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Sulfide (Na(2)S) and Polysulfide (Na(2)S(2)) Interacting with Doxycycline Produce/Scavenge Superoxide and Hydroxyl Radicals and Induce/Inhibit DNA Cleavage

Doxycycline (DOXY) is an antibiotic routinely prescribed in human and veterinary medicine for antibacterial treatment, but it has also numerous side effects that include oxidative stress, inflammation, cancer or hypoxia-induced injury. Endogenously produced hydrogen sulfide (H(2)S) and polysulfides...

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Autores principales: Misak, Anton, Kurakova, Lucia, Goffa, Eduard, Brezova, Vlasta, Grman, Marian, Ondriasova, Elena, Chovanec, Miroslav, Ondrias, Karol
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6470963/
https://www.ncbi.nlm.nih.gov/pubmed/30909480
http://dx.doi.org/10.3390/molecules24061148
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author Misak, Anton
Kurakova, Lucia
Goffa, Eduard
Brezova, Vlasta
Grman, Marian
Ondriasova, Elena
Chovanec, Miroslav
Ondrias, Karol
author_facet Misak, Anton
Kurakova, Lucia
Goffa, Eduard
Brezova, Vlasta
Grman, Marian
Ondriasova, Elena
Chovanec, Miroslav
Ondrias, Karol
author_sort Misak, Anton
collection PubMed
description Doxycycline (DOXY) is an antibiotic routinely prescribed in human and veterinary medicine for antibacterial treatment, but it has also numerous side effects that include oxidative stress, inflammation, cancer or hypoxia-induced injury. Endogenously produced hydrogen sulfide (H(2)S) and polysulfides affect similar biological processes, in which reactive oxygen species (ROS) play a role. Herein, we have studied the interaction of DOXY with H(2)S (Na(2)S) or polysulfides (Na(2)S(2), Na(2)S(3) and Na(2)S(4)) to gain insights into the biological effects of intermediates/products that they generate. To achieve this, UV-VIS, EPR spectroscopy and plasmid DNA (pDNA) cleavage assay were employed. Na(2)S or Na(2)S(2) in a mixture with DOXY, depending on ratio, concentration and time, displayed bell-shape kinetics in terms of producing/scavenging superoxide and hydroxyl radicals and decomposing hydrogen peroxide. In contrast, the effects of individual compounds (except for Na(2)S(2)) were hardly observable. In addition, DOXY, as well as oxytetracycline and tetracycline, interacting with Na(2)S or other studied polysulfides reduced the (•)cPTIO radical. Tetracyclines induced pDNA cleavage in the presence of Na(2)S. Interestingly, they inhibited pDNA cleavage induced by other polysulfides. In conclusion, sulfide and polysulfides interacting with tetracyclines produce/scavenge free radicals, indicating a consequence for free radical biology under conditions of ROS production and tetracyclines administration.
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spelling pubmed-64709632019-04-26 Sulfide (Na(2)S) and Polysulfide (Na(2)S(2)) Interacting with Doxycycline Produce/Scavenge Superoxide and Hydroxyl Radicals and Induce/Inhibit DNA Cleavage Misak, Anton Kurakova, Lucia Goffa, Eduard Brezova, Vlasta Grman, Marian Ondriasova, Elena Chovanec, Miroslav Ondrias, Karol Molecules Article Doxycycline (DOXY) is an antibiotic routinely prescribed in human and veterinary medicine for antibacterial treatment, but it has also numerous side effects that include oxidative stress, inflammation, cancer or hypoxia-induced injury. Endogenously produced hydrogen sulfide (H(2)S) and polysulfides affect similar biological processes, in which reactive oxygen species (ROS) play a role. Herein, we have studied the interaction of DOXY with H(2)S (Na(2)S) or polysulfides (Na(2)S(2), Na(2)S(3) and Na(2)S(4)) to gain insights into the biological effects of intermediates/products that they generate. To achieve this, UV-VIS, EPR spectroscopy and plasmid DNA (pDNA) cleavage assay were employed. Na(2)S or Na(2)S(2) in a mixture with DOXY, depending on ratio, concentration and time, displayed bell-shape kinetics in terms of producing/scavenging superoxide and hydroxyl radicals and decomposing hydrogen peroxide. In contrast, the effects of individual compounds (except for Na(2)S(2)) were hardly observable. In addition, DOXY, as well as oxytetracycline and tetracycline, interacting with Na(2)S or other studied polysulfides reduced the (•)cPTIO radical. Tetracyclines induced pDNA cleavage in the presence of Na(2)S. Interestingly, they inhibited pDNA cleavage induced by other polysulfides. In conclusion, sulfide and polysulfides interacting with tetracyclines produce/scavenge free radicals, indicating a consequence for free radical biology under conditions of ROS production and tetracyclines administration. MDPI 2019-03-22 /pmc/articles/PMC6470963/ /pubmed/30909480 http://dx.doi.org/10.3390/molecules24061148 Text en © 2019 by the authors. Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Misak, Anton
Kurakova, Lucia
Goffa, Eduard
Brezova, Vlasta
Grman, Marian
Ondriasova, Elena
Chovanec, Miroslav
Ondrias, Karol
Sulfide (Na(2)S) and Polysulfide (Na(2)S(2)) Interacting with Doxycycline Produce/Scavenge Superoxide and Hydroxyl Radicals and Induce/Inhibit DNA Cleavage
title Sulfide (Na(2)S) and Polysulfide (Na(2)S(2)) Interacting with Doxycycline Produce/Scavenge Superoxide and Hydroxyl Radicals and Induce/Inhibit DNA Cleavage
title_full Sulfide (Na(2)S) and Polysulfide (Na(2)S(2)) Interacting with Doxycycline Produce/Scavenge Superoxide and Hydroxyl Radicals and Induce/Inhibit DNA Cleavage
title_fullStr Sulfide (Na(2)S) and Polysulfide (Na(2)S(2)) Interacting with Doxycycline Produce/Scavenge Superoxide and Hydroxyl Radicals and Induce/Inhibit DNA Cleavage
title_full_unstemmed Sulfide (Na(2)S) and Polysulfide (Na(2)S(2)) Interacting with Doxycycline Produce/Scavenge Superoxide and Hydroxyl Radicals and Induce/Inhibit DNA Cleavage
title_short Sulfide (Na(2)S) and Polysulfide (Na(2)S(2)) Interacting with Doxycycline Produce/Scavenge Superoxide and Hydroxyl Radicals and Induce/Inhibit DNA Cleavage
title_sort sulfide (na(2)s) and polysulfide (na(2)s(2)) interacting with doxycycline produce/scavenge superoxide and hydroxyl radicals and induce/inhibit dna cleavage
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6470963/
https://www.ncbi.nlm.nih.gov/pubmed/30909480
http://dx.doi.org/10.3390/molecules24061148
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