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Implication of molecular vascular smooth muscle cell heterogeneity among arterial beds in arterial calcification

Vascular calcification is a strong and independent predictive factor for cardiovascular complications and mortality. Our previous work identified important discrepancies in plaque composition and calcification types between carotid and femoral arteries. The objective of this study is to further char...

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Autores principales: Espitia, Olivier, Chatelais, Mathias, Steenman, Marja, Charrier, Céline, Maurel, Blandine, Georges, Steven, Houlgatte, Rémi, Verrecchia, Franck, Ory, Benjamin, Lamoureux, François, Heymann, Dominique, Gouëffic, Yann, Quillard, Thibaut
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5786328/
https://www.ncbi.nlm.nih.gov/pubmed/29373585
http://dx.doi.org/10.1371/journal.pone.0191976
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author Espitia, Olivier
Chatelais, Mathias
Steenman, Marja
Charrier, Céline
Maurel, Blandine
Georges, Steven
Houlgatte, Rémi
Verrecchia, Franck
Ory, Benjamin
Lamoureux, François
Heymann, Dominique
Gouëffic, Yann
Quillard, Thibaut
author_facet Espitia, Olivier
Chatelais, Mathias
Steenman, Marja
Charrier, Céline
Maurel, Blandine
Georges, Steven
Houlgatte, Rémi
Verrecchia, Franck
Ory, Benjamin
Lamoureux, François
Heymann, Dominique
Gouëffic, Yann
Quillard, Thibaut
author_sort Espitia, Olivier
collection PubMed
description Vascular calcification is a strong and independent predictive factor for cardiovascular complications and mortality. Our previous work identified important discrepancies in plaque composition and calcification types between carotid and femoral arteries. The objective of this study is to further characterize and understand the heterogeneity in vascular calcification among vascular beds, and to identify molecular mechanisms underlying this process. We established ECLAGEN biocollection that encompasses human atherosclerotic lesions and healthy arteries from different locations (abdominal, thoracic aorta, carotid, femoral, and infrapopliteal arteries) for histological, cell isolation, and transcriptomic analysis. Our results show that lesion composition differs between these locations. Femoral arteries are the most calcified arteries overall. They develop denser calcifications (sheet-like, nodule), and are highly susceptible to osteoid metaplasia. These discrepancies may derive from intrinsic differences between SMCs originating from these locations, as microarray analysis showed specific transcriptomic profiles between primary SMCs isolated from each arterial bed. These molecular differences translated into functional disparities. SMC from femoral arteries showed the highest propensity to mineralize due to an increase in basal TGFβ signaling. Our results suggest that biological heterogeneity of resident vascular cells between arterial beds, reflected by our transcriptomic analysis, is critical in understanding plaque biology and calcification, and may have strong implications in vascular therapeutic approaches.
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spelling pubmed-57863282018-02-09 Implication of molecular vascular smooth muscle cell heterogeneity among arterial beds in arterial calcification Espitia, Olivier Chatelais, Mathias Steenman, Marja Charrier, Céline Maurel, Blandine Georges, Steven Houlgatte, Rémi Verrecchia, Franck Ory, Benjamin Lamoureux, François Heymann, Dominique Gouëffic, Yann Quillard, Thibaut PLoS One Research Article Vascular calcification is a strong and independent predictive factor for cardiovascular complications and mortality. Our previous work identified important discrepancies in plaque composition and calcification types between carotid and femoral arteries. The objective of this study is to further characterize and understand the heterogeneity in vascular calcification among vascular beds, and to identify molecular mechanisms underlying this process. We established ECLAGEN biocollection that encompasses human atherosclerotic lesions and healthy arteries from different locations (abdominal, thoracic aorta, carotid, femoral, and infrapopliteal arteries) for histological, cell isolation, and transcriptomic analysis. Our results show that lesion composition differs between these locations. Femoral arteries are the most calcified arteries overall. They develop denser calcifications (sheet-like, nodule), and are highly susceptible to osteoid metaplasia. These discrepancies may derive from intrinsic differences between SMCs originating from these locations, as microarray analysis showed specific transcriptomic profiles between primary SMCs isolated from each arterial bed. These molecular differences translated into functional disparities. SMC from femoral arteries showed the highest propensity to mineralize due to an increase in basal TGFβ signaling. Our results suggest that biological heterogeneity of resident vascular cells between arterial beds, reflected by our transcriptomic analysis, is critical in understanding plaque biology and calcification, and may have strong implications in vascular therapeutic approaches. Public Library of Science 2018-01-26 /pmc/articles/PMC5786328/ /pubmed/29373585 http://dx.doi.org/10.1371/journal.pone.0191976 Text en © 2018 Espitia 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 (http://creativecommons.org/licenses/by/4.0/) , which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.
spellingShingle Research Article
Espitia, Olivier
Chatelais, Mathias
Steenman, Marja
Charrier, Céline
Maurel, Blandine
Georges, Steven
Houlgatte, Rémi
Verrecchia, Franck
Ory, Benjamin
Lamoureux, François
Heymann, Dominique
Gouëffic, Yann
Quillard, Thibaut
Implication of molecular vascular smooth muscle cell heterogeneity among arterial beds in arterial calcification
title Implication of molecular vascular smooth muscle cell heterogeneity among arterial beds in arterial calcification
title_full Implication of molecular vascular smooth muscle cell heterogeneity among arterial beds in arterial calcification
title_fullStr Implication of molecular vascular smooth muscle cell heterogeneity among arterial beds in arterial calcification
title_full_unstemmed Implication of molecular vascular smooth muscle cell heterogeneity among arterial beds in arterial calcification
title_short Implication of molecular vascular smooth muscle cell heterogeneity among arterial beds in arterial calcification
title_sort implication of molecular vascular smooth muscle cell heterogeneity among arterial beds in arterial calcification
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5786328/
https://www.ncbi.nlm.nih.gov/pubmed/29373585
http://dx.doi.org/10.1371/journal.pone.0191976
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