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ANGPTL4 stabilizes atherosclerotic plaques and modulates the phenotypic transition of vascular smooth muscle cells through KLF4 downregulation

Atherosclerosis, the leading cause of death, is a vascular disease of chronic inflammation. We recently showed that angiopoietin-like 4 (ANGPTL4) promotes cardiac repair by suppressing pathological inflammation. Given the fundamental contribution of inflammation to atherosclerosis, we assessed the r...

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Autores principales: Cho, Dong Im, Ahn, Min Joo, Cho, Hyang Hee, Cho, Meeyoung, Jun, Ju Hee, Kang, Bo Gyeong, Lim, Soo Yeon, Yoo, Soo Ji, Kim, Mi Ra, Kim, Hyung-Seok, Lee, Su-Jin, Dat, Le Thanh, Lee, Changho, Kim, Yong Sook, Ahn, Youngkeun
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Nature Publishing Group UK 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9981608/
https://www.ncbi.nlm.nih.gov/pubmed/36782020
http://dx.doi.org/10.1038/s12276-023-00937-x
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author Cho, Dong Im
Ahn, Min Joo
Cho, Hyang Hee
Cho, Meeyoung
Jun, Ju Hee
Kang, Bo Gyeong
Lim, Soo Yeon
Yoo, Soo Ji
Kim, Mi Ra
Kim, Hyung-Seok
Lee, Su-Jin
Dat, Le Thanh
Lee, Changho
Kim, Yong Sook
Ahn, Youngkeun
author_facet Cho, Dong Im
Ahn, Min Joo
Cho, Hyang Hee
Cho, Meeyoung
Jun, Ju Hee
Kang, Bo Gyeong
Lim, Soo Yeon
Yoo, Soo Ji
Kim, Mi Ra
Kim, Hyung-Seok
Lee, Su-Jin
Dat, Le Thanh
Lee, Changho
Kim, Yong Sook
Ahn, Youngkeun
author_sort Cho, Dong Im
collection PubMed
description Atherosclerosis, the leading cause of death, is a vascular disease of chronic inflammation. We recently showed that angiopoietin-like 4 (ANGPTL4) promotes cardiac repair by suppressing pathological inflammation. Given the fundamental contribution of inflammation to atherosclerosis, we assessed the role of ANGPTL4 in the development of atherosclerosis and determined whether ANGPTL4 regulates atherosclerotic plaque stability. We injected ANGPTL4 protein twice a week into atherosclerotic Apoe−/− mice and analyzed the atherosclerotic lesion size, inflammation, and plaque stability. In atherosclerotic mice, ANGPTL4 reduced atherosclerotic plaque size and vascular inflammation. In the atherosclerotic lesions and fibrous caps, the number of α-SMA(+), SM22α(+), and SM-MHC(+) cells was higher, while the number of CD68(+) and Mac2(+) cells was lower in the ANGPTL4 group. Most importantly, the fibrous cap was significantly thicker in the ANGPTL4 group than in the control group. Smooth muscle cells (SMCs) isolated from atherosclerotic aortas showed significantly increased expression of CD68 and Krüppel-like factor 4 (KLF4), a modulator of the vascular SMC phenotype, along with downregulation of α-SMA, and these changes were attenuated by ANGPTL4 treatment. Furthermore, ANGPTL4 reduced TNFα-induced NADPH oxidase 1 (NOX1), a major source of reactive oxygen species, resulting in the attenuation of KLF4-mediated SMC phenotypic changes. We showed that acute myocardial infarction (AMI) patients with higher levels of ANGPTL4 had fewer vascular events than AMI patients with lower levels of ANGPTL4 (p < 0.05). Our results reveal that ANGPTL4 treatment inhibits atherogenesis and suggest that targeting vascular stability and inflammation may serve as a novel therapeutic strategy to prevent and treat atherosclerosis. Even more importantly, ANGPTL4 treatment inhibited the phenotypic changes of SMCs into macrophage-like cells by downregulating NOX1 activation of KLF4, leading to the formation of more stable plaques.
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spelling pubmed-99816082023-03-04 ANGPTL4 stabilizes atherosclerotic plaques and modulates the phenotypic transition of vascular smooth muscle cells through KLF4 downregulation Cho, Dong Im Ahn, Min Joo Cho, Hyang Hee Cho, Meeyoung Jun, Ju Hee Kang, Bo Gyeong Lim, Soo Yeon Yoo, Soo Ji Kim, Mi Ra Kim, Hyung-Seok Lee, Su-Jin Dat, Le Thanh Lee, Changho Kim, Yong Sook Ahn, Youngkeun Exp Mol Med Article Atherosclerosis, the leading cause of death, is a vascular disease of chronic inflammation. We recently showed that angiopoietin-like 4 (ANGPTL4) promotes cardiac repair by suppressing pathological inflammation. Given the fundamental contribution of inflammation to atherosclerosis, we assessed the role of ANGPTL4 in the development of atherosclerosis and determined whether ANGPTL4 regulates atherosclerotic plaque stability. We injected ANGPTL4 protein twice a week into atherosclerotic Apoe−/− mice and analyzed the atherosclerotic lesion size, inflammation, and plaque stability. In atherosclerotic mice, ANGPTL4 reduced atherosclerotic plaque size and vascular inflammation. In the atherosclerotic lesions and fibrous caps, the number of α-SMA(+), SM22α(+), and SM-MHC(+) cells was higher, while the number of CD68(+) and Mac2(+) cells was lower in the ANGPTL4 group. Most importantly, the fibrous cap was significantly thicker in the ANGPTL4 group than in the control group. Smooth muscle cells (SMCs) isolated from atherosclerotic aortas showed significantly increased expression of CD68 and Krüppel-like factor 4 (KLF4), a modulator of the vascular SMC phenotype, along with downregulation of α-SMA, and these changes were attenuated by ANGPTL4 treatment. Furthermore, ANGPTL4 reduced TNFα-induced NADPH oxidase 1 (NOX1), a major source of reactive oxygen species, resulting in the attenuation of KLF4-mediated SMC phenotypic changes. We showed that acute myocardial infarction (AMI) patients with higher levels of ANGPTL4 had fewer vascular events than AMI patients with lower levels of ANGPTL4 (p < 0.05). Our results reveal that ANGPTL4 treatment inhibits atherogenesis and suggest that targeting vascular stability and inflammation may serve as a novel therapeutic strategy to prevent and treat atherosclerosis. Even more importantly, ANGPTL4 treatment inhibited the phenotypic changes of SMCs into macrophage-like cells by downregulating NOX1 activation of KLF4, leading to the formation of more stable plaques. Nature Publishing Group UK 2023-02-13 /pmc/articles/PMC9981608/ /pubmed/36782020 http://dx.doi.org/10.1038/s12276-023-00937-x Text en © The Author(s) 2023 https://creativecommons.org/licenses/by/4.0/Open Access This article is licensed under a Creative Commons Attribution 4.0 International License, which permits use, sharing, adaptation, distribution and reproduction in any medium or format, as long as you give appropriate credit to the original author(s) and the source, provide a link to the Creative Commons license, and indicate if changes were made. The images or other third party material in this article are included in the article’s Creative Commons license, unless indicated otherwise in a credit line to the material. If material is not included in the article’s Creative Commons license and your intended use is not permitted by statutory regulation or exceeds the permitted use, you will need to obtain permission directly from the copyright holder. To view a copy of this license, visit http://creativecommons.org/licenses/by/4.0/ (https://creativecommons.org/licenses/by/4.0/) .
spellingShingle Article
Cho, Dong Im
Ahn, Min Joo
Cho, Hyang Hee
Cho, Meeyoung
Jun, Ju Hee
Kang, Bo Gyeong
Lim, Soo Yeon
Yoo, Soo Ji
Kim, Mi Ra
Kim, Hyung-Seok
Lee, Su-Jin
Dat, Le Thanh
Lee, Changho
Kim, Yong Sook
Ahn, Youngkeun
ANGPTL4 stabilizes atherosclerotic plaques and modulates the phenotypic transition of vascular smooth muscle cells through KLF4 downregulation
title ANGPTL4 stabilizes atherosclerotic plaques and modulates the phenotypic transition of vascular smooth muscle cells through KLF4 downregulation
title_full ANGPTL4 stabilizes atherosclerotic plaques and modulates the phenotypic transition of vascular smooth muscle cells through KLF4 downregulation
title_fullStr ANGPTL4 stabilizes atherosclerotic plaques and modulates the phenotypic transition of vascular smooth muscle cells through KLF4 downregulation
title_full_unstemmed ANGPTL4 stabilizes atherosclerotic plaques and modulates the phenotypic transition of vascular smooth muscle cells through KLF4 downregulation
title_short ANGPTL4 stabilizes atherosclerotic plaques and modulates the phenotypic transition of vascular smooth muscle cells through KLF4 downregulation
title_sort angptl4 stabilizes atherosclerotic plaques and modulates the phenotypic transition of vascular smooth muscle cells through klf4 downregulation
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9981608/
https://www.ncbi.nlm.nih.gov/pubmed/36782020
http://dx.doi.org/10.1038/s12276-023-00937-x
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