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Impaired Vascular Contractility and Aortic Wall Degeneration in Fibulin-4 Deficient Mice: Effect of Angiotensin II Type 1 (AT(1)) Receptor Blockade

Medial degeneration is a key feature of aneurysm disease and aortic dissection. In a murine aneurysm model we investigated the structural and functional characteristics of aortic wall degeneration in adult fibulin-4 deficient mice and the potential therapeutic role of the angiotensin (Ang) II type 1...

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Autores principales: Moltzer, Els, te Riet, Luuk, Swagemakers, Sigrid M. A., van Heijningen, Paula M., Vermeij, Marcel, van Veghel, Richard, Bouhuizen, Angelique M., van Esch, Joep H. M., Lankhorst, Stephanie, Ramnath, Natasja W. M., de Waard, Monique C., Duncker, Dirk J., van der Spek, Peter J., Rouwet, Ellen V., Danser, A. H. Jan, Essers, Jeroen
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2011
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3153486/
https://www.ncbi.nlm.nih.gov/pubmed/21858106
http://dx.doi.org/10.1371/journal.pone.0023411
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author Moltzer, Els
te Riet, Luuk
Swagemakers, Sigrid M. A.
van Heijningen, Paula M.
Vermeij, Marcel
van Veghel, Richard
Bouhuizen, Angelique M.
van Esch, Joep H. M.
Lankhorst, Stephanie
Ramnath, Natasja W. M.
de Waard, Monique C.
Duncker, Dirk J.
van der Spek, Peter J.
Rouwet, Ellen V.
Danser, A. H. Jan
Essers, Jeroen
author_facet Moltzer, Els
te Riet, Luuk
Swagemakers, Sigrid M. A.
van Heijningen, Paula M.
Vermeij, Marcel
van Veghel, Richard
Bouhuizen, Angelique M.
van Esch, Joep H. M.
Lankhorst, Stephanie
Ramnath, Natasja W. M.
de Waard, Monique C.
Duncker, Dirk J.
van der Spek, Peter J.
Rouwet, Ellen V.
Danser, A. H. Jan
Essers, Jeroen
author_sort Moltzer, Els
collection PubMed
description Medial degeneration is a key feature of aneurysm disease and aortic dissection. In a murine aneurysm model we investigated the structural and functional characteristics of aortic wall degeneration in adult fibulin-4 deficient mice and the potential therapeutic role of the angiotensin (Ang) II type 1 (AT(1)) receptor antagonist losartan in preventing aortic media degeneration. Adult mice with 2-fold (heterozygous Fibulin-4(+/R)) and 4-fold (homozygous Fibulin-4(R/R)) reduced expression of fibulin-4 displayed the histological features of cystic media degeneration as found in patients with aneurysm or dissection, including elastin fiber fragmentation, loss of smooth muscle cells, and deposition of ground substance in the extracellular matrix of the aortic media. The aortic contractile capacity, determined by isometric force measurements, was diminished, and was associated with dysregulation of contractile genes as shown by aortic transcriptome analysis. These structural and functional alterations were accompanied by upregulation of TGF-β signaling in aortas from fibulin-4 deficient mice, as identified by genome-scaled network analysis as well as by immunohistochemical staining for phosphorylated Smad2, an intracellular mediator of TGF-β. Tissue levels of Ang II, a regulator of TGF-β signaling, were increased. Prenatal treatment with the AT(1) receptor antagonist losartan, which blunts TGF-β signaling, prevented elastic fiber fragmentation in the aortic media of newborn Fibulin-4(R/R) mice. Postnatal losartan treatment reduced haemodynamic stress and improved lifespan of homozygous knockdown fibulin-4 animals, but did not affect aortic vessel wall structure. In conclusion, the AT(1) receptor blocker losartan can prevent aortic media degeneration in a non-Marfan syndrome aneurysm mouse model. In established aortic aneurysms, losartan does not affect aortic architecture, but does improve survival. These findings may extend the potential therapeutic application of inhibitors of the renin-angiotensin system to the preventive treatment of aneurysm disease.
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spelling pubmed-31534862011-08-19 Impaired Vascular Contractility and Aortic Wall Degeneration in Fibulin-4 Deficient Mice: Effect of Angiotensin II Type 1 (AT(1)) Receptor Blockade Moltzer, Els te Riet, Luuk Swagemakers, Sigrid M. A. van Heijningen, Paula M. Vermeij, Marcel van Veghel, Richard Bouhuizen, Angelique M. van Esch, Joep H. M. Lankhorst, Stephanie Ramnath, Natasja W. M. de Waard, Monique C. Duncker, Dirk J. van der Spek, Peter J. Rouwet, Ellen V. Danser, A. H. Jan Essers, Jeroen PLoS One Research Article Medial degeneration is a key feature of aneurysm disease and aortic dissection. In a murine aneurysm model we investigated the structural and functional characteristics of aortic wall degeneration in adult fibulin-4 deficient mice and the potential therapeutic role of the angiotensin (Ang) II type 1 (AT(1)) receptor antagonist losartan in preventing aortic media degeneration. Adult mice with 2-fold (heterozygous Fibulin-4(+/R)) and 4-fold (homozygous Fibulin-4(R/R)) reduced expression of fibulin-4 displayed the histological features of cystic media degeneration as found in patients with aneurysm or dissection, including elastin fiber fragmentation, loss of smooth muscle cells, and deposition of ground substance in the extracellular matrix of the aortic media. The aortic contractile capacity, determined by isometric force measurements, was diminished, and was associated with dysregulation of contractile genes as shown by aortic transcriptome analysis. These structural and functional alterations were accompanied by upregulation of TGF-β signaling in aortas from fibulin-4 deficient mice, as identified by genome-scaled network analysis as well as by immunohistochemical staining for phosphorylated Smad2, an intracellular mediator of TGF-β. Tissue levels of Ang II, a regulator of TGF-β signaling, were increased. Prenatal treatment with the AT(1) receptor antagonist losartan, which blunts TGF-β signaling, prevented elastic fiber fragmentation in the aortic media of newborn Fibulin-4(R/R) mice. Postnatal losartan treatment reduced haemodynamic stress and improved lifespan of homozygous knockdown fibulin-4 animals, but did not affect aortic vessel wall structure. In conclusion, the AT(1) receptor blocker losartan can prevent aortic media degeneration in a non-Marfan syndrome aneurysm mouse model. In established aortic aneurysms, losartan does not affect aortic architecture, but does improve survival. These findings may extend the potential therapeutic application of inhibitors of the renin-angiotensin system to the preventive treatment of aneurysm disease. Public Library of Science 2011-08-09 /pmc/articles/PMC3153486/ /pubmed/21858106 http://dx.doi.org/10.1371/journal.pone.0023411 Text en Moltzer 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
Moltzer, Els
te Riet, Luuk
Swagemakers, Sigrid M. A.
van Heijningen, Paula M.
Vermeij, Marcel
van Veghel, Richard
Bouhuizen, Angelique M.
van Esch, Joep H. M.
Lankhorst, Stephanie
Ramnath, Natasja W. M.
de Waard, Monique C.
Duncker, Dirk J.
van der Spek, Peter J.
Rouwet, Ellen V.
Danser, A. H. Jan
Essers, Jeroen
Impaired Vascular Contractility and Aortic Wall Degeneration in Fibulin-4 Deficient Mice: Effect of Angiotensin II Type 1 (AT(1)) Receptor Blockade
title Impaired Vascular Contractility and Aortic Wall Degeneration in Fibulin-4 Deficient Mice: Effect of Angiotensin II Type 1 (AT(1)) Receptor Blockade
title_full Impaired Vascular Contractility and Aortic Wall Degeneration in Fibulin-4 Deficient Mice: Effect of Angiotensin II Type 1 (AT(1)) Receptor Blockade
title_fullStr Impaired Vascular Contractility and Aortic Wall Degeneration in Fibulin-4 Deficient Mice: Effect of Angiotensin II Type 1 (AT(1)) Receptor Blockade
title_full_unstemmed Impaired Vascular Contractility and Aortic Wall Degeneration in Fibulin-4 Deficient Mice: Effect of Angiotensin II Type 1 (AT(1)) Receptor Blockade
title_short Impaired Vascular Contractility and Aortic Wall Degeneration in Fibulin-4 Deficient Mice: Effect of Angiotensin II Type 1 (AT(1)) Receptor Blockade
title_sort impaired vascular contractility and aortic wall degeneration in fibulin-4 deficient mice: effect of angiotensin ii type 1 (at(1)) receptor blockade
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3153486/
https://www.ncbi.nlm.nih.gov/pubmed/21858106
http://dx.doi.org/10.1371/journal.pone.0023411
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