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Inhibition of Nuclear Nox4 Activity by Plumbagin: Effect on Proliferative Capacity in Human Amniotic Stem Cells

Human amniotic fluid stem cells (AFSC) with multilineage differentiation potential are novel source for cell therapy. However, in vitro expansion leads to senescence affecting differentiation and proliferative capacities. Reactive oxygen species (ROS) have been involved in the regulation of stem cel...

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Autores principales: Guida, Marianna, Maraldi, Tullia, Resca, Elisa, Beretti, Francesca, Zavatti, Manuela, Bertoni, Laura, La Sala, Giovanni B., De Pol, Anto
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Hindawi Publishing Corporation 2013
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3893878/
https://www.ncbi.nlm.nih.gov/pubmed/24489986
http://dx.doi.org/10.1155/2013/680816
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author Guida, Marianna
Maraldi, Tullia
Resca, Elisa
Beretti, Francesca
Zavatti, Manuela
Bertoni, Laura
La Sala, Giovanni B.
De Pol, Anto
author_facet Guida, Marianna
Maraldi, Tullia
Resca, Elisa
Beretti, Francesca
Zavatti, Manuela
Bertoni, Laura
La Sala, Giovanni B.
De Pol, Anto
author_sort Guida, Marianna
collection PubMed
description Human amniotic fluid stem cells (AFSC) with multilineage differentiation potential are novel source for cell therapy. However, in vitro expansion leads to senescence affecting differentiation and proliferative capacities. Reactive oxygen species (ROS) have been involved in the regulation of stem cell pluripotency, proliferation, and differentiation. Redox-regulated signal transduction is coordinated by spatially controlled production of ROS within subcellular compartments. NAD(P)H oxidase family, in particular Nox4, has been known to produce ROS in the nucleus; however, the mechanisms and the meaning of this function remain largely unknown. In the present study, we show that Nox4 nuclear expression (nNox4) increases during culture passages up to cell cycle arrest and the serum starvation causes the same effect. With the decrease of Nox4 activity, obtained with plumbagin, a decline of nuclear ROS production and of DNA damage occurs. Moreover, plumbagin exposure reduces the binding between nNox4 and nucleoskeleton components, as Matrin 3. The same effect was observed also for the binding with phospho-ERK, although nuclear ERK and P-ERK are unchanged. Taken together, we suggest that nNox4 regulation may have important pathophysiologic effects in stem cell proliferation through modulation of nuclear signaling and DNA damage.
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spelling pubmed-38938782014-02-02 Inhibition of Nuclear Nox4 Activity by Plumbagin: Effect on Proliferative Capacity in Human Amniotic Stem Cells Guida, Marianna Maraldi, Tullia Resca, Elisa Beretti, Francesca Zavatti, Manuela Bertoni, Laura La Sala, Giovanni B. De Pol, Anto Oxid Med Cell Longev Research Article Human amniotic fluid stem cells (AFSC) with multilineage differentiation potential are novel source for cell therapy. However, in vitro expansion leads to senescence affecting differentiation and proliferative capacities. Reactive oxygen species (ROS) have been involved in the regulation of stem cell pluripotency, proliferation, and differentiation. Redox-regulated signal transduction is coordinated by spatially controlled production of ROS within subcellular compartments. NAD(P)H oxidase family, in particular Nox4, has been known to produce ROS in the nucleus; however, the mechanisms and the meaning of this function remain largely unknown. In the present study, we show that Nox4 nuclear expression (nNox4) increases during culture passages up to cell cycle arrest and the serum starvation causes the same effect. With the decrease of Nox4 activity, obtained with plumbagin, a decline of nuclear ROS production and of DNA damage occurs. Moreover, plumbagin exposure reduces the binding between nNox4 and nucleoskeleton components, as Matrin 3. The same effect was observed also for the binding with phospho-ERK, although nuclear ERK and P-ERK are unchanged. Taken together, we suggest that nNox4 regulation may have important pathophysiologic effects in stem cell proliferation through modulation of nuclear signaling and DNA damage. Hindawi Publishing Corporation 2013 2013-12-29 /pmc/articles/PMC3893878/ /pubmed/24489986 http://dx.doi.org/10.1155/2013/680816 Text en Copyright © 2013 Marianna Guida et al. https://creativecommons.org/licenses/by/3.0/ This is an open access article distributed under the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research Article
Guida, Marianna
Maraldi, Tullia
Resca, Elisa
Beretti, Francesca
Zavatti, Manuela
Bertoni, Laura
La Sala, Giovanni B.
De Pol, Anto
Inhibition of Nuclear Nox4 Activity by Plumbagin: Effect on Proliferative Capacity in Human Amniotic Stem Cells
title Inhibition of Nuclear Nox4 Activity by Plumbagin: Effect on Proliferative Capacity in Human Amniotic Stem Cells
title_full Inhibition of Nuclear Nox4 Activity by Plumbagin: Effect on Proliferative Capacity in Human Amniotic Stem Cells
title_fullStr Inhibition of Nuclear Nox4 Activity by Plumbagin: Effect on Proliferative Capacity in Human Amniotic Stem Cells
title_full_unstemmed Inhibition of Nuclear Nox4 Activity by Plumbagin: Effect on Proliferative Capacity in Human Amniotic Stem Cells
title_short Inhibition of Nuclear Nox4 Activity by Plumbagin: Effect on Proliferative Capacity in Human Amniotic Stem Cells
title_sort inhibition of nuclear nox4 activity by plumbagin: effect on proliferative capacity in human amniotic stem cells
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3893878/
https://www.ncbi.nlm.nih.gov/pubmed/24489986
http://dx.doi.org/10.1155/2013/680816
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