. It is established that the cis- and trans-isomers of complex compounds of rhenium did countervailing effect on superoxide dismutase and catalase activities. Cis-isomers of Rhenium dycarboxylats agreed increased activity of superoxide dismutase and catalase. While under the action of trans-isomers, where increased activity of superoxide dismutase, catalase activity decreased</p>http://journals.uran.ua/sciencerise/article/view/42526CatalaseSuperoxidedismutaseoxidative stresscarcinogenesis Rhenium compoundsliposomesnanolіposomesnanoparticles |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Каріна Леонідівна Шамелашвілі Інга Володимирівна Леус Тетяна Іванівна Сергієнко Марина Вячеславівна Горіла Наталія Іванівна Штеменко |
spellingShingle |
Каріна Леонідівна Шамелашвілі Інга Володимирівна Леус Тетяна Іванівна Сергієнко Марина Вячеславівна Горіла Наталія Іванівна Штеменко Blood superoxiddismutase and catalase: enzymes activity under oxidative stress conditions ScienceRise Catalase Superoxidedismutase oxidative stress carcinogenesis Rhenium compounds liposomes nanolіposomes nanoparticles |
author_facet |
Каріна Леонідівна Шамелашвілі Інга Володимирівна Леус Тетяна Іванівна Сергієнко Марина Вячеславівна Горіла Наталія Іванівна Штеменко |
author_sort |
Каріна Леонідівна Шамелашвілі |
title |
Blood superoxiddismutase and catalase: enzymes activity under oxidative stress conditions |
title_short |
Blood superoxiddismutase and catalase: enzymes activity under oxidative stress conditions |
title_full |
Blood superoxiddismutase and catalase: enzymes activity under oxidative stress conditions |
title_fullStr |
Blood superoxiddismutase and catalase: enzymes activity under oxidative stress conditions |
title_full_unstemmed |
Blood superoxiddismutase and catalase: enzymes activity under oxidative stress conditions |
title_sort |
blood superoxiddismutase and catalase: enzymes activity under oxidative stress conditions |
publisher |
PC Technology Center |
series |
ScienceRise |
issn |
2313-6286 2313-8416 |
publishDate |
2015-05-01 |
description |
<p>The activity of catalase and superoxide dismutase depends not only on the used compounds of rhenium, and also on their dimensional structure and form of applying. It is established that the cis- and trans-isomers of complex compounds of rhenium did countervailing effect on superoxide dismutase and catalase activities. Cis-isomers of Rhenium dycarboxylats agreed increased activity of superoxide dismutase and catalase. While under the action of trans-isomers, where increased activity of superoxide dismutase, catalase activity decreased</p> |
topic |
Catalase Superoxidedismutase oxidative stress carcinogenesis Rhenium compounds liposomes nanolіposomes nanoparticles |
url |
http://journals.uran.ua/sciencerise/article/view/42526 |
work_keys_str_mv |
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