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Senescence of Primary Amniotic Cells via Oxidative DNA Damage

OBJECTIVE: Oxidative stress is a postulated etiology of spontaneous preterm birth (PTB) and preterm prelabor rupture of the membranes (pPROM); however, the precise mechanistic role of reactive oxygen species (ROS) in these complications is unclear. The objective of this study is to examine impact of...

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Autores principales: Menon, Ramkumar, Boldogh, Istvan, Urrabaz-Garza, Rheanna, Polettini, Jossimara, Syed, Tariq Ali, Saade, George R., Papaconstantinou, John, Taylor, Robert N.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2013
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3873937/
https://www.ncbi.nlm.nih.gov/pubmed/24386195
http://dx.doi.org/10.1371/journal.pone.0083416
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author Menon, Ramkumar
Boldogh, Istvan
Urrabaz-Garza, Rheanna
Polettini, Jossimara
Syed, Tariq Ali
Saade, George R.
Papaconstantinou, John
Taylor, Robert N.
author_facet Menon, Ramkumar
Boldogh, Istvan
Urrabaz-Garza, Rheanna
Polettini, Jossimara
Syed, Tariq Ali
Saade, George R.
Papaconstantinou, John
Taylor, Robert N.
author_sort Menon, Ramkumar
collection PubMed
description OBJECTIVE: Oxidative stress is a postulated etiology of spontaneous preterm birth (PTB) and preterm prelabor rupture of the membranes (pPROM); however, the precise mechanistic role of reactive oxygen species (ROS) in these complications is unclear. The objective of this study is to examine impact of a water soluble cigarette smoke extract (wsCSE), a predicted cause of pregnancy complications, on human amnion epithelial cells. METHODS: Amnion cells isolated from fetal membranes were exposed to wsCSE prepared in cell culture medium and changes in ROS levels, DNA base and strand damage was determined by using 2′7′-dichlorodihydro-fluorescein and comet assays as well as Fragment Length Analysis using Repair Enzymes (FLARE) assays, respectively. Western blot analyses were used to determine the changes in mass and post-translational modification of apoptosis signal-regulating kinase (ASK1), phospho-p38 (P-p38 MAPK), and p19(arf). Expression of senescence-associated β-galectosidase (SAβ-gal) was used to confirm cell ageing in situ. RESULTS: ROS levels in wsCSE-exposed amnion cells increased rapidly (within 2 min) and significantly (p<0.01) at all-time points, and DNA strand and base damage was evidenced by comet and FLARE assays. Activation of ASK1, P-p38 MAPK and p19(Arf) correlated with percentage of SAβ-gal expressing cells after wsCSE treatment. The antioxidant N-acetyl-L-cysteine (NAC) prevented ROS-induced DNA damage and phosphorylation of p38 MAPK, whereas activation of ASK1 and increased expression of p19(Arf) were not significantly affected by NAC. CONCLUSIONS: The findings support the hypothesis that compounds in wsCSE induces amnion cell senescence via a mechanism involving ROS and DNA damage. Both pathways may contribute to PTB and pPROM. Our results imply that antioxidant interventions that control ROS may interrupt pathways leading to pPROM and other causes of PTB.
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spelling pubmed-38739372014-01-02 Senescence of Primary Amniotic Cells via Oxidative DNA Damage Menon, Ramkumar Boldogh, Istvan Urrabaz-Garza, Rheanna Polettini, Jossimara Syed, Tariq Ali Saade, George R. Papaconstantinou, John Taylor, Robert N. PLoS One Research Article OBJECTIVE: Oxidative stress is a postulated etiology of spontaneous preterm birth (PTB) and preterm prelabor rupture of the membranes (pPROM); however, the precise mechanistic role of reactive oxygen species (ROS) in these complications is unclear. The objective of this study is to examine impact of a water soluble cigarette smoke extract (wsCSE), a predicted cause of pregnancy complications, on human amnion epithelial cells. METHODS: Amnion cells isolated from fetal membranes were exposed to wsCSE prepared in cell culture medium and changes in ROS levels, DNA base and strand damage was determined by using 2′7′-dichlorodihydro-fluorescein and comet assays as well as Fragment Length Analysis using Repair Enzymes (FLARE) assays, respectively. Western blot analyses were used to determine the changes in mass and post-translational modification of apoptosis signal-regulating kinase (ASK1), phospho-p38 (P-p38 MAPK), and p19(arf). Expression of senescence-associated β-galectosidase (SAβ-gal) was used to confirm cell ageing in situ. RESULTS: ROS levels in wsCSE-exposed amnion cells increased rapidly (within 2 min) and significantly (p<0.01) at all-time points, and DNA strand and base damage was evidenced by comet and FLARE assays. Activation of ASK1, P-p38 MAPK and p19(Arf) correlated with percentage of SAβ-gal expressing cells after wsCSE treatment. The antioxidant N-acetyl-L-cysteine (NAC) prevented ROS-induced DNA damage and phosphorylation of p38 MAPK, whereas activation of ASK1 and increased expression of p19(Arf) were not significantly affected by NAC. CONCLUSIONS: The findings support the hypothesis that compounds in wsCSE induces amnion cell senescence via a mechanism involving ROS and DNA damage. Both pathways may contribute to PTB and pPROM. Our results imply that antioxidant interventions that control ROS may interrupt pathways leading to pPROM and other causes of PTB. Public Library of Science 2013-12-27 /pmc/articles/PMC3873937/ /pubmed/24386195 http://dx.doi.org/10.1371/journal.pone.0083416 Text en © 2013 Menon 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, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited.
spellingShingle Research Article
Menon, Ramkumar
Boldogh, Istvan
Urrabaz-Garza, Rheanna
Polettini, Jossimara
Syed, Tariq Ali
Saade, George R.
Papaconstantinou, John
Taylor, Robert N.
Senescence of Primary Amniotic Cells via Oxidative DNA Damage
title Senescence of Primary Amniotic Cells via Oxidative DNA Damage
title_full Senescence of Primary Amniotic Cells via Oxidative DNA Damage
title_fullStr Senescence of Primary Amniotic Cells via Oxidative DNA Damage
title_full_unstemmed Senescence of Primary Amniotic Cells via Oxidative DNA Damage
title_short Senescence of Primary Amniotic Cells via Oxidative DNA Damage
title_sort senescence of primary amniotic cells via oxidative dna damage
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3873937/
https://www.ncbi.nlm.nih.gov/pubmed/24386195
http://dx.doi.org/10.1371/journal.pone.0083416
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