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Apolipoprotein E4 Is Associated with Right Ventricular Dysfunction in Dilated Cardiomyopathy—An Animal and In-Human Comparative Study

ApoE abnormality represents a well-known risk factor for cardiovascular diseases. Beyond its role in lipid metabolism, novel studies demonstrate a complex involvement of apoE in membrane homeostasis and signaling as well as in nuclear transcription. Due to the large spread of apoE isoforms in the hu...

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Autores principales: Diaconu, Rodica, Schaaps, Nicole, Afify, Mamdouh, Boor, Peter, Cornelissen, Anne, Florescu, Roberta A., Simsekyilmaz, Sakine, El-Khoury, Teddy, Schumacher, David, Ioana, Mihai, Streata, Ioana, Militaru, Constantin, Donoiu, Ionut, Vogt, Felix, Liehn, Elisa A.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8468742/
https://www.ncbi.nlm.nih.gov/pubmed/34575848
http://dx.doi.org/10.3390/ijms22189688
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author Diaconu, Rodica
Schaaps, Nicole
Afify, Mamdouh
Boor, Peter
Cornelissen, Anne
Florescu, Roberta A.
Simsekyilmaz, Sakine
El-Khoury, Teddy
Schumacher, David
Ioana, Mihai
Streata, Ioana
Militaru, Constantin
Donoiu, Ionut
Vogt, Felix
Liehn, Elisa A.
author_facet Diaconu, Rodica
Schaaps, Nicole
Afify, Mamdouh
Boor, Peter
Cornelissen, Anne
Florescu, Roberta A.
Simsekyilmaz, Sakine
El-Khoury, Teddy
Schumacher, David
Ioana, Mihai
Streata, Ioana
Militaru, Constantin
Donoiu, Ionut
Vogt, Felix
Liehn, Elisa A.
author_sort Diaconu, Rodica
collection PubMed
description ApoE abnormality represents a well-known risk factor for cardiovascular diseases. Beyond its role in lipid metabolism, novel studies demonstrate a complex involvement of apoE in membrane homeostasis and signaling as well as in nuclear transcription. Due to the large spread of apoE isoforms in the human population, there is a need to understand the apoE’s role in pathological processes. Our study aims to dissect the involvement of apoE in heart failure. We showed that apoE-deficient rats present multiple organ damages (kidney, liver, lung and spleen) besides the known predisposition for obesity and affected lipid metabolism (two-fold increase in tissular damages in liver and one-fold increase in kidney, lung and spleen). Heart tissue also showed significant morphological changes in apoE(−/−) rats, mostly after a high-fat diet. Interestingly, the right ventricle of apoE(−/−) rats fed a high-fat diet showed more damage and affected collagen content (~60% less total collagen content and double increase in collagen1/collagen3 ratio) compared with the left ventricle (no significant differences in total collagen content or collagen1/collagen3 ratio). In patients, we were able to find a correlation between the presence of ε4 allele and cardiomyopathy (χ(2) = 10.244; p = 0.001), but also with right ventricle dysfunction with decreased TAPSE (15.3 ± 2.63 mm in ε4-allele-presenting patients vs. 19.8 ± 3.58 mm if the ε4 allele is absent, p < 0.0001*) and increased in systolic pulmonary artery pressure (50.44 ± 16.47 mmHg in ε4-allele-presenting patients vs. 40.68 ± 15.94 mmHg if the ε4 allele is absent, p = 0.0019). Our results confirm that the presence of the ε4 allele is a lipid-metabolism-independent risk factor for heart failure. Moreover, we show for the first time that the presence of the ε4 allele is associated with right ventricle dysfunction, implying different regulatory mechanisms of fibroblasts and the extracellular matrix in both ventricles. This is essential to be considered and thoroughly investigated before the design of therapeutical strategies for patients with heart failure.
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spelling pubmed-84687422021-09-27 Apolipoprotein E4 Is Associated with Right Ventricular Dysfunction in Dilated Cardiomyopathy—An Animal and In-Human Comparative Study Diaconu, Rodica Schaaps, Nicole Afify, Mamdouh Boor, Peter Cornelissen, Anne Florescu, Roberta A. Simsekyilmaz, Sakine El-Khoury, Teddy Schumacher, David Ioana, Mihai Streata, Ioana Militaru, Constantin Donoiu, Ionut Vogt, Felix Liehn, Elisa A. Int J Mol Sci Article ApoE abnormality represents a well-known risk factor for cardiovascular diseases. Beyond its role in lipid metabolism, novel studies demonstrate a complex involvement of apoE in membrane homeostasis and signaling as well as in nuclear transcription. Due to the large spread of apoE isoforms in the human population, there is a need to understand the apoE’s role in pathological processes. Our study aims to dissect the involvement of apoE in heart failure. We showed that apoE-deficient rats present multiple organ damages (kidney, liver, lung and spleen) besides the known predisposition for obesity and affected lipid metabolism (two-fold increase in tissular damages in liver and one-fold increase in kidney, lung and spleen). Heart tissue also showed significant morphological changes in apoE(−/−) rats, mostly after a high-fat diet. Interestingly, the right ventricle of apoE(−/−) rats fed a high-fat diet showed more damage and affected collagen content (~60% less total collagen content and double increase in collagen1/collagen3 ratio) compared with the left ventricle (no significant differences in total collagen content or collagen1/collagen3 ratio). In patients, we were able to find a correlation between the presence of ε4 allele and cardiomyopathy (χ(2) = 10.244; p = 0.001), but also with right ventricle dysfunction with decreased TAPSE (15.3 ± 2.63 mm in ε4-allele-presenting patients vs. 19.8 ± 3.58 mm if the ε4 allele is absent, p < 0.0001*) and increased in systolic pulmonary artery pressure (50.44 ± 16.47 mmHg in ε4-allele-presenting patients vs. 40.68 ± 15.94 mmHg if the ε4 allele is absent, p = 0.0019). Our results confirm that the presence of the ε4 allele is a lipid-metabolism-independent risk factor for heart failure. Moreover, we show for the first time that the presence of the ε4 allele is associated with right ventricle dysfunction, implying different regulatory mechanisms of fibroblasts and the extracellular matrix in both ventricles. This is essential to be considered and thoroughly investigated before the design of therapeutical strategies for patients with heart failure. MDPI 2021-09-07 /pmc/articles/PMC8468742/ /pubmed/34575848 http://dx.doi.org/10.3390/ijms22189688 Text en © 2021 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Diaconu, Rodica
Schaaps, Nicole
Afify, Mamdouh
Boor, Peter
Cornelissen, Anne
Florescu, Roberta A.
Simsekyilmaz, Sakine
El-Khoury, Teddy
Schumacher, David
Ioana, Mihai
Streata, Ioana
Militaru, Constantin
Donoiu, Ionut
Vogt, Felix
Liehn, Elisa A.
Apolipoprotein E4 Is Associated with Right Ventricular Dysfunction in Dilated Cardiomyopathy—An Animal and In-Human Comparative Study
title Apolipoprotein E4 Is Associated with Right Ventricular Dysfunction in Dilated Cardiomyopathy—An Animal and In-Human Comparative Study
title_full Apolipoprotein E4 Is Associated with Right Ventricular Dysfunction in Dilated Cardiomyopathy—An Animal and In-Human Comparative Study
title_fullStr Apolipoprotein E4 Is Associated with Right Ventricular Dysfunction in Dilated Cardiomyopathy—An Animal and In-Human Comparative Study
title_full_unstemmed Apolipoprotein E4 Is Associated with Right Ventricular Dysfunction in Dilated Cardiomyopathy—An Animal and In-Human Comparative Study
title_short Apolipoprotein E4 Is Associated with Right Ventricular Dysfunction in Dilated Cardiomyopathy—An Animal and In-Human Comparative Study
title_sort apolipoprotein e4 is associated with right ventricular dysfunction in dilated cardiomyopathy—an animal and in-human comparative study
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8468742/
https://www.ncbi.nlm.nih.gov/pubmed/34575848
http://dx.doi.org/10.3390/ijms22189688
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