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Regulation of endothelial ferroptosis by SESN1 in atherosclerosis and its related mechanism

Background: Atherosclerosis (AS) is a disease characterized by the disorder of lipid metabolism and the formation of atherosclerotic plaques in the arterial wall, leading to arterial stenosis. Sestrins 1 (SESN1) plays an important regulatory role in AS, but the specific regulatory mechanism is still...

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Autores principales: Gao, Feng, Zhang, Bin, Sun, Zhanfa, Gao, Yuan, Liu, Chunyi, Dou, Xueyong, Tong, Haokun, Wang, Rui
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Impact Journals 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10292895/
https://www.ncbi.nlm.nih.gov/pubmed/37294547
http://dx.doi.org/10.18632/aging.204777
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author Gao, Feng
Zhang, Bin
Sun, Zhanfa
Gao, Yuan
Liu, Chunyi
Dou, Xueyong
Tong, Haokun
Wang, Rui
author_facet Gao, Feng
Zhang, Bin
Sun, Zhanfa
Gao, Yuan
Liu, Chunyi
Dou, Xueyong
Tong, Haokun
Wang, Rui
author_sort Gao, Feng
collection PubMed
description Background: Atherosclerosis (AS) is a disease characterized by the disorder of lipid metabolism and the formation of atherosclerotic plaques in the arterial wall, leading to arterial stenosis. Sestrins 1 (SESN1) plays an important regulatory role in AS, but the specific regulatory mechanism is still unclear. Methods: ApoE−/− mouse models of AS were constructed. After overexpressing SESN1, oil red O staining was used to detect the degree of aortic plaque. HE staining detected the endothelial damage of the surrounding tissues. ELISA was used to detect the levels of vascular inflammation and oxidative stress. The iron metabolism in vascular tissues was detected by immunofluorescence. The expressions of SESN1 and ferroptosis-related proteins were detected by western blot. In the oxidized low-density lipoprotein (ox-LDL)-induced injury model in human umbilical vein endothelial cells (HUVECs), CCK8, ELISA, immunofluorescence and western blot were respectively used to detect cell viability, inflammatory response, oxidative stress and ferroptosis. The regulatory mechanism of SESN1 on endothelial ferroptosis in AS was further explored following the addition of P21 inhibitor UC2288. Results: Overexpression of SESN1 could inhibit the extent of the plaque and reduce the endothelial injury of plaque tissues in AS mice. In both mouse and cell models of AS, SESN1 overexpression inhibited inflammatory response, oxidative stress response, and endothelial ferroptosis. The inhibitory effect of SESN1 on endothelial ferroptosis might be achieved through activation of P21. Conclusion: SESN1 overexpression plays an inhibitory role in vascular endothelial ferroptosis through the activation of P21 in AS.
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spelling pubmed-102928952023-06-27 Regulation of endothelial ferroptosis by SESN1 in atherosclerosis and its related mechanism Gao, Feng Zhang, Bin Sun, Zhanfa Gao, Yuan Liu, Chunyi Dou, Xueyong Tong, Haokun Wang, Rui Aging (Albany NY) Research Paper Background: Atherosclerosis (AS) is a disease characterized by the disorder of lipid metabolism and the formation of atherosclerotic plaques in the arterial wall, leading to arterial stenosis. Sestrins 1 (SESN1) plays an important regulatory role in AS, but the specific regulatory mechanism is still unclear. Methods: ApoE−/− mouse models of AS were constructed. After overexpressing SESN1, oil red O staining was used to detect the degree of aortic plaque. HE staining detected the endothelial damage of the surrounding tissues. ELISA was used to detect the levels of vascular inflammation and oxidative stress. The iron metabolism in vascular tissues was detected by immunofluorescence. The expressions of SESN1 and ferroptosis-related proteins were detected by western blot. In the oxidized low-density lipoprotein (ox-LDL)-induced injury model in human umbilical vein endothelial cells (HUVECs), CCK8, ELISA, immunofluorescence and western blot were respectively used to detect cell viability, inflammatory response, oxidative stress and ferroptosis. The regulatory mechanism of SESN1 on endothelial ferroptosis in AS was further explored following the addition of P21 inhibitor UC2288. Results: Overexpression of SESN1 could inhibit the extent of the plaque and reduce the endothelial injury of plaque tissues in AS mice. In both mouse and cell models of AS, SESN1 overexpression inhibited inflammatory response, oxidative stress response, and endothelial ferroptosis. The inhibitory effect of SESN1 on endothelial ferroptosis might be achieved through activation of P21. Conclusion: SESN1 overexpression plays an inhibitory role in vascular endothelial ferroptosis through the activation of P21 in AS. Impact Journals 2023-06-08 /pmc/articles/PMC10292895/ /pubmed/37294547 http://dx.doi.org/10.18632/aging.204777 Text en Copyright: © 2023 Gao et al. https://creativecommons.org/licenses/by/3.0/This is an open access article distributed under the terms of the Creative Commons Attribution License (https://creativecommons.org/licenses/by/3.0/) (CC BY 3.0), which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.
spellingShingle Research Paper
Gao, Feng
Zhang, Bin
Sun, Zhanfa
Gao, Yuan
Liu, Chunyi
Dou, Xueyong
Tong, Haokun
Wang, Rui
Regulation of endothelial ferroptosis by SESN1 in atherosclerosis and its related mechanism
title Regulation of endothelial ferroptosis by SESN1 in atherosclerosis and its related mechanism
title_full Regulation of endothelial ferroptosis by SESN1 in atherosclerosis and its related mechanism
title_fullStr Regulation of endothelial ferroptosis by SESN1 in atherosclerosis and its related mechanism
title_full_unstemmed Regulation of endothelial ferroptosis by SESN1 in atherosclerosis and its related mechanism
title_short Regulation of endothelial ferroptosis by SESN1 in atherosclerosis and its related mechanism
title_sort regulation of endothelial ferroptosis by sesn1 in atherosclerosis and its related mechanism
topic Research Paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10292895/
https://www.ncbi.nlm.nih.gov/pubmed/37294547
http://dx.doi.org/10.18632/aging.204777
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