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Dietary salt promotes ischemic brain injury and is associated with parenchymal migrasome formation

Sodium chloride promotes vascular fibrosis, arterial hypertension, pro-inflammatory immune cell polarization and endothelial dysfunction, all of which might influence outcomes following stroke. But despite enormous translational relevance, the functional importance of sodium chloride in the pathophy...

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Autores principales: Schmidt-Pogoda, Antje, Strecker, Jan-Kolja, Liebmann, Marie, Massoth, Christina, Beuker, Carolin, Hansen, Uwe, König, Simone, Albrecht, Sarah, Bock, Stefanie, Breuer, Johanna, Sommer, Clemens, Schwab, Nicholas, Wiendl, Heinz, Klotz, Luisa, Minnerup, Jens
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6307724/
https://www.ncbi.nlm.nih.gov/pubmed/30589884
http://dx.doi.org/10.1371/journal.pone.0209871
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author Schmidt-Pogoda, Antje
Strecker, Jan-Kolja
Liebmann, Marie
Massoth, Christina
Beuker, Carolin
Hansen, Uwe
König, Simone
Albrecht, Sarah
Bock, Stefanie
Breuer, Johanna
Sommer, Clemens
Schwab, Nicholas
Wiendl, Heinz
Klotz, Luisa
Minnerup, Jens
author_facet Schmidt-Pogoda, Antje
Strecker, Jan-Kolja
Liebmann, Marie
Massoth, Christina
Beuker, Carolin
Hansen, Uwe
König, Simone
Albrecht, Sarah
Bock, Stefanie
Breuer, Johanna
Sommer, Clemens
Schwab, Nicholas
Wiendl, Heinz
Klotz, Luisa
Minnerup, Jens
author_sort Schmidt-Pogoda, Antje
collection PubMed
description Sodium chloride promotes vascular fibrosis, arterial hypertension, pro-inflammatory immune cell polarization and endothelial dysfunction, all of which might influence outcomes following stroke. But despite enormous translational relevance, the functional importance of sodium chloride in the pathophysiology of acute ischemic stroke is still unclear. In the current study, we show that high-salt diet leads to significantly worse functional outcomes, increased infarct volumes, and a loss of astrocytes and cortical neurons in acute ischemic stroke. While analyzing the underlying pathologic processes, we identified the migrasome as a novel, sodium chloride-driven pathomechanism in acute ischemic stroke. The migrasome was previously described in vitro as a migrating organelle, which incorporates and dispatches cytosol of surrounding cells and plays a role in intercellular signaling, whereas a pathophysiological meaning has not been elaborated. We here confirm previously reported characteristics of the migrasome in vivo. Immunohistochemistry, electron microscopy and proteomic analyses further demonstrate that the migrasome incorporates and dispatches cytosol of surrounding neurons following stroke. The clinical relevance of these findings is emphasized by neuropathological examinations, which detected migrasome formation in infarcted brain parenchyma of human stroke patients. In summary, we demonstrate that high-salt diet aggravates stroke outcomes, and we characterize the migrasome as a novel mechanism in acute stroke pathophysiology.
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spelling pubmed-63077242019-01-08 Dietary salt promotes ischemic brain injury and is associated with parenchymal migrasome formation Schmidt-Pogoda, Antje Strecker, Jan-Kolja Liebmann, Marie Massoth, Christina Beuker, Carolin Hansen, Uwe König, Simone Albrecht, Sarah Bock, Stefanie Breuer, Johanna Sommer, Clemens Schwab, Nicholas Wiendl, Heinz Klotz, Luisa Minnerup, Jens PLoS One Research Article Sodium chloride promotes vascular fibrosis, arterial hypertension, pro-inflammatory immune cell polarization and endothelial dysfunction, all of which might influence outcomes following stroke. But despite enormous translational relevance, the functional importance of sodium chloride in the pathophysiology of acute ischemic stroke is still unclear. In the current study, we show that high-salt diet leads to significantly worse functional outcomes, increased infarct volumes, and a loss of astrocytes and cortical neurons in acute ischemic stroke. While analyzing the underlying pathologic processes, we identified the migrasome as a novel, sodium chloride-driven pathomechanism in acute ischemic stroke. The migrasome was previously described in vitro as a migrating organelle, which incorporates and dispatches cytosol of surrounding cells and plays a role in intercellular signaling, whereas a pathophysiological meaning has not been elaborated. We here confirm previously reported characteristics of the migrasome in vivo. Immunohistochemistry, electron microscopy and proteomic analyses further demonstrate that the migrasome incorporates and dispatches cytosol of surrounding neurons following stroke. The clinical relevance of these findings is emphasized by neuropathological examinations, which detected migrasome formation in infarcted brain parenchyma of human stroke patients. In summary, we demonstrate that high-salt diet aggravates stroke outcomes, and we characterize the migrasome as a novel mechanism in acute stroke pathophysiology. Public Library of Science 2018-12-27 /pmc/articles/PMC6307724/ /pubmed/30589884 http://dx.doi.org/10.1371/journal.pone.0209871 Text en © 2018 Schmidt-Pogoda et al http://creativecommons.org/licenses/by/4.0/ This is an open access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/4.0/) , which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.
spellingShingle Research Article
Schmidt-Pogoda, Antje
Strecker, Jan-Kolja
Liebmann, Marie
Massoth, Christina
Beuker, Carolin
Hansen, Uwe
König, Simone
Albrecht, Sarah
Bock, Stefanie
Breuer, Johanna
Sommer, Clemens
Schwab, Nicholas
Wiendl, Heinz
Klotz, Luisa
Minnerup, Jens
Dietary salt promotes ischemic brain injury and is associated with parenchymal migrasome formation
title Dietary salt promotes ischemic brain injury and is associated with parenchymal migrasome formation
title_full Dietary salt promotes ischemic brain injury and is associated with parenchymal migrasome formation
title_fullStr Dietary salt promotes ischemic brain injury and is associated with parenchymal migrasome formation
title_full_unstemmed Dietary salt promotes ischemic brain injury and is associated with parenchymal migrasome formation
title_short Dietary salt promotes ischemic brain injury and is associated with parenchymal migrasome formation
title_sort dietary salt promotes ischemic brain injury and is associated with parenchymal migrasome formation
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6307724/
https://www.ncbi.nlm.nih.gov/pubmed/30589884
http://dx.doi.org/10.1371/journal.pone.0209871
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