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Sirtuin-1 and Its Relevance in Vascular Calcification

Vascular calcification (VC) is highly associated with cardiovascular disease and all-cause mortality in patients with chronic kidney disease. Dysregulation of endothelial cells and vascular smooth muscle cells (VSMCs) is related to VC. Sirtuin-1 (Sirt1) deacetylase encompasses a broad range of trans...

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Autores principales: Lu, Chien-Lin, Liao, Min-Tser, Hou, Yi-Chou, Fang, Yu-Wei, Zheng, Cai-Mei, Liu, Wen-Chih, Chao, Chia-Ter, Lu, Kuo-Cheng, Ng, Yee-Yung
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7084838/
https://www.ncbi.nlm.nih.gov/pubmed/32111067
http://dx.doi.org/10.3390/ijms21051593
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author Lu, Chien-Lin
Liao, Min-Tser
Hou, Yi-Chou
Fang, Yu-Wei
Zheng, Cai-Mei
Liu, Wen-Chih
Chao, Chia-Ter
Lu, Kuo-Cheng
Ng, Yee-Yung
author_facet Lu, Chien-Lin
Liao, Min-Tser
Hou, Yi-Chou
Fang, Yu-Wei
Zheng, Cai-Mei
Liu, Wen-Chih
Chao, Chia-Ter
Lu, Kuo-Cheng
Ng, Yee-Yung
author_sort Lu, Chien-Lin
collection PubMed
description Vascular calcification (VC) is highly associated with cardiovascular disease and all-cause mortality in patients with chronic kidney disease. Dysregulation of endothelial cells and vascular smooth muscle cells (VSMCs) is related to VC. Sirtuin-1 (Sirt1) deacetylase encompasses a broad range of transcription factors that are linked to an extended lifespan. Sirt1 enhances endothelial NO synthase and upregulates FoxOs to activate its antioxidant properties and delay cell senescence. Sirt1 reverses osteogenic phenotypic transdifferentiation by influencing RUNX2 expression in VSMCs. Low Sirt1 hardly prevents acetylation by p300 and phosphorylation of β-catenin that, following the facilitation of β-catenin translocation, drives osteogenic phenotypic transdifferentiation. Hyperphosphatemia induces VC by osteogenic conversion, apoptosis, and senescence of VSMCs through the Pit-1 cotransporter, which can be retarded by the sirt1 activator resveratrol. Proinflammatory adipocytokines released from dysfunctional perivascular adipose tissue (PVAT) mediate medial calcification and arterial stiffness. Sirt1 ameliorates release of PVAT adipokines and increases adiponectin secretion, which interact with FoxO 1 against oxidative stress and inflammatory arterial insult. Conclusively, Sirt1 decelerates VC by means of influencing endothelial NO bioavailability, senescence of ECs and VSMCs, osteogenic phenotypic transdifferentiation, apoptosis of VSMCs, ECM deposition, and the inflammatory response of PVAT. Factors that aggravate VC include vitamin D deficiency-related macrophage recruitment and further inflammation responses. Supplementation with vitamin D to adequate levels is beneficial in improving PVAT macrophage infiltration and local inflammation, which further prevents VC.
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spelling pubmed-70848382020-03-23 Sirtuin-1 and Its Relevance in Vascular Calcification Lu, Chien-Lin Liao, Min-Tser Hou, Yi-Chou Fang, Yu-Wei Zheng, Cai-Mei Liu, Wen-Chih Chao, Chia-Ter Lu, Kuo-Cheng Ng, Yee-Yung Int J Mol Sci Review Vascular calcification (VC) is highly associated with cardiovascular disease and all-cause mortality in patients with chronic kidney disease. Dysregulation of endothelial cells and vascular smooth muscle cells (VSMCs) is related to VC. Sirtuin-1 (Sirt1) deacetylase encompasses a broad range of transcription factors that are linked to an extended lifespan. Sirt1 enhances endothelial NO synthase and upregulates FoxOs to activate its antioxidant properties and delay cell senescence. Sirt1 reverses osteogenic phenotypic transdifferentiation by influencing RUNX2 expression in VSMCs. Low Sirt1 hardly prevents acetylation by p300 and phosphorylation of β-catenin that, following the facilitation of β-catenin translocation, drives osteogenic phenotypic transdifferentiation. Hyperphosphatemia induces VC by osteogenic conversion, apoptosis, and senescence of VSMCs through the Pit-1 cotransporter, which can be retarded by the sirt1 activator resveratrol. Proinflammatory adipocytokines released from dysfunctional perivascular adipose tissue (PVAT) mediate medial calcification and arterial stiffness. Sirt1 ameliorates release of PVAT adipokines and increases adiponectin secretion, which interact with FoxO 1 against oxidative stress and inflammatory arterial insult. Conclusively, Sirt1 decelerates VC by means of influencing endothelial NO bioavailability, senescence of ECs and VSMCs, osteogenic phenotypic transdifferentiation, apoptosis of VSMCs, ECM deposition, and the inflammatory response of PVAT. Factors that aggravate VC include vitamin D deficiency-related macrophage recruitment and further inflammation responses. Supplementation with vitamin D to adequate levels is beneficial in improving PVAT macrophage infiltration and local inflammation, which further prevents VC. MDPI 2020-02-26 /pmc/articles/PMC7084838/ /pubmed/32111067 http://dx.doi.org/10.3390/ijms21051593 Text en © 2020 by the authors. Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Review
Lu, Chien-Lin
Liao, Min-Tser
Hou, Yi-Chou
Fang, Yu-Wei
Zheng, Cai-Mei
Liu, Wen-Chih
Chao, Chia-Ter
Lu, Kuo-Cheng
Ng, Yee-Yung
Sirtuin-1 and Its Relevance in Vascular Calcification
title Sirtuin-1 and Its Relevance in Vascular Calcification
title_full Sirtuin-1 and Its Relevance in Vascular Calcification
title_fullStr Sirtuin-1 and Its Relevance in Vascular Calcification
title_full_unstemmed Sirtuin-1 and Its Relevance in Vascular Calcification
title_short Sirtuin-1 and Its Relevance in Vascular Calcification
title_sort sirtuin-1 and its relevance in vascular calcification
topic Review
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7084838/
https://www.ncbi.nlm.nih.gov/pubmed/32111067
http://dx.doi.org/10.3390/ijms21051593
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