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

Emily Dookun, Anna Walaszczyk, Rachael E. Redgrave, Paweł Palmowski, Simon Tual‐Chalot, Averina Geffanie Suwana, James Chapman, Eduard Jirkovský, Leticia Donastorg Sosa, Eleanor Gill, Oliver Emmanuel Yausep, Yohan Santin, Jeanne Mialet‐Perez, W. Andrew Owens, David Grieve

Aging Cell · 2020 · ▲ 172 citations

Abstract

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(definition) 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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Provenance

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OpenAlex
DOI
10.1111/acel.13249
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2026-08-02 MST

Cite this

APA
Dookun, E., Walaszczyk, A., Redgrave, R.E., Palmowski, P., Tual‐Chalot, S., Suwana, A.G., Chapman, J., Jirkovský, E., Sosa, L.D., Gill, E., Yausep, O.E., Santin, Y., Mialet‐Perez, J., Owens, W.A., Grieve, D., Spyridopoulos, I., Taggart, M.J., Arthur, H.M., Passos, J.F., &amp; Richardson, G.D. (2020). Clearance of senescent cells during cardiac ischemia–reperfusion injury improves recovery. <em>Aging Cell</em>. https://doi.org/10.1111/acel.13249
Vancouver
Dookun E, Walaszczyk A, Redgrave RE, Palmowski P, Tual‐Chalot S, Suwana AG, et al. Clearance of senescent cells during cardiac ischemia–reperfusion injury improves recovery. Aging Cell. 2020. doi:10.1111/acel.13249.
BibTeX
@article{emily2020Cleara, title = {Clearance of senescent cells during cardiac ischemia–reperfusion injury improves recovery}, author = {Emily Dookun and Anna Walaszczyk and Rachael E. Redgrave and Paweł Palmowski and Simon Tual‐Chalot and Averina Geffanie Suwana and James Chapman and Eduard Jirkovský and Leticia Donastorg Sosa and Eleanor Gill and Oliver Emmanuel Yausep and Yohan Santin and Jeanne Mialet‐Perez and W. Andrew Owens and David Grieve and Ioakim Spyridopoulos and Michael J. Taggart and Helen M. Arthur and João F. Passos and Gavin D. Richardson}, journal = {Aging Cell}, year = {2020}, doi = {10.1111/acel.13249}, }

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