CYTOTOXIC AND DNA-DAMAGE ACTIVITY OF THE PREBIOTIC SUBSTANCES

Due to the widespread of the ecological disorders and diseases of the gastrointestinal tract of humans and animals there is an increased interest in probiotic products (probiotics, prebiotics and synbiotic), which showed its efficacy and safety in their treatment and prevention. Yeast Saccharomyces...

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Main Authors: L. A. Safronova, S. I. Voychuk, B. G. Suhov, V. S. Pidgorskiy
Format: Article
Language:English
Published: National Academy of Sciences of Ukraine, Palladin Institute of Biochemistry 2013-12-01
Series:Biotechnologia Acta
Subjects:
Online Access:http://biotechnology.kiev.ua/images/storage/no6_2013/safronova_6_2013.pdf
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author L. A. Safronova
S. I. Voychuk
B. G. Suhov
V. S. Pidgorskiy
author_facet L. A. Safronova
S. I. Voychuk
B. G. Suhov
V. S. Pidgorskiy
author_sort L. A. Safronova
collection DOAJ
description Due to the widespread of the ecological disorders and diseases of the gastrointestinal tract of humans and animals there is an increased interest in probiotic products (probiotics, prebiotics and synbiotic), which showed its efficacy and safety in their treatment and prevention. Yeast Saccharomyces cerevisiae and cell culture of a human larynx cancer НЕр-2 were used to study cyto- and DNA-damage effects of several polysaccharides (arabinogalactan and nanobiocomposite of arabinogalactan with flavonoids, karraginan, galactomannan and their hydrolyzed derivatives), which are new perspective prebiotic substances. Cytotoxic potential of substances was determined from MTT-assay and DNA-damage effects were determined by morphological and structural features of cell nuclei. The synergic action of the polysaccharides with chemical triggers of cellular damages (hydrogen peroxide, acetic acid, nitrosomethylurea) was evaluated. The studied substances possessed no cyto- and DNA-damage action on the yeast and mammalian cells. It was shown that polysaccharides were able to enhance the effects of hydrogen peroxide, acetic acid and nitrosomethylurea. Nature of the marked effects remains unclear, but it may be assumed that the studied prebiotic substances can be used to enhance the effects of some chemical compounds and appear promising for use in integrated biomedical preparations of varied spectrum.
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spelling doaj.art-627b6175c1054695b1cadc3b08ad64872023-08-02T01:17:31ZengNational Academy of Sciences of Ukraine, Palladin Institute of BiochemistryBiotechnologia Acta2410-77512410-776X2013-12-0166860310.15407/biotech6.06.086CYTOTOXIC AND DNA-DAMAGE ACTIVITY OF THE PREBIOTIC SUBSTANCESL. A. Safronova0S. I. Voychuk1B. G. Suhov2V. S. Pidgorskiy3Zabolotny Institute of Microbiology and Virology of National Academy of Sciences of Ukraine, KyivZabolotny Institute of Microbiology and Virology of National Academy of Sciences of Ukraine, KyivFavorskiy Institute of Chemistry of Siberian Department of RussianZabolotny Institute of Microbiology and Virology of National Academy of Sciences of Ukraine, KyivDue to the widespread of the ecological disorders and diseases of the gastrointestinal tract of humans and animals there is an increased interest in probiotic products (probiotics, prebiotics and synbiotic), which showed its efficacy and safety in their treatment and prevention. Yeast Saccharomyces cerevisiae and cell culture of a human larynx cancer НЕр-2 were used to study cyto- and DNA-damage effects of several polysaccharides (arabinogalactan and nanobiocomposite of arabinogalactan with flavonoids, karraginan, galactomannan and their hydrolyzed derivatives), which are new perspective prebiotic substances. Cytotoxic potential of substances was determined from MTT-assay and DNA-damage effects were determined by morphological and structural features of cell nuclei. The synergic action of the polysaccharides with chemical triggers of cellular damages (hydrogen peroxide, acetic acid, nitrosomethylurea) was evaluated. The studied substances possessed no cyto- and DNA-damage action on the yeast and mammalian cells. It was shown that polysaccharides were able to enhance the effects of hydrogen peroxide, acetic acid and nitrosomethylurea. Nature of the marked effects remains unclear, but it may be assumed that the studied prebiotic substances can be used to enhance the effects of some chemical compounds and appear promising for use in integrated biomedical preparations of varied spectrum.http://biotechnology.kiev.ua/images/storage/no6_2013/safronova_6_2013.pdfarabinogalactankarraginangalactomannanSaccharomyces cerevisiahuman larynx cancer НЕр-2 cellscytotoxicityDNAdamage effects
spellingShingle L. A. Safronova
S. I. Voychuk
B. G. Suhov
V. S. Pidgorskiy
CYTOTOXIC AND DNA-DAMAGE ACTIVITY OF THE PREBIOTIC SUBSTANCES
Biotechnologia Acta
arabinogalactan
karraginan
galactomannan
Saccharomyces cerevisia
human larynx cancer НЕр-2 cells
cytotoxicity
DNAdamage effects
title CYTOTOXIC AND DNA-DAMAGE ACTIVITY OF THE PREBIOTIC SUBSTANCES
title_full CYTOTOXIC AND DNA-DAMAGE ACTIVITY OF THE PREBIOTIC SUBSTANCES
title_fullStr CYTOTOXIC AND DNA-DAMAGE ACTIVITY OF THE PREBIOTIC SUBSTANCES
title_full_unstemmed CYTOTOXIC AND DNA-DAMAGE ACTIVITY OF THE PREBIOTIC SUBSTANCES
title_short CYTOTOXIC AND DNA-DAMAGE ACTIVITY OF THE PREBIOTIC SUBSTANCES
title_sort cytotoxic and dna damage activity of the prebiotic substances
topic arabinogalactan
karraginan
galactomannan
Saccharomyces cerevisia
human larynx cancer НЕр-2 cells
cytotoxicity
DNAdamage effects
url http://biotechnology.kiev.ua/images/storage/no6_2013/safronova_6_2013.pdf
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AT sivoychuk cytotoxicanddnadamageactivityoftheprebioticsubstances
AT bgsuhov cytotoxicanddnadamageactivityoftheprebioticsubstances
AT vspidgorskiy cytotoxicanddnadamageactivityoftheprebioticsubstances