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Endocardial Endothelial Dysfunction Progressively Disrupts Initially Anti then Pro-Thrombotic Pathways in Heart Failure Mice

OBJECTIVE: An experimental model of endocardial thrombosis has not been developed and endocardial endothelial dysfunction in heart failure (HF) is understudied. We sought to determine whether disruption of the endothelial anti-coagulant activated protein C (APC) pathway in CREB(A133) HF mice promote...

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Autores principales: Schoner, Amanda, Tyrrell, Christina, Wu, Melinda, Gelow, Jill M., Hayes, Alicia A., Lindner, Jonathan R., Thornburg, Kent L., Hasan, Wohaib
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2015
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4643996/
https://www.ncbi.nlm.nih.gov/pubmed/26565707
http://dx.doi.org/10.1371/journal.pone.0142940
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author Schoner, Amanda
Tyrrell, Christina
Wu, Melinda
Gelow, Jill M.
Hayes, Alicia A.
Lindner, Jonathan R.
Thornburg, Kent L.
Hasan, Wohaib
author_facet Schoner, Amanda
Tyrrell, Christina
Wu, Melinda
Gelow, Jill M.
Hayes, Alicia A.
Lindner, Jonathan R.
Thornburg, Kent L.
Hasan, Wohaib
author_sort Schoner, Amanda
collection PubMed
description OBJECTIVE: An experimental model of endocardial thrombosis has not been developed and endocardial endothelial dysfunction in heart failure (HF) is understudied. We sought to determine whether disruption of the endothelial anti-coagulant activated protein C (APC) pathway in CREB(A133) HF mice promotes endocardial thrombosis in the acute decompensated phase of the disease, and whether alterations in von Willebrand factor (vWF) secretion from HF endocardium reduces thrombus formation as HF stabilizes. APPROACH AND RESULTS: Echocardiography was used to follow HF development and to detect endocardial thrombi in CREB(A133) mice. Endocardial thrombi incidence was confirmed with immunohistochemistry and histology. In early and acute decompensated phases of HF, CREB(A133) mice had the highest incidence of endocardial thrombi and these mice also had a shorter tail-bleeding index consistent with a pro-thrombotic milieu. Both APC generation, and expression of receptors that promote APC function (thrombomodulin, endothelial protein C receptor, protein S), were suppressed in the endocardium of acute decompensated HF mice. However, in stable compensated HF mice, an attenuation occurred for vWF protein content and secretion from endocardial endothelial cells, vWF-dependent platelet agglutination (by ristocetin), and thrombin generation on the endocardial surface. CONCLUSIONS: CREB(A133) mice develop HF and endocardial endothelial dysfunction. Attenuation of the anti-coagulant APC pathway promotes endocardial thrombosis in early and acute decompensated phases of HF. However, in stable compensated HF mice, disruptions in endothelial vWF expression and extrusion may actually reduce the incidence of endocardial thrombosis.
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spelling pubmed-46439962015-11-18 Endocardial Endothelial Dysfunction Progressively Disrupts Initially Anti then Pro-Thrombotic Pathways in Heart Failure Mice Schoner, Amanda Tyrrell, Christina Wu, Melinda Gelow, Jill M. Hayes, Alicia A. Lindner, Jonathan R. Thornburg, Kent L. Hasan, Wohaib PLoS One Research Article OBJECTIVE: An experimental model of endocardial thrombosis has not been developed and endocardial endothelial dysfunction in heart failure (HF) is understudied. We sought to determine whether disruption of the endothelial anti-coagulant activated protein C (APC) pathway in CREB(A133) HF mice promotes endocardial thrombosis in the acute decompensated phase of the disease, and whether alterations in von Willebrand factor (vWF) secretion from HF endocardium reduces thrombus formation as HF stabilizes. APPROACH AND RESULTS: Echocardiography was used to follow HF development and to detect endocardial thrombi in CREB(A133) mice. Endocardial thrombi incidence was confirmed with immunohistochemistry and histology. In early and acute decompensated phases of HF, CREB(A133) mice had the highest incidence of endocardial thrombi and these mice also had a shorter tail-bleeding index consistent with a pro-thrombotic milieu. Both APC generation, and expression of receptors that promote APC function (thrombomodulin, endothelial protein C receptor, protein S), were suppressed in the endocardium of acute decompensated HF mice. However, in stable compensated HF mice, an attenuation occurred for vWF protein content and secretion from endocardial endothelial cells, vWF-dependent platelet agglutination (by ristocetin), and thrombin generation on the endocardial surface. CONCLUSIONS: CREB(A133) mice develop HF and endocardial endothelial dysfunction. Attenuation of the anti-coagulant APC pathway promotes endocardial thrombosis in early and acute decompensated phases of HF. However, in stable compensated HF mice, disruptions in endothelial vWF expression and extrusion may actually reduce the incidence of endocardial thrombosis. Public Library of Science 2015-11-13 /pmc/articles/PMC4643996/ /pubmed/26565707 http://dx.doi.org/10.1371/journal.pone.0142940 Text en © 2015 Schoner 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, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited.
spellingShingle Research Article
Schoner, Amanda
Tyrrell, Christina
Wu, Melinda
Gelow, Jill M.
Hayes, Alicia A.
Lindner, Jonathan R.
Thornburg, Kent L.
Hasan, Wohaib
Endocardial Endothelial Dysfunction Progressively Disrupts Initially Anti then Pro-Thrombotic Pathways in Heart Failure Mice
title Endocardial Endothelial Dysfunction Progressively Disrupts Initially Anti then Pro-Thrombotic Pathways in Heart Failure Mice
title_full Endocardial Endothelial Dysfunction Progressively Disrupts Initially Anti then Pro-Thrombotic Pathways in Heart Failure Mice
title_fullStr Endocardial Endothelial Dysfunction Progressively Disrupts Initially Anti then Pro-Thrombotic Pathways in Heart Failure Mice
title_full_unstemmed Endocardial Endothelial Dysfunction Progressively Disrupts Initially Anti then Pro-Thrombotic Pathways in Heart Failure Mice
title_short Endocardial Endothelial Dysfunction Progressively Disrupts Initially Anti then Pro-Thrombotic Pathways in Heart Failure Mice
title_sort endocardial endothelial dysfunction progressively disrupts initially anti then pro-thrombotic pathways in heart failure mice
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4643996/
https://www.ncbi.nlm.nih.gov/pubmed/26565707
http://dx.doi.org/10.1371/journal.pone.0142940
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