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Macrophage‐derived exosomal miR‐4532 promotes endothelial cells injury by targeting SP1 and NF‐κB P65 signalling activation

Atherosclerosis is a complex pathological process involving macrophages, endothelial cells and vascular smooth muscle cells that can lead to ischemic heart disease; however, the mechanisms underlying cell‐to‐cell communication in atherosclerosis are poorly understood. In this study, we focused on th...

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Autores principales: Liu, Peng, Wang, Shuya, Wang, Guangxin, Zhao, Mingming, Du, Fengli, Li, Kaiyuan, Wang, Lei, Wu, Huihui, Chen, Jiamin, Yang, Yang, Su, Guohai
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley and Sons Inc. 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9575109/
https://www.ncbi.nlm.nih.gov/pubmed/36071548
http://dx.doi.org/10.1111/jcmm.17541
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author Liu, Peng
Wang, Shuya
Wang, Guangxin
Zhao, Mingming
Du, Fengli
Li, Kaiyuan
Wang, Lei
Wu, Huihui
Chen, Jiamin
Yang, Yang
Su, Guohai
author_facet Liu, Peng
Wang, Shuya
Wang, Guangxin
Zhao, Mingming
Du, Fengli
Li, Kaiyuan
Wang, Lei
Wu, Huihui
Chen, Jiamin
Yang, Yang
Su, Guohai
author_sort Liu, Peng
collection PubMed
description Atherosclerosis is a complex pathological process involving macrophages, endothelial cells and vascular smooth muscle cells that can lead to ischemic heart disease; however, the mechanisms underlying cell‐to‐cell communication in atherosclerosis are poorly understood. In this study, we focused on the role of exosomal miRNAs in crosstalk between macrophages and endothelial cells and explored the rarely studied molecular mechanisms involved. Our in vitro result showed that macrophage‐derived exosomal miR‐4532 significantly disrupted human umbilical vein endothelial cells (HUVECs) function by targeting SP1 and downstream NF‐κB P65 activation. In turn, increased endothelin‐1 (ET‐1), intercellular cell adhesion molecule‐1 (ICAM‐1) and vascular cell adhesion molecule‐1 (VCAM‐1) and decreased endothelial nitric oxide synthase (eNOS) expression in HUVECs increased attraction of macrophages, exacerbating foam cell formation and transfer of exosomal miR‐4532 to HUVECs. MiR‐4532 overexpression significantly promoted endothelial injury and pretreatment with an inhibitor of miR‐4532 or GW4869 (exosome inhibitor) could reverse this injury. In conclusion, our data reveal that exosomes have a critical role in crosstalk between HUVECs and macrophages. Further, exosomal miR‐4532 transferred from macrophages to HUVECs and targeting specificity protein 1 (SP1) may be a novel therapeutic target in patients with atherosclerosis.
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spelling pubmed-95751092022-10-17 Macrophage‐derived exosomal miR‐4532 promotes endothelial cells injury by targeting SP1 and NF‐κB P65 signalling activation Liu, Peng Wang, Shuya Wang, Guangxin Zhao, Mingming Du, Fengli Li, Kaiyuan Wang, Lei Wu, Huihui Chen, Jiamin Yang, Yang Su, Guohai J Cell Mol Med Original Articles Atherosclerosis is a complex pathological process involving macrophages, endothelial cells and vascular smooth muscle cells that can lead to ischemic heart disease; however, the mechanisms underlying cell‐to‐cell communication in atherosclerosis are poorly understood. In this study, we focused on the role of exosomal miRNAs in crosstalk between macrophages and endothelial cells and explored the rarely studied molecular mechanisms involved. Our in vitro result showed that macrophage‐derived exosomal miR‐4532 significantly disrupted human umbilical vein endothelial cells (HUVECs) function by targeting SP1 and downstream NF‐κB P65 activation. In turn, increased endothelin‐1 (ET‐1), intercellular cell adhesion molecule‐1 (ICAM‐1) and vascular cell adhesion molecule‐1 (VCAM‐1) and decreased endothelial nitric oxide synthase (eNOS) expression in HUVECs increased attraction of macrophages, exacerbating foam cell formation and transfer of exosomal miR‐4532 to HUVECs. MiR‐4532 overexpression significantly promoted endothelial injury and pretreatment with an inhibitor of miR‐4532 or GW4869 (exosome inhibitor) could reverse this injury. In conclusion, our data reveal that exosomes have a critical role in crosstalk between HUVECs and macrophages. Further, exosomal miR‐4532 transferred from macrophages to HUVECs and targeting specificity protein 1 (SP1) may be a novel therapeutic target in patients with atherosclerosis. John Wiley and Sons Inc. 2022-09-07 2022-10 /pmc/articles/PMC9575109/ /pubmed/36071548 http://dx.doi.org/10.1111/jcmm.17541 Text en © 2022 The Authors. Journal of Cellular and Molecular Medicine published by Foundation for Cellular and Molecular Medicine and John Wiley & Sons Ltd. https://creativecommons.org/licenses/by/4.0/This is an open access article under the terms of the http://creativecommons.org/licenses/by/4.0/ (https://creativecommons.org/licenses/by/4.0/) License, which permits use, distribution and reproduction in any medium, provided the original work is properly cited.
spellingShingle Original Articles
Liu, Peng
Wang, Shuya
Wang, Guangxin
Zhao, Mingming
Du, Fengli
Li, Kaiyuan
Wang, Lei
Wu, Huihui
Chen, Jiamin
Yang, Yang
Su, Guohai
Macrophage‐derived exosomal miR‐4532 promotes endothelial cells injury by targeting SP1 and NF‐κB P65 signalling activation
title Macrophage‐derived exosomal miR‐4532 promotes endothelial cells injury by targeting SP1 and NF‐κB P65 signalling activation
title_full Macrophage‐derived exosomal miR‐4532 promotes endothelial cells injury by targeting SP1 and NF‐κB P65 signalling activation
title_fullStr Macrophage‐derived exosomal miR‐4532 promotes endothelial cells injury by targeting SP1 and NF‐κB P65 signalling activation
title_full_unstemmed Macrophage‐derived exosomal miR‐4532 promotes endothelial cells injury by targeting SP1 and NF‐κB P65 signalling activation
title_short Macrophage‐derived exosomal miR‐4532 promotes endothelial cells injury by targeting SP1 and NF‐κB P65 signalling activation
title_sort macrophage‐derived exosomal mir‐4532 promotes endothelial cells injury by targeting sp1 and nf‐κb p65 signalling activation
topic Original Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9575109/
https://www.ncbi.nlm.nih.gov/pubmed/36071548
http://dx.doi.org/10.1111/jcmm.17541
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