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Atherosclerosis affects calcium signalling in endothelial cells from apolipoprotein E knockout mice before plaque formation

Little is known about how hypercholesterolaemia affects Ca(2+) signalling in the vasculature of ApoE(−/−) mice, a model of atherosclerosis. Our objectives were therefore to determine (i) if hypercholesterolaemia alters Ca(2+) signalling in aortic endothelial cells before overt atherosclerotic lesion...

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Autores principales: Prendergast, Clodagh, Quayle, John, Burdyga, Theodor, Wray, Susan
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Elsevier 2014
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4024193/
https://www.ncbi.nlm.nih.gov/pubmed/24630173
http://dx.doi.org/10.1016/j.ceca.2014.02.012
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author Prendergast, Clodagh
Quayle, John
Burdyga, Theodor
Wray, Susan
author_facet Prendergast, Clodagh
Quayle, John
Burdyga, Theodor
Wray, Susan
author_sort Prendergast, Clodagh
collection PubMed
description Little is known about how hypercholesterolaemia affects Ca(2+) signalling in the vasculature of ApoE(−/−) mice, a model of atherosclerosis. Our objectives were therefore to determine (i) if hypercholesterolaemia alters Ca(2+) signalling in aortic endothelial cells before overt atherosclerotic lesions occur, (ii) how Ca(2+) signals are affected in older plaque-containing mice, and (iii) whether Ca(2+) signalling changes were translated into contractility differences. Using confocal microscopy we found agonist-specific Ca(2+) changes in endothelial cells. ATP responses were unchanged in ApoE(−/−) cells and methyl-β-cyclodextrin, which lowers cholesterol, was without effect. In contrast, Ca(2+) signals to carbachol were significantly increased in ApoE(−/−) cells, an effect methyl-β-cyclodextrin reversed. Ca(2+) signals were more oscillatory and store-operated Ca(2+) entry decreased as mice aged and plaques formed. Despite clearly increased Ca(2+) signals, aortic rings pre-contracted with phenylephrine had impaired relaxation to carbachol. This functional deficit increased with age, was not related to ROS generation, and could be partially rescued by methyl-β-cyclodextrin. In conclusion, carbachol-induced calcium signalling and handling are significantly altered in endothelial cells of ApoE(−/−) mice before plaque development. We speculate that reduction in store-operated Ca(2+) entry may result in less efficient activation of eNOS and thus explain the reduced relaxatory response to CCh, despite the enhanced Ca(2+) response.
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spelling pubmed-40241932014-05-19 Atherosclerosis affects calcium signalling in endothelial cells from apolipoprotein E knockout mice before plaque formation Prendergast, Clodagh Quayle, John Burdyga, Theodor Wray, Susan Cell Calcium Article Little is known about how hypercholesterolaemia affects Ca(2+) signalling in the vasculature of ApoE(−/−) mice, a model of atherosclerosis. Our objectives were therefore to determine (i) if hypercholesterolaemia alters Ca(2+) signalling in aortic endothelial cells before overt atherosclerotic lesions occur, (ii) how Ca(2+) signals are affected in older plaque-containing mice, and (iii) whether Ca(2+) signalling changes were translated into contractility differences. Using confocal microscopy we found agonist-specific Ca(2+) changes in endothelial cells. ATP responses were unchanged in ApoE(−/−) cells and methyl-β-cyclodextrin, which lowers cholesterol, was without effect. In contrast, Ca(2+) signals to carbachol were significantly increased in ApoE(−/−) cells, an effect methyl-β-cyclodextrin reversed. Ca(2+) signals were more oscillatory and store-operated Ca(2+) entry decreased as mice aged and plaques formed. Despite clearly increased Ca(2+) signals, aortic rings pre-contracted with phenylephrine had impaired relaxation to carbachol. This functional deficit increased with age, was not related to ROS generation, and could be partially rescued by methyl-β-cyclodextrin. In conclusion, carbachol-induced calcium signalling and handling are significantly altered in endothelial cells of ApoE(−/−) mice before plaque development. We speculate that reduction in store-operated Ca(2+) entry may result in less efficient activation of eNOS and thus explain the reduced relaxatory response to CCh, despite the enhanced Ca(2+) response. Elsevier 2014-03 /pmc/articles/PMC4024193/ /pubmed/24630173 http://dx.doi.org/10.1016/j.ceca.2014.02.012 Text en © 2014 The Authors http://creativecommons.org/licenses/by/3.0/ This is an open access article under the CC BY license (http://creativecommons.org/licenses/by/3.0/).
spellingShingle Article
Prendergast, Clodagh
Quayle, John
Burdyga, Theodor
Wray, Susan
Atherosclerosis affects calcium signalling in endothelial cells from apolipoprotein E knockout mice before plaque formation
title Atherosclerosis affects calcium signalling in endothelial cells from apolipoprotein E knockout mice before plaque formation
title_full Atherosclerosis affects calcium signalling in endothelial cells from apolipoprotein E knockout mice before plaque formation
title_fullStr Atherosclerosis affects calcium signalling in endothelial cells from apolipoprotein E knockout mice before plaque formation
title_full_unstemmed Atherosclerosis affects calcium signalling in endothelial cells from apolipoprotein E knockout mice before plaque formation
title_short Atherosclerosis affects calcium signalling in endothelial cells from apolipoprotein E knockout mice before plaque formation
title_sort atherosclerosis affects calcium signalling in endothelial cells from apolipoprotein e knockout mice before plaque formation
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4024193/
https://www.ncbi.nlm.nih.gov/pubmed/24630173
http://dx.doi.org/10.1016/j.ceca.2014.02.012
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