Cargando…

Evidence for a Novel Mechanism Independent of Myocardial Iron in β-Thalassemia Cardiac Pathogenesis

Human β-thalassemia major is one of the most prevalent genetic diseases characterized by decrease/absence of β-globin chain production with reduction of erythrocyte number. The main cause of death of treated β-thalassemia major patients with chronic blood transfusion is early cardiac complications t...

Descripción completa

Detalles Bibliográficos
Autores principales: Stoyanova, Ekatherina, Cloutier, Guy, Felfly, Hady, Lemsaddek, Wafaa, Ah-Son, Nicolas, Trudel, Marie
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2012
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3524169/
https://www.ncbi.nlm.nih.gov/pubmed/23284899
http://dx.doi.org/10.1371/journal.pone.0052128
_version_ 1782253285095243776
author Stoyanova, Ekatherina
Cloutier, Guy
Felfly, Hady
Lemsaddek, Wafaa
Ah-Son, Nicolas
Trudel, Marie
author_facet Stoyanova, Ekatherina
Cloutier, Guy
Felfly, Hady
Lemsaddek, Wafaa
Ah-Son, Nicolas
Trudel, Marie
author_sort Stoyanova, Ekatherina
collection PubMed
description Human β-thalassemia major is one of the most prevalent genetic diseases characterized by decrease/absence of β-globin chain production with reduction of erythrocyte number. The main cause of death of treated β-thalassemia major patients with chronic blood transfusion is early cardiac complications that have been attributed to secondary iron overload despite optimal chelation. Herein, we investigated pathophysiological mechanisms of cardiovascular dysfunction in a severe murine model of β-thalassemia from 6 to 15-months of age in the absence of confounding effects related to transfusion. Our longitudinal echocardiography analysis showed that β-thalassemic mice first display a significant increase of cardiac output in response to limited oxygen-carrying erythrocytes that progressed rapidly to left ventricular hypertrophy and structural remodeling. Following this compensated hypertrophy, β-thalassemic mice developed age-dependent deterioration of left ventricular contractility and dysfunction that led toward decompensated heart failure. Consistently, murine β-thalassemic hearts histopathology revealed cardiac remodeling with increased interstitial fibrosis but virtual absence of myocardial iron deposits. Importantly, development of thalassemic cardiac hypertrophy and dysfunction independently of iron overload has uncoupled these cardiopathogenic processes. Altogether our study on β-thalassemia major hemoglobinopathy points to two successive phases resulting from severe chronic anemia and from secondarily induced mechanisms as pathophysiologic contributors to thalassemic cardiopathy.
format Online
Article
Text
id pubmed-3524169
institution National Center for Biotechnology Information
language English
publishDate 2012
publisher Public Library of Science
record_format MEDLINE/PubMed
spelling pubmed-35241692013-01-02 Evidence for a Novel Mechanism Independent of Myocardial Iron in β-Thalassemia Cardiac Pathogenesis Stoyanova, Ekatherina Cloutier, Guy Felfly, Hady Lemsaddek, Wafaa Ah-Son, Nicolas Trudel, Marie PLoS One Research Article Human β-thalassemia major is one of the most prevalent genetic diseases characterized by decrease/absence of β-globin chain production with reduction of erythrocyte number. The main cause of death of treated β-thalassemia major patients with chronic blood transfusion is early cardiac complications that have been attributed to secondary iron overload despite optimal chelation. Herein, we investigated pathophysiological mechanisms of cardiovascular dysfunction in a severe murine model of β-thalassemia from 6 to 15-months of age in the absence of confounding effects related to transfusion. Our longitudinal echocardiography analysis showed that β-thalassemic mice first display a significant increase of cardiac output in response to limited oxygen-carrying erythrocytes that progressed rapidly to left ventricular hypertrophy and structural remodeling. Following this compensated hypertrophy, β-thalassemic mice developed age-dependent deterioration of left ventricular contractility and dysfunction that led toward decompensated heart failure. Consistently, murine β-thalassemic hearts histopathology revealed cardiac remodeling with increased interstitial fibrosis but virtual absence of myocardial iron deposits. Importantly, development of thalassemic cardiac hypertrophy and dysfunction independently of iron overload has uncoupled these cardiopathogenic processes. Altogether our study on β-thalassemia major hemoglobinopathy points to two successive phases resulting from severe chronic anemia and from secondarily induced mechanisms as pathophysiologic contributors to thalassemic cardiopathy. Public Library of Science 2012-12-17 /pmc/articles/PMC3524169/ /pubmed/23284899 http://dx.doi.org/10.1371/journal.pone.0052128 Text en © 2012 Stoyanova 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
Stoyanova, Ekatherina
Cloutier, Guy
Felfly, Hady
Lemsaddek, Wafaa
Ah-Son, Nicolas
Trudel, Marie
Evidence for a Novel Mechanism Independent of Myocardial Iron in β-Thalassemia Cardiac Pathogenesis
title Evidence for a Novel Mechanism Independent of Myocardial Iron in β-Thalassemia Cardiac Pathogenesis
title_full Evidence for a Novel Mechanism Independent of Myocardial Iron in β-Thalassemia Cardiac Pathogenesis
title_fullStr Evidence for a Novel Mechanism Independent of Myocardial Iron in β-Thalassemia Cardiac Pathogenesis
title_full_unstemmed Evidence for a Novel Mechanism Independent of Myocardial Iron in β-Thalassemia Cardiac Pathogenesis
title_short Evidence for a Novel Mechanism Independent of Myocardial Iron in β-Thalassemia Cardiac Pathogenesis
title_sort evidence for a novel mechanism independent of myocardial iron in β-thalassemia cardiac pathogenesis
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3524169/
https://www.ncbi.nlm.nih.gov/pubmed/23284899
http://dx.doi.org/10.1371/journal.pone.0052128
work_keys_str_mv AT stoyanovaekatherina evidenceforanovelmechanismindependentofmyocardialironinbthalassemiacardiacpathogenesis
AT cloutierguy evidenceforanovelmechanismindependentofmyocardialironinbthalassemiacardiacpathogenesis
AT felflyhady evidenceforanovelmechanismindependentofmyocardialironinbthalassemiacardiacpathogenesis
AT lemsaddekwafaa evidenceforanovelmechanismindependentofmyocardialironinbthalassemiacardiacpathogenesis
AT ahsonnicolas evidenceforanovelmechanismindependentofmyocardialironinbthalassemiacardiacpathogenesis
AT trudelmarie evidenceforanovelmechanismindependentofmyocardialironinbthalassemiacardiacpathogenesis