Wnt signaling in cardiovascular physiology.

Wnt signaling pathways play a key role in cardiac development, angiogenesis, and cardiac hypertrophy; emerging evidence suggests that they are also involved in the pathophysiology of atherosclerosis. Specifically, an important role for Wnts has been described in the regulation of endothelial inflamm...

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Main Authors: Marinou, K, Christodoulides, C, Antoniades, C, Koutsilieris, M
Format: Journal article
Language:English
Published: 2012
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author Marinou, K
Christodoulides, C
Antoniades, C
Koutsilieris, M
author_facet Marinou, K
Christodoulides, C
Antoniades, C
Koutsilieris, M
author_sort Marinou, K
collection OXFORD
description Wnt signaling pathways play a key role in cardiac development, angiogenesis, and cardiac hypertrophy; emerging evidence suggests that they are also involved in the pathophysiology of atherosclerosis. Specifically, an important role for Wnts has been described in the regulation of endothelial inflammation, vascular calcification, and mesenchymal stem cell differentiation. Wnt signaling also induces monocyte adhesion to endothelial cells and is crucial for the regulation of vascular smooth-muscle cell (VSMC) behavior. We discuss how the Wnt pathways are implicated in vascular biology and outline the role of Wnt signaling in atherosclerosis. Dissecting Wnt pathways involved in atherogenesis and cardiovascular disease may provide crucial insights into novel mechanisms with therapeutic potential for atherosclerosis.
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spelling oxford-uuid:cf8de8f9-be8d-40c9-b50c-ed58eed034472022-03-27T07:43:23ZWnt signaling in cardiovascular physiology.Journal articlehttp://purl.org/coar/resource_type/c_dcae04bcuuid:cf8de8f9-be8d-40c9-b50c-ed58eed03447EnglishSymplectic Elements at Oxford2012Marinou, KChristodoulides, CAntoniades, CKoutsilieris, MWnt signaling pathways play a key role in cardiac development, angiogenesis, and cardiac hypertrophy; emerging evidence suggests that they are also involved in the pathophysiology of atherosclerosis. Specifically, an important role for Wnts has been described in the regulation of endothelial inflammation, vascular calcification, and mesenchymal stem cell differentiation. Wnt signaling also induces monocyte adhesion to endothelial cells and is crucial for the regulation of vascular smooth-muscle cell (VSMC) behavior. We discuss how the Wnt pathways are implicated in vascular biology and outline the role of Wnt signaling in atherosclerosis. Dissecting Wnt pathways involved in atherogenesis and cardiovascular disease may provide crucial insights into novel mechanisms with therapeutic potential for atherosclerosis.
spellingShingle Marinou, K
Christodoulides, C
Antoniades, C
Koutsilieris, M
Wnt signaling in cardiovascular physiology.
title Wnt signaling in cardiovascular physiology.
title_full Wnt signaling in cardiovascular physiology.
title_fullStr Wnt signaling in cardiovascular physiology.
title_full_unstemmed Wnt signaling in cardiovascular physiology.
title_short Wnt signaling in cardiovascular physiology.
title_sort wnt signaling in cardiovascular physiology
work_keys_str_mv AT marinouk wntsignalingincardiovascularphysiology
AT christodoulidesc wntsignalingincardiovascularphysiology
AT antoniadesc wntsignalingincardiovascularphysiology
AT koutsilierism wntsignalingincardiovascularphysiology