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A systems radiation biology approach to unravel the role of chronic low-dose-rate gamma-irradiation in inducing premature senescence in endothelial cells

PURPOSE: The aim of this study was to explore the effects of chronic low-dose-rate gamma-radiation at a multi-scale level. The specific objective was to obtain an overall view of the endothelial cell response, by integrating previously published data on different cellular endpoints and highlighting...

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Autores principales: Babini, Gabriele, Baiocco, Giorgio, Barbieri, Sofia, Morini, Jacopo, Sangsuwan, Traimate, Haghdoost, Siamak, Yentrapalli, Ramesh, Azimzadeh, Omid, Rombouts, Charlotte, Aerts, An, Quintens, Roel, Ebrahimian, Teni, Benotmane, Mohammed Abderrafi, Ramadan, Raghda, Baatout, Sarah, Tapio, Soile, Harms-Ringdahl, Mats, Ottolenghi, Andrea
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8920222/
https://www.ncbi.nlm.nih.gov/pubmed/35286349
http://dx.doi.org/10.1371/journal.pone.0265281
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author Babini, Gabriele
Baiocco, Giorgio
Barbieri, Sofia
Morini, Jacopo
Sangsuwan, Traimate
Haghdoost, Siamak
Yentrapalli, Ramesh
Azimzadeh, Omid
Rombouts, Charlotte
Aerts, An
Quintens, Roel
Ebrahimian, Teni
Benotmane, Mohammed Abderrafi
Ramadan, Raghda
Baatout, Sarah
Tapio, Soile
Harms-Ringdahl, Mats
Ottolenghi, Andrea
author_facet Babini, Gabriele
Baiocco, Giorgio
Barbieri, Sofia
Morini, Jacopo
Sangsuwan, Traimate
Haghdoost, Siamak
Yentrapalli, Ramesh
Azimzadeh, Omid
Rombouts, Charlotte
Aerts, An
Quintens, Roel
Ebrahimian, Teni
Benotmane, Mohammed Abderrafi
Ramadan, Raghda
Baatout, Sarah
Tapio, Soile
Harms-Ringdahl, Mats
Ottolenghi, Andrea
author_sort Babini, Gabriele
collection PubMed
description PURPOSE: The aim of this study was to explore the effects of chronic low-dose-rate gamma-radiation at a multi-scale level. The specific objective was to obtain an overall view of the endothelial cell response, by integrating previously published data on different cellular endpoints and highlighting possible different mechanisms underpinning radiation-induced senescence. MATERIALS AND METHODS: Different datasets were collected regarding experiments on human umbilical vein endothelial cells (HUVECs) which were chronically exposed to low dose rates (0, 1.4, 2.1 and 4.1 mGy/h) of gamma-rays until cell replication was arrested. Such exposed cells were analyzed for different complementary endpoints at distinct time points (up to several weeks), investigating cellular functions such as proliferation, senescence and angiogenic properties, as well as using transcriptomics and proteomics profiling. A mathematical model was proposed to describe proliferation and senescence. RESULTS: Simultaneous ceasing of cell proliferation and senescence onset as a function of time were well reproduced by the logistic growth curve, conveying shared equilibria between the two endpoints. The combination of all the different endpoints investigated highlighted a dose-dependence for prematurely induced senescence. However, the underpinning molecular mechanisms appeared to be dissimilar for the different dose rates, thus suggesting a more complex scenario. CONCLUSIONS: This study was conducted integrating different datasets, focusing on their temporal dynamics, and using a systems biology approach. Results of our analysis highlight that different dose rates have different effects in inducing premature senescence, and that the total cumulative absorbed dose also plays an important role in accelerating endothelial cell senescence.
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spelling pubmed-89202222022-03-15 A systems radiation biology approach to unravel the role of chronic low-dose-rate gamma-irradiation in inducing premature senescence in endothelial cells Babini, Gabriele Baiocco, Giorgio Barbieri, Sofia Morini, Jacopo Sangsuwan, Traimate Haghdoost, Siamak Yentrapalli, Ramesh Azimzadeh, Omid Rombouts, Charlotte Aerts, An Quintens, Roel Ebrahimian, Teni Benotmane, Mohammed Abderrafi Ramadan, Raghda Baatout, Sarah Tapio, Soile Harms-Ringdahl, Mats Ottolenghi, Andrea PLoS One Research Article PURPOSE: The aim of this study was to explore the effects of chronic low-dose-rate gamma-radiation at a multi-scale level. The specific objective was to obtain an overall view of the endothelial cell response, by integrating previously published data on different cellular endpoints and highlighting possible different mechanisms underpinning radiation-induced senescence. MATERIALS AND METHODS: Different datasets were collected regarding experiments on human umbilical vein endothelial cells (HUVECs) which were chronically exposed to low dose rates (0, 1.4, 2.1 and 4.1 mGy/h) of gamma-rays until cell replication was arrested. Such exposed cells were analyzed for different complementary endpoints at distinct time points (up to several weeks), investigating cellular functions such as proliferation, senescence and angiogenic properties, as well as using transcriptomics and proteomics profiling. A mathematical model was proposed to describe proliferation and senescence. RESULTS: Simultaneous ceasing of cell proliferation and senescence onset as a function of time were well reproduced by the logistic growth curve, conveying shared equilibria between the two endpoints. The combination of all the different endpoints investigated highlighted a dose-dependence for prematurely induced senescence. However, the underpinning molecular mechanisms appeared to be dissimilar for the different dose rates, thus suggesting a more complex scenario. CONCLUSIONS: This study was conducted integrating different datasets, focusing on their temporal dynamics, and using a systems biology approach. Results of our analysis highlight that different dose rates have different effects in inducing premature senescence, and that the total cumulative absorbed dose also plays an important role in accelerating endothelial cell senescence. Public Library of Science 2022-03-14 /pmc/articles/PMC8920222/ /pubmed/35286349 http://dx.doi.org/10.1371/journal.pone.0265281 Text en © 2022 Babini et al https://creativecommons.org/licenses/by/4.0/This is an open access article distributed under the terms of the Creative Commons Attribution License (https://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
Babini, Gabriele
Baiocco, Giorgio
Barbieri, Sofia
Morini, Jacopo
Sangsuwan, Traimate
Haghdoost, Siamak
Yentrapalli, Ramesh
Azimzadeh, Omid
Rombouts, Charlotte
Aerts, An
Quintens, Roel
Ebrahimian, Teni
Benotmane, Mohammed Abderrafi
Ramadan, Raghda
Baatout, Sarah
Tapio, Soile
Harms-Ringdahl, Mats
Ottolenghi, Andrea
A systems radiation biology approach to unravel the role of chronic low-dose-rate gamma-irradiation in inducing premature senescence in endothelial cells
title A systems radiation biology approach to unravel the role of chronic low-dose-rate gamma-irradiation in inducing premature senescence in endothelial cells
title_full A systems radiation biology approach to unravel the role of chronic low-dose-rate gamma-irradiation in inducing premature senescence in endothelial cells
title_fullStr A systems radiation biology approach to unravel the role of chronic low-dose-rate gamma-irradiation in inducing premature senescence in endothelial cells
title_full_unstemmed A systems radiation biology approach to unravel the role of chronic low-dose-rate gamma-irradiation in inducing premature senescence in endothelial cells
title_short A systems radiation biology approach to unravel the role of chronic low-dose-rate gamma-irradiation in inducing premature senescence in endothelial cells
title_sort systems radiation biology approach to unravel the role of chronic low-dose-rate gamma-irradiation in inducing premature senescence in endothelial cells
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8920222/
https://www.ncbi.nlm.nih.gov/pubmed/35286349
http://dx.doi.org/10.1371/journal.pone.0265281
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