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Hexarelin modulates lung mechanics, inflammation, and fibrosis in acute lung injury

INTRODUCTION: Acute respiratory distress syndrome (ARDS) is an acute form of diffuse lung injury characterized by (i) an intense inflammatory response, (ii) increased pulmonary vascular permeability, and (iii) the loss of respiratory pulmonary tissue. In this article we explore the therapeutic poten...

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Autores principales: Zambelli, Vanessa, Rizzi, Laura, Delvecchio, Paolo, Bresciani, Elena, Rezoagli, Emanuele, Molteni, Laura, Meanti, Ramona, Cuttin, Maria Serena, Bovo, Giorgio, Coco, Silvia, Omeljaniuk, Robert J, Locatelli, Vittorio, Bellani, Giacomo, Torsello, Antonio
Formato: Online Artículo Texto
Lenguaje:English
Publicado: AboutScience 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8638068/
https://www.ncbi.nlm.nih.gov/pubmed/34871336
http://dx.doi.org/10.33393/dti.2021.2347
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author Zambelli, Vanessa
Rizzi, Laura
Delvecchio, Paolo
Bresciani, Elena
Rezoagli, Emanuele
Molteni, Laura
Meanti, Ramona
Cuttin, Maria Serena
Bovo, Giorgio
Coco, Silvia
Omeljaniuk, Robert J
Locatelli, Vittorio
Bellani, Giacomo
Torsello, Antonio
author_facet Zambelli, Vanessa
Rizzi, Laura
Delvecchio, Paolo
Bresciani, Elena
Rezoagli, Emanuele
Molteni, Laura
Meanti, Ramona
Cuttin, Maria Serena
Bovo, Giorgio
Coco, Silvia
Omeljaniuk, Robert J
Locatelli, Vittorio
Bellani, Giacomo
Torsello, Antonio
author_sort Zambelli, Vanessa
collection PubMed
description INTRODUCTION: Acute respiratory distress syndrome (ARDS) is an acute form of diffuse lung injury characterized by (i) an intense inflammatory response, (ii) increased pulmonary vascular permeability, and (iii) the loss of respiratory pulmonary tissue. In this article we explore the therapeutic potential of hexarelin, a synthetic hexapeptide growth hormone secretagogue (GHS), in an experimental model of ARDS. Hexarelin has anti-inflammatory properties and demonstrates cardiovascular-protective activities including the inhibition of cardiomyocyte apoptosis and cardiac fibrosis, both of which may involve the angiotensin-converting enzyme (ACE) system. METHODS: In our experimental model, ARDS was induced by the instillation of 100 mM HCl into the right bronchus; these mice were treated with hexarelin (320 μg/kg, ip) before (Pre) or after (Post) HCl challenge, or with vehicle. Respiratory system compliance, blood gas analysis, and differential cell counts in a selective bronchoalveolar lavage (BAL) were determined 6 or 24 hours after HCl instillation. In an extended study, mice were observed for a subsequent 14 days in order to assess lung fibrosis. RESULTS: Hexarelin induced a significant improvement in lung compliance and a reduction of the number of total immune cells in BAL 24 hours after HCl instillation, accompanied with a lower recruitment of neutrophils compared with the vehicle group. At day 14, hexarelin-treated mice presented with less pulmonary collagen deposition compared with vehicle-treated controls. CONCLUSIONS: Our data suggest that hexarelin can inhibit the early phase of the inflammatory response in a murine model of HCl-induced ARDS, thereby blunting lung remodeling processes and fibrotic development.
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spelling pubmed-86380682021-12-03 Hexarelin modulates lung mechanics, inflammation, and fibrosis in acute lung injury Zambelli, Vanessa Rizzi, Laura Delvecchio, Paolo Bresciani, Elena Rezoagli, Emanuele Molteni, Laura Meanti, Ramona Cuttin, Maria Serena Bovo, Giorgio Coco, Silvia Omeljaniuk, Robert J Locatelli, Vittorio Bellani, Giacomo Torsello, Antonio Drug Target Insights Original Research Article INTRODUCTION: Acute respiratory distress syndrome (ARDS) is an acute form of diffuse lung injury characterized by (i) an intense inflammatory response, (ii) increased pulmonary vascular permeability, and (iii) the loss of respiratory pulmonary tissue. In this article we explore the therapeutic potential of hexarelin, a synthetic hexapeptide growth hormone secretagogue (GHS), in an experimental model of ARDS. Hexarelin has anti-inflammatory properties and demonstrates cardiovascular-protective activities including the inhibition of cardiomyocyte apoptosis and cardiac fibrosis, both of which may involve the angiotensin-converting enzyme (ACE) system. METHODS: In our experimental model, ARDS was induced by the instillation of 100 mM HCl into the right bronchus; these mice were treated with hexarelin (320 μg/kg, ip) before (Pre) or after (Post) HCl challenge, or with vehicle. Respiratory system compliance, blood gas analysis, and differential cell counts in a selective bronchoalveolar lavage (BAL) were determined 6 or 24 hours after HCl instillation. In an extended study, mice were observed for a subsequent 14 days in order to assess lung fibrosis. RESULTS: Hexarelin induced a significant improvement in lung compliance and a reduction of the number of total immune cells in BAL 24 hours after HCl instillation, accompanied with a lower recruitment of neutrophils compared with the vehicle group. At day 14, hexarelin-treated mice presented with less pulmonary collagen deposition compared with vehicle-treated controls. CONCLUSIONS: Our data suggest that hexarelin can inhibit the early phase of the inflammatory response in a murine model of HCl-induced ARDS, thereby blunting lung remodeling processes and fibrotic development. AboutScience 2021-11-27 /pmc/articles/PMC8638068/ /pubmed/34871336 http://dx.doi.org/10.33393/dti.2021.2347 Text en Copyright © 2021, The Authors https://creativecommons.org/licenses/by-nc-nd/4.0/© 2021 The Authors. This article is published by AboutScience and licensed under Creative Commons Attribution-NonCommercial 4.0 International (CC BY-NC 4.0). Commercial use is not permitted and is subject to Publisher’s permissions. Full information is available at www.aboutscience.eu (http://www.aboutscience.eu)
spellingShingle Original Research Article
Zambelli, Vanessa
Rizzi, Laura
Delvecchio, Paolo
Bresciani, Elena
Rezoagli, Emanuele
Molteni, Laura
Meanti, Ramona
Cuttin, Maria Serena
Bovo, Giorgio
Coco, Silvia
Omeljaniuk, Robert J
Locatelli, Vittorio
Bellani, Giacomo
Torsello, Antonio
Hexarelin modulates lung mechanics, inflammation, and fibrosis in acute lung injury
title Hexarelin modulates lung mechanics, inflammation, and fibrosis in acute lung injury
title_full Hexarelin modulates lung mechanics, inflammation, and fibrosis in acute lung injury
title_fullStr Hexarelin modulates lung mechanics, inflammation, and fibrosis in acute lung injury
title_full_unstemmed Hexarelin modulates lung mechanics, inflammation, and fibrosis in acute lung injury
title_short Hexarelin modulates lung mechanics, inflammation, and fibrosis in acute lung injury
title_sort hexarelin modulates lung mechanics, inflammation, and fibrosis in acute lung injury
topic Original Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8638068/
https://www.ncbi.nlm.nih.gov/pubmed/34871336
http://dx.doi.org/10.33393/dti.2021.2347
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