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Impaired Glucocorticoid Receptor Signaling Aggravates Lung Injury after Hemorrhagic Shock

We previously showed that attenuated lung injury after hemorrhagic shock (HS) coincided with enhanced levels of the glucocorticoid (GC) receptor (GR) in lung tissue of swine. Here, we investigated the effects of impaired GR signaling on the lung during resuscitated HS using a dysfunctional GR mouse...

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Autores principales: Preuss, Jonathan M., Burret, Ute, Gröger, Michael, Kress, Sandra, Scheuerle, Angelika, Möller, Peter, Tuckermann, Jan P., Wepler, Martin, Vettorazzi, Sabine
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8750862/
https://www.ncbi.nlm.nih.gov/pubmed/35011674
http://dx.doi.org/10.3390/cells11010112
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author Preuss, Jonathan M.
Burret, Ute
Gröger, Michael
Kress, Sandra
Scheuerle, Angelika
Möller, Peter
Tuckermann, Jan P.
Wepler, Martin
Vettorazzi, Sabine
author_facet Preuss, Jonathan M.
Burret, Ute
Gröger, Michael
Kress, Sandra
Scheuerle, Angelika
Möller, Peter
Tuckermann, Jan P.
Wepler, Martin
Vettorazzi, Sabine
author_sort Preuss, Jonathan M.
collection PubMed
description We previously showed that attenuated lung injury after hemorrhagic shock (HS) coincided with enhanced levels of the glucocorticoid (GC) receptor (GR) in lung tissue of swine. Here, we investigated the effects of impaired GR signaling on the lung during resuscitated HS using a dysfunctional GR mouse model (GR(dim/dim)). In a mouse intensive care unit, HS led to impaired lung mechanics and aggravated lung inflammation in GR(dim/dim) mice compared to wildtype mice (GR(+/+)). After HS, high levels of the pro-inflammatory and pro-apoptotic transcription factor STAT1/pSTAT1 were found in lung samples from GR(dim/dim) mice. Lungs of GR(dim/dim) mice revealed apoptosis, most likely as consequence of reduced expression of the lung-protective Angpt1 compared to GR(+/+) after HS. RNA-sequencing revealed increased expression of pro-apoptotic and cytokine-signaling associated genes in lung tissue of GR(dim/dim) mice. Furthermore, high levels of pro-inflammatory cytokines and iNOS were found in lungs of GR(dim/dim) mice. Our results indicate impaired repression of STAT1/pSTAT1 due to dysfunctional GR signaling in GR(dim/dim) mice, which leads to increased inflammation and apoptosis in the lungs. These data highlight the crucial role of functional GR signaling to attenuate HS-induced lung damage.
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spelling pubmed-87508622022-01-12 Impaired Glucocorticoid Receptor Signaling Aggravates Lung Injury after Hemorrhagic Shock Preuss, Jonathan M. Burret, Ute Gröger, Michael Kress, Sandra Scheuerle, Angelika Möller, Peter Tuckermann, Jan P. Wepler, Martin Vettorazzi, Sabine Cells Article We previously showed that attenuated lung injury after hemorrhagic shock (HS) coincided with enhanced levels of the glucocorticoid (GC) receptor (GR) in lung tissue of swine. Here, we investigated the effects of impaired GR signaling on the lung during resuscitated HS using a dysfunctional GR mouse model (GR(dim/dim)). In a mouse intensive care unit, HS led to impaired lung mechanics and aggravated lung inflammation in GR(dim/dim) mice compared to wildtype mice (GR(+/+)). After HS, high levels of the pro-inflammatory and pro-apoptotic transcription factor STAT1/pSTAT1 were found in lung samples from GR(dim/dim) mice. Lungs of GR(dim/dim) mice revealed apoptosis, most likely as consequence of reduced expression of the lung-protective Angpt1 compared to GR(+/+) after HS. RNA-sequencing revealed increased expression of pro-apoptotic and cytokine-signaling associated genes in lung tissue of GR(dim/dim) mice. Furthermore, high levels of pro-inflammatory cytokines and iNOS were found in lungs of GR(dim/dim) mice. Our results indicate impaired repression of STAT1/pSTAT1 due to dysfunctional GR signaling in GR(dim/dim) mice, which leads to increased inflammation and apoptosis in the lungs. These data highlight the crucial role of functional GR signaling to attenuate HS-induced lung damage. MDPI 2021-12-30 /pmc/articles/PMC8750862/ /pubmed/35011674 http://dx.doi.org/10.3390/cells11010112 Text en © 2021 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Preuss, Jonathan M.
Burret, Ute
Gröger, Michael
Kress, Sandra
Scheuerle, Angelika
Möller, Peter
Tuckermann, Jan P.
Wepler, Martin
Vettorazzi, Sabine
Impaired Glucocorticoid Receptor Signaling Aggravates Lung Injury after Hemorrhagic Shock
title Impaired Glucocorticoid Receptor Signaling Aggravates Lung Injury after Hemorrhagic Shock
title_full Impaired Glucocorticoid Receptor Signaling Aggravates Lung Injury after Hemorrhagic Shock
title_fullStr Impaired Glucocorticoid Receptor Signaling Aggravates Lung Injury after Hemorrhagic Shock
title_full_unstemmed Impaired Glucocorticoid Receptor Signaling Aggravates Lung Injury after Hemorrhagic Shock
title_short Impaired Glucocorticoid Receptor Signaling Aggravates Lung Injury after Hemorrhagic Shock
title_sort impaired glucocorticoid receptor signaling aggravates lung injury after hemorrhagic shock
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8750862/
https://www.ncbi.nlm.nih.gov/pubmed/35011674
http://dx.doi.org/10.3390/cells11010112
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