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Activation of p21 limits acute lung injury and induces early senescence after acid aspiration and mechanical ventilation

The p53/p21 pathway is activated in response to cell stress. However, its role in acute lung injury has not been elucidated. Acute lung injury is associated with disruption of the alveolo-capillary barrier leading to acute respiratory distress syndrome (ARDS). Mechanical ventilation may be necessary...

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Autores principales: Blázquez-Prieto, Jorge, Huidobro, Covadonga, López-Alonso, Inés, Amado-Rodriguez, Laura, Martín-Vicente, Paula, López-Martínez, Cecilia, Crespo, Irene, Pantoja, Cristina, Fernandez-Marcos, Pablo J, Serrano, Manuel, Sznajder, Jacob I, Albaiceta, Guillermo M
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Elsevier Inc. 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7838583/
https://www.ncbi.nlm.nih.gov/pubmed/33515780
http://dx.doi.org/10.1016/j.trsl.2021.01.008
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author Blázquez-Prieto, Jorge
Huidobro, Covadonga
López-Alonso, Inés
Amado-Rodriguez, Laura
Martín-Vicente, Paula
López-Martínez, Cecilia
Crespo, Irene
Pantoja, Cristina
Fernandez-Marcos, Pablo J
Serrano, Manuel
Sznajder, Jacob I
Albaiceta, Guillermo M
author_facet Blázquez-Prieto, Jorge
Huidobro, Covadonga
López-Alonso, Inés
Amado-Rodriguez, Laura
Martín-Vicente, Paula
López-Martínez, Cecilia
Crespo, Irene
Pantoja, Cristina
Fernandez-Marcos, Pablo J
Serrano, Manuel
Sznajder, Jacob I
Albaiceta, Guillermo M
author_sort Blázquez-Prieto, Jorge
collection PubMed
description The p53/p21 pathway is activated in response to cell stress. However, its role in acute lung injury has not been elucidated. Acute lung injury is associated with disruption of the alveolo-capillary barrier leading to acute respiratory distress syndrome (ARDS). Mechanical ventilation may be necessary to support gas exchange in patients with ARDS, however, high positive airway pressures can cause regional overdistension of alveolar units and aggravate lung injury. Here, we report that acute lung injury and alveolar overstretching activate the p53/p21 pathway to maintain homeostasis and avoid massive cell apoptosis. A systematic pooling of transcriptomic data from animal models of lung injury demonstrates the enrichment of specific p53- and p21-dependent gene signatures and a validated senescence profile. In a clinically relevant, murine model of acid aspiration and mechanical ventilation, we observed changes in the nuclear envelope and the underlying chromatin, DNA damage and activation of the Tp53/p21 pathway. Absence of Cdkn1a decreased the senescent response, but worsened lung injury due to increased cell apoptosis. Conversely, treatment with lopinavir and/or ritonavir led to Cdkn1a overexpression and ameliorated cell apoptosis and lung injury. The activation of these mechanisms was associated with early markers of senescence, including expression of senescence-related genes and increases in senescence-associated heterochromatin foci in alveolar cells. Autopsy samples from lungs of patients with ARDS revealed increased senescence-associated heterochromatin foci. Collectively, these results suggest that acute lung injury activates p53/p21 as an antiapoptotic mechanism to ameliorate damage, but with the side effect of induction of senescence.
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spelling pubmed-78385832021-01-27 Activation of p21 limits acute lung injury and induces early senescence after acid aspiration and mechanical ventilation Blázquez-Prieto, Jorge Huidobro, Covadonga López-Alonso, Inés Amado-Rodriguez, Laura Martín-Vicente, Paula López-Martínez, Cecilia Crespo, Irene Pantoja, Cristina Fernandez-Marcos, Pablo J Serrano, Manuel Sznajder, Jacob I Albaiceta, Guillermo M Transl Res Article The p53/p21 pathway is activated in response to cell stress. However, its role in acute lung injury has not been elucidated. Acute lung injury is associated with disruption of the alveolo-capillary barrier leading to acute respiratory distress syndrome (ARDS). Mechanical ventilation may be necessary to support gas exchange in patients with ARDS, however, high positive airway pressures can cause regional overdistension of alveolar units and aggravate lung injury. Here, we report that acute lung injury and alveolar overstretching activate the p53/p21 pathway to maintain homeostasis and avoid massive cell apoptosis. A systematic pooling of transcriptomic data from animal models of lung injury demonstrates the enrichment of specific p53- and p21-dependent gene signatures and a validated senescence profile. In a clinically relevant, murine model of acid aspiration and mechanical ventilation, we observed changes in the nuclear envelope and the underlying chromatin, DNA damage and activation of the Tp53/p21 pathway. Absence of Cdkn1a decreased the senescent response, but worsened lung injury due to increased cell apoptosis. Conversely, treatment with lopinavir and/or ritonavir led to Cdkn1a overexpression and ameliorated cell apoptosis and lung injury. The activation of these mechanisms was associated with early markers of senescence, including expression of senescence-related genes and increases in senescence-associated heterochromatin foci in alveolar cells. Autopsy samples from lungs of patients with ARDS revealed increased senescence-associated heterochromatin foci. Collectively, these results suggest that acute lung injury activates p53/p21 as an antiapoptotic mechanism to ameliorate damage, but with the side effect of induction of senescence. Elsevier Inc. 2021-07 2021-01-27 /pmc/articles/PMC7838583/ /pubmed/33515780 http://dx.doi.org/10.1016/j.trsl.2021.01.008 Text en © 2021 Elsevier Inc. All rights reserved. Since January 2020 Elsevier has created a COVID-19 resource centre with free information in English and Mandarin on the novel coronavirus COVID-19. The COVID-19 resource centre is hosted on Elsevier Connect, the company's public news and information website. Elsevier hereby grants permission to make all its COVID-19-related research that is available on the COVID-19 resource centre - including this research content - immediately available in PubMed Central and other publicly funded repositories, such as the WHO COVID database with rights for unrestricted research re-use and analyses in any form or by any means with acknowledgement of the original source. These permissions are granted for free by Elsevier for as long as the COVID-19 resource centre remains active.
spellingShingle Article
Blázquez-Prieto, Jorge
Huidobro, Covadonga
López-Alonso, Inés
Amado-Rodriguez, Laura
Martín-Vicente, Paula
López-Martínez, Cecilia
Crespo, Irene
Pantoja, Cristina
Fernandez-Marcos, Pablo J
Serrano, Manuel
Sznajder, Jacob I
Albaiceta, Guillermo M
Activation of p21 limits acute lung injury and induces early senescence after acid aspiration and mechanical ventilation
title Activation of p21 limits acute lung injury and induces early senescence after acid aspiration and mechanical ventilation
title_full Activation of p21 limits acute lung injury and induces early senescence after acid aspiration and mechanical ventilation
title_fullStr Activation of p21 limits acute lung injury and induces early senescence after acid aspiration and mechanical ventilation
title_full_unstemmed Activation of p21 limits acute lung injury and induces early senescence after acid aspiration and mechanical ventilation
title_short Activation of p21 limits acute lung injury and induces early senescence after acid aspiration and mechanical ventilation
title_sort activation of p21 limits acute lung injury and induces early senescence after acid aspiration and mechanical ventilation
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7838583/
https://www.ncbi.nlm.nih.gov/pubmed/33515780
http://dx.doi.org/10.1016/j.trsl.2021.01.008
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