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An Update on the Role of PCSK9 in Atherosclerosis

Atherosclerosis is initiated by functional changes in the endothelium accompanied by accumulation, oxidation, and glycation of LDL-cholesterol in the inner layer of the arterial wall and continues with the expression of adhesion molecules and release of chemoattractants. PCSK9 is a proprotein conver...

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Autores principales: Yurtseven, Ece, Ural, Dilek, Baysal, Kemal, Tokgözoğlu, Lale
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Japan Atherosclerosis Society 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7508721/
https://www.ncbi.nlm.nih.gov/pubmed/32713931
http://dx.doi.org/10.5551/jat.55400
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author Yurtseven, Ece
Ural, Dilek
Baysal, Kemal
Tokgözoğlu, Lale
author_facet Yurtseven, Ece
Ural, Dilek
Baysal, Kemal
Tokgözoğlu, Lale
author_sort Yurtseven, Ece
collection PubMed
description Atherosclerosis is initiated by functional changes in the endothelium accompanied by accumulation, oxidation, and glycation of LDL-cholesterol in the inner layer of the arterial wall and continues with the expression of adhesion molecules and release of chemoattractants. PCSK9 is a proprotein convertase that increases circulating LDL levels by directing hepatic LDL receptors into lysosomes for degradation. The effects of PCSK9 on hepatic LDL receptors and contribution to atherosclerosis via the induction of hyperlipidemia are well defined. Monoclonal PCSK9 antibodies that block the effects of PCSK9 on LDL receptors demonstrated beneficial results in cardiovascular outcome trials. In recent years, extrahepatic functions of PCSK9, particularly its direct effects on atherosclerotic plaques have received increasing attention. Experimental trials have revealed that PCSK9 plays a significant role in every step of atherosclerotic plaque formation. It contributes to foam cell formation by increasing the uptake of LDL by macrophages via scavenger receptors and inhibiting cholesterol efflux from macrophages. It induces the expression of inflammatory cytokines, adhesion molecules, and chemoattractants, thereby increasing monocyte recruitment, inflammatory cell adhesion, and inflammation at the atherosclerotic vascular wall. Moreover, low shear stress is associated with increased PCSK9 expression. PCSK9 may induce endothelial cell apoptosis and autophagy and stimulate the differentiation of smooth muscle cells from the contractile phenotype to synthetic phenotype. Increasing evidence indicates that PCSK9 is a molecular target in the development of novel approaches toward the prevention and treatment of atherosclerosis. This review focuses on the molecular roles of PCSK9 in atherosclerotic plaque formation.
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spelling pubmed-75087212020-09-28 An Update on the Role of PCSK9 in Atherosclerosis Yurtseven, Ece Ural, Dilek Baysal, Kemal Tokgözoğlu, Lale J Atheroscler Thromb Review Atherosclerosis is initiated by functional changes in the endothelium accompanied by accumulation, oxidation, and glycation of LDL-cholesterol in the inner layer of the arterial wall and continues with the expression of adhesion molecules and release of chemoattractants. PCSK9 is a proprotein convertase that increases circulating LDL levels by directing hepatic LDL receptors into lysosomes for degradation. The effects of PCSK9 on hepatic LDL receptors and contribution to atherosclerosis via the induction of hyperlipidemia are well defined. Monoclonal PCSK9 antibodies that block the effects of PCSK9 on LDL receptors demonstrated beneficial results in cardiovascular outcome trials. In recent years, extrahepatic functions of PCSK9, particularly its direct effects on atherosclerotic plaques have received increasing attention. Experimental trials have revealed that PCSK9 plays a significant role in every step of atherosclerotic plaque formation. It contributes to foam cell formation by increasing the uptake of LDL by macrophages via scavenger receptors and inhibiting cholesterol efflux from macrophages. It induces the expression of inflammatory cytokines, adhesion molecules, and chemoattractants, thereby increasing monocyte recruitment, inflammatory cell adhesion, and inflammation at the atherosclerotic vascular wall. Moreover, low shear stress is associated with increased PCSK9 expression. PCSK9 may induce endothelial cell apoptosis and autophagy and stimulate the differentiation of smooth muscle cells from the contractile phenotype to synthetic phenotype. Increasing evidence indicates that PCSK9 is a molecular target in the development of novel approaches toward the prevention and treatment of atherosclerosis. This review focuses on the molecular roles of PCSK9 in atherosclerotic plaque formation. Japan Atherosclerosis Society 2020-09-01 /pmc/articles/PMC7508721/ /pubmed/32713931 http://dx.doi.org/10.5551/jat.55400 Text en 2020 Japan Atherosclerosis Society This article is distributed under the terms of the latest version of CC BY-NC-SA defined by the Creative Commons Attribution License.http://creativecommons.org/licenses/by-nc-sa/3.0/
spellingShingle Review
Yurtseven, Ece
Ural, Dilek
Baysal, Kemal
Tokgözoğlu, Lale
An Update on the Role of PCSK9 in Atherosclerosis
title An Update on the Role of PCSK9 in Atherosclerosis
title_full An Update on the Role of PCSK9 in Atherosclerosis
title_fullStr An Update on the Role of PCSK9 in Atherosclerosis
title_full_unstemmed An Update on the Role of PCSK9 in Atherosclerosis
title_short An Update on the Role of PCSK9 in Atherosclerosis
title_sort update on the role of pcsk9 in atherosclerosis
topic Review
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7508721/
https://www.ncbi.nlm.nih.gov/pubmed/32713931
http://dx.doi.org/10.5551/jat.55400
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