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Clearance of senescent cells during cardiac ischemia–reperfusion injury improves recovery

A key component of cardiac ischemia–reperfusion injury (IRI) is the increased generation of reactive oxygen species, leading to enhanced inflammation and tissue dysfunction in patients following intervention for myocardial infarction. In this study, we hypothesized that oxidative stress, due to isch...

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Autores principales: Dookun, Emily, Walaszczyk, Anna, Redgrave, Rachael, Palmowski, Pawel, Tual‐Chalot, Simon, Suwana, Averina, Chapman, James, Jirkovsky, Eduard, Donastorg Sosa, Leticia, Gill, Eleanor, Yausep, Oliver E, Santin, Yohan, Mialet‐Perez, Jeanne, Andrew Owens, W, Grieve, David, Spyridopoulos, Ioakim, Taggart, Michael, Arthur, Helen M., Passos, João F., Richardson, Gavin D.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley and Sons Inc. 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7576252/
https://www.ncbi.nlm.nih.gov/pubmed/32996233
http://dx.doi.org/10.1111/acel.13249
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author Dookun, Emily
Walaszczyk, Anna
Redgrave, Rachael
Palmowski, Pawel
Tual‐Chalot, Simon
Suwana, Averina
Chapman, James
Jirkovsky, Eduard
Donastorg Sosa, Leticia
Gill, Eleanor
Yausep, Oliver E
Santin, Yohan
Mialet‐Perez, Jeanne
Andrew Owens, W
Grieve, David
Spyridopoulos, Ioakim
Taggart, Michael
Arthur, Helen M.
Passos, João F.
Richardson, Gavin D.
author_facet Dookun, Emily
Walaszczyk, Anna
Redgrave, Rachael
Palmowski, Pawel
Tual‐Chalot, Simon
Suwana, Averina
Chapman, James
Jirkovsky, Eduard
Donastorg Sosa, Leticia
Gill, Eleanor
Yausep, Oliver E
Santin, Yohan
Mialet‐Perez, Jeanne
Andrew Owens, W
Grieve, David
Spyridopoulos, Ioakim
Taggart, Michael
Arthur, Helen M.
Passos, João F.
Richardson, Gavin D.
author_sort Dookun, Emily
collection PubMed
description A key component of cardiac ischemia–reperfusion injury (IRI) is the increased generation of reactive oxygen species, leading to enhanced inflammation and tissue dysfunction in patients following intervention for myocardial infarction. In this study, we hypothesized that oxidative stress, due to ischemia–reperfusion, induces senescence which contributes to the pathophysiology of cardiac IRI. We demonstrate that IRI induces cellular senescence in both cardiomyocytes and interstitial cell populations and treatment with the senolytic drug navitoclax after ischemia–reperfusion improves left ventricular function, increases myocardial vascularization, and decreases scar size. SWATH‐MS‐based proteomics revealed that biological processes associated with fibrosis and inflammation that were increased following ischemia–reperfusion were attenuated upon senescent cell clearance. Furthermore, navitoclax treatment reduced the expression of pro‐inflammatory, profibrotic, and anti‐angiogenic cytokines, including interferon gamma‐induced protein‐10, TGF‐β3, interleukin‐11, interleukin‐16, and fractalkine. Our study provides proof‐of‐concept evidence that cellular senescence contributes to impaired heart function and adverse remodeling following cardiac ischemia–reperfusion. We also establish that post‐IRI the SASP plays a considerable role in the inflammatory response. Subsequently, senolytic treatment, at a clinically feasible time‐point, attenuates multiple components of this response and improves clinically important parameters. Thus, cellular senescence represents a potential novel therapeutic avenue to improve patient outcomes following cardiac ischemia–reperfusion.
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spelling pubmed-75762522020-10-23 Clearance of senescent cells during cardiac ischemia–reperfusion injury improves recovery Dookun, Emily Walaszczyk, Anna Redgrave, Rachael Palmowski, Pawel Tual‐Chalot, Simon Suwana, Averina Chapman, James Jirkovsky, Eduard Donastorg Sosa, Leticia Gill, Eleanor Yausep, Oliver E Santin, Yohan Mialet‐Perez, Jeanne Andrew Owens, W Grieve, David Spyridopoulos, Ioakim Taggart, Michael Arthur, Helen M. Passos, João F. Richardson, Gavin D. Aging Cell Original Paper A key component of cardiac ischemia–reperfusion injury (IRI) is the increased generation of reactive oxygen species, leading to enhanced inflammation and tissue dysfunction in patients following intervention for myocardial infarction. In this study, we hypothesized that oxidative stress, due to ischemia–reperfusion, induces senescence which contributes to the pathophysiology of cardiac IRI. We demonstrate that IRI induces cellular senescence in both cardiomyocytes and interstitial cell populations and treatment with the senolytic drug navitoclax after ischemia–reperfusion improves left ventricular function, increases myocardial vascularization, and decreases scar size. SWATH‐MS‐based proteomics revealed that biological processes associated with fibrosis and inflammation that were increased following ischemia–reperfusion were attenuated upon senescent cell clearance. Furthermore, navitoclax treatment reduced the expression of pro‐inflammatory, profibrotic, and anti‐angiogenic cytokines, including interferon gamma‐induced protein‐10, TGF‐β3, interleukin‐11, interleukin‐16, and fractalkine. Our study provides proof‐of‐concept evidence that cellular senescence contributes to impaired heart function and adverse remodeling following cardiac ischemia–reperfusion. We also establish that post‐IRI the SASP plays a considerable role in the inflammatory response. Subsequently, senolytic treatment, at a clinically feasible time‐point, attenuates multiple components of this response and improves clinically important parameters. Thus, cellular senescence represents a potential novel therapeutic avenue to improve patient outcomes following cardiac ischemia–reperfusion. John Wiley and Sons Inc. 2020-09-29 2020-10 /pmc/articles/PMC7576252/ /pubmed/32996233 http://dx.doi.org/10.1111/acel.13249 Text en © 2020 The Authors. Aging Cell published by Anatomical Society and John Wiley & Sons Ltd This is an open access article under the terms of the http://creativecommons.org/licenses/by/4.0/ License, which permits use, distribution and reproduction in any medium, provided the original work is properly cited.
spellingShingle Original Paper
Dookun, Emily
Walaszczyk, Anna
Redgrave, Rachael
Palmowski, Pawel
Tual‐Chalot, Simon
Suwana, Averina
Chapman, James
Jirkovsky, Eduard
Donastorg Sosa, Leticia
Gill, Eleanor
Yausep, Oliver E
Santin, Yohan
Mialet‐Perez, Jeanne
Andrew Owens, W
Grieve, David
Spyridopoulos, Ioakim
Taggart, Michael
Arthur, Helen M.
Passos, João F.
Richardson, Gavin D.
Clearance of senescent cells during cardiac ischemia–reperfusion injury improves recovery
title Clearance of senescent cells during cardiac ischemia–reperfusion injury improves recovery
title_full Clearance of senescent cells during cardiac ischemia–reperfusion injury improves recovery
title_fullStr Clearance of senescent cells during cardiac ischemia–reperfusion injury improves recovery
title_full_unstemmed Clearance of senescent cells during cardiac ischemia–reperfusion injury improves recovery
title_short Clearance of senescent cells during cardiac ischemia–reperfusion injury improves recovery
title_sort clearance of senescent cells during cardiac ischemia–reperfusion injury improves recovery
topic Original Paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7576252/
https://www.ncbi.nlm.nih.gov/pubmed/32996233
http://dx.doi.org/10.1111/acel.13249
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