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Cholesterol effects on endoglin and its downstream pathways in ApoE/LDLR double knockout mice
Z. Strasky, L. Vecerova, J. Rathouska, M. Slanarova, E. Brcakova, Z. Kudlackova, C. Andrys, S. Micuda, P. Nachtigal
Language English Country Japan
Document type Journal Article, Research Support, Non-U.S. Gov't
NLK
Free Medical Journals
from 2002
J-STAGE (Japan Science & Technology Information Aggregator, Electronic) - English
from 2002
J-STAGE (Japan Science & Technology Information Aggregator, Electronic) Freely Available Titles - English
from 2002
Open Access Digital Library
from 2002-01-01
- MeSH
- Activin Receptors, Type I metabolism MeSH
- Activin Receptors metabolism MeSH
- Aorta metabolism pathology MeSH
- Apolipoproteins E deficiency genetics metabolism MeSH
- Plaque, Atherosclerotic metabolism pathology MeSH
- Atherosclerosis metabolism pathology MeSH
- Biomarkers blood MeSH
- Cholesterol, Dietary pharmacology MeSH
- Cholesterol blood MeSH
- Intracellular Signaling Peptides and Proteins blood MeSH
- Receptors, LDL deficiency genetics metabolism MeSH
- Disease Models, Animal MeSH
- Mice, Knockout MeSH
- Mice MeSH
- Smad1 Protein metabolism MeSH
- Smad2 Protein metabolism MeSH
- Protein Serine-Threonine Kinases metabolism MeSH
- Receptors, Transforming Growth Factor beta metabolism MeSH
- Signal Transduction drug effects physiology MeSH
- Nitric Oxide Synthase Type III metabolism MeSH
- Vascular Endothelial Growth Factor A metabolism MeSH
- Animals MeSH
- Check Tag
- Mice MeSH
- Female MeSH
- Animals MeSH
- Publication type
- Journal Article MeSH
- Research Support, Non-U.S. Gov't MeSH
BACKGROUND: The aim of the study was to evaluate whether cholesterol-rich diet affects transforming growth factor-β-RIII (endoglin) levels in blood and 2 endoglin-related pathways in the aorta of ApoE/LDLR double knockout mice. METHODS AND RESULTS: Mice were fed either chow diet (CHOW) (n=8) or by 1% cholesterol-rich diet (CHOL) (n=8). Biochemical analysis of cholesterol and endoglin levels in blood, lesion size area, immunohistochemistry and Western blot analysis in mice aortas were performed. Biochemical analysis showed that cholesterol-rich diet resulted in a significant increase of cholesterol and endoglin levels in serum, and increased plaque size in the aorta. In addition, a cholesterol-rich diet significantly decreased the expressions of endoglin by 92%, activin receptor-like kinase (ALK)-1 by 71%, p-Smad2 by 21%, and vascular endothelial growth factor (VEGF) by 37% when compared to CHOW mice, but ALK-5, p-Smad1, and endothelial nitric oxide synthase were not significantly affected. CONCLUSIONS: Hypercholesterolemia increases endoglin levels in blood and simultaneously decreases its expression in aorta, together with atherosclerosis protective markers p-Smad2 and VEGF, followed by increased plaque size. Inhibition of endoglin signaling might be one of the mechanisms responsible for the promoting of endothelial dysfunction and atherogenesis. Moreover, the monitoring of endoglin serum levels might represent an attractive blood marker of progression of disease; however, the precise source and role of endoglin in blood serum remains to be elucidated.
Department of Pharmacology Faculty of Medicine in Hradec Kralove Charles University Prague
Institute of Clinical Immunology and Allergology University Hospital Hradec Kralove
References provided by Crossref.org
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- $a BACKGROUND: The aim of the study was to evaluate whether cholesterol-rich diet affects transforming growth factor-β-RIII (endoglin) levels in blood and 2 endoglin-related pathways in the aorta of ApoE/LDLR double knockout mice. METHODS AND RESULTS: Mice were fed either chow diet (CHOW) (n=8) or by 1% cholesterol-rich diet (CHOL) (n=8). Biochemical analysis of cholesterol and endoglin levels in blood, lesion size area, immunohistochemistry and Western blot analysis in mice aortas were performed. Biochemical analysis showed that cholesterol-rich diet resulted in a significant increase of cholesterol and endoglin levels in serum, and increased plaque size in the aorta. In addition, a cholesterol-rich diet significantly decreased the expressions of endoglin by 92%, activin receptor-like kinase (ALK)-1 by 71%, p-Smad2 by 21%, and vascular endothelial growth factor (VEGF) by 37% when compared to CHOW mice, but ALK-5, p-Smad1, and endothelial nitric oxide synthase were not significantly affected. CONCLUSIONS: Hypercholesterolemia increases endoglin levels in blood and simultaneously decreases its expression in aorta, together with atherosclerosis protective markers p-Smad2 and VEGF, followed by increased plaque size. Inhibition of endoglin signaling might be one of the mechanisms responsible for the promoting of endothelial dysfunction and atherogenesis. Moreover, the monitoring of endoglin serum levels might represent an attractive blood marker of progression of disease; however, the precise source and role of endoglin in blood serum remains to be elucidated.
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