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Cell type-specific differences in redox regulation and proliferation after low UVA doses

Ultraviolet A (UVA) radiation is harmful for living organisms but in low doses may stimulate cell proliferation. Our aim was to examine the relationships between exposure to different low UVA doses, cellular proliferation, and changes in cellular reactive oxygen species levels. In human colon cancer...

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Autores principales: Ciesielska, Sylwia, Bil, Patryk, Gajda, Karolina, Poterala-Hejmo, Aleksandra, Hudy, Dorota, Rzeszowska-Wolny, Joanna
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6347369/
https://www.ncbi.nlm.nih.gov/pubmed/30682016
http://dx.doi.org/10.1371/journal.pone.0205215
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author Ciesielska, Sylwia
Bil, Patryk
Gajda, Karolina
Poterala-Hejmo, Aleksandra
Hudy, Dorota
Rzeszowska-Wolny, Joanna
author_facet Ciesielska, Sylwia
Bil, Patryk
Gajda, Karolina
Poterala-Hejmo, Aleksandra
Hudy, Dorota
Rzeszowska-Wolny, Joanna
author_sort Ciesielska, Sylwia
collection PubMed
description Ultraviolet A (UVA) radiation is harmful for living organisms but in low doses may stimulate cell proliferation. Our aim was to examine the relationships between exposure to different low UVA doses, cellular proliferation, and changes in cellular reactive oxygen species levels. In human colon cancer (HCT116) and melanoma (Me45) cells exposed to UVA doses comparable to environmental, the highest doses (30–50 kJ/m(2)) reduced clonogenic potential but some lower doses (1 and 10 kJ/m(2)) induced proliferation. This effect was cell type and dose specific. In both cell lines the levels of reactive oxygen species and nitric oxide fluctuated with dynamics which were influenced differently by UVA; in Me45 cells decreased proliferation accompanied the changes in the dynamics of H(2)O(2) while in HCT116 cells those of superoxide. Genes coding for proteins engaged in redox systems were expressed differently in each cell line; transcripts for thioredoxin, peroxiredoxin and glutathione peroxidase showed higher expression in HCT116 cells whereas those for glutathione transferases and copper chaperone were more abundant in Me45 cells. We conclude that these two cell types utilize different pathways for regulating their redox status. Many mechanisms engaged in maintaining cellular redox balance have been described. Here we show that the different cellular responses to a stimulus such as a specific dose of UVA may be consequences of the use of different redox control pathways. Assays of superoxide and hydrogen peroxide level changes after exposure to UVA may clarify mechanisms of cellular redox regulation and help in understanding responses to stressing factors.
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spelling pubmed-63473692019-02-15 Cell type-specific differences in redox regulation and proliferation after low UVA doses Ciesielska, Sylwia Bil, Patryk Gajda, Karolina Poterala-Hejmo, Aleksandra Hudy, Dorota Rzeszowska-Wolny, Joanna PLoS One Research Article Ultraviolet A (UVA) radiation is harmful for living organisms but in low doses may stimulate cell proliferation. Our aim was to examine the relationships between exposure to different low UVA doses, cellular proliferation, and changes in cellular reactive oxygen species levels. In human colon cancer (HCT116) and melanoma (Me45) cells exposed to UVA doses comparable to environmental, the highest doses (30–50 kJ/m(2)) reduced clonogenic potential but some lower doses (1 and 10 kJ/m(2)) induced proliferation. This effect was cell type and dose specific. In both cell lines the levels of reactive oxygen species and nitric oxide fluctuated with dynamics which were influenced differently by UVA; in Me45 cells decreased proliferation accompanied the changes in the dynamics of H(2)O(2) while in HCT116 cells those of superoxide. Genes coding for proteins engaged in redox systems were expressed differently in each cell line; transcripts for thioredoxin, peroxiredoxin and glutathione peroxidase showed higher expression in HCT116 cells whereas those for glutathione transferases and copper chaperone were more abundant in Me45 cells. We conclude that these two cell types utilize different pathways for regulating their redox status. Many mechanisms engaged in maintaining cellular redox balance have been described. Here we show that the different cellular responses to a stimulus such as a specific dose of UVA may be consequences of the use of different redox control pathways. Assays of superoxide and hydrogen peroxide level changes after exposure to UVA may clarify mechanisms of cellular redox regulation and help in understanding responses to stressing factors. Public Library of Science 2019-01-25 /pmc/articles/PMC6347369/ /pubmed/30682016 http://dx.doi.org/10.1371/journal.pone.0205215 Text en © 2019 Ciesielska et al http://creativecommons.org/licenses/by/4.0/ This is an open access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/4.0/) , which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.
spellingShingle Research Article
Ciesielska, Sylwia
Bil, Patryk
Gajda, Karolina
Poterala-Hejmo, Aleksandra
Hudy, Dorota
Rzeszowska-Wolny, Joanna
Cell type-specific differences in redox regulation and proliferation after low UVA doses
title Cell type-specific differences in redox regulation and proliferation after low UVA doses
title_full Cell type-specific differences in redox regulation and proliferation after low UVA doses
title_fullStr Cell type-specific differences in redox regulation and proliferation after low UVA doses
title_full_unstemmed Cell type-specific differences in redox regulation and proliferation after low UVA doses
title_short Cell type-specific differences in redox regulation and proliferation after low UVA doses
title_sort cell type-specific differences in redox regulation and proliferation after low uva doses
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6347369/
https://www.ncbi.nlm.nih.gov/pubmed/30682016
http://dx.doi.org/10.1371/journal.pone.0205215
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