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Moderate Autophagy Inhibits Vascular Smooth Muscle Cell Senescence to Stabilize Progressed Atherosclerotic Plaque via the mTORC1/ULK1/ATG13 Signal Pathway

In order to investigate the effects of autophagy induced by rapamycin in the development of atherosclerosis plaque we established murine atherosclerosis model which was induced in ApoE(−/−) mice by high fat and cholesterol diet (HFD) for 16 weeks. Rapamycin and 3-Methyladenine (MA) were used as auto...

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Autores principales: Luo, Zhenli, Xu, Wenhuan, Ma, Sai, Qiao, Hongyu, Gao, Lei, Zhang, Ran, Yang, Bo, Qiu, Ya, Chen, Jiangwei, Zhang, Ming, Tao, Bo, Cao, Feng, Wang, Yabin
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Hindawi 2017
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5497616/
https://www.ncbi.nlm.nih.gov/pubmed/28713484
http://dx.doi.org/10.1155/2017/3018190
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author Luo, Zhenli
Xu, Wenhuan
Ma, Sai
Qiao, Hongyu
Gao, Lei
Zhang, Ran
Yang, Bo
Qiu, Ya
Chen, Jiangwei
Zhang, Ming
Tao, Bo
Cao, Feng
Wang, Yabin
author_facet Luo, Zhenli
Xu, Wenhuan
Ma, Sai
Qiao, Hongyu
Gao, Lei
Zhang, Ran
Yang, Bo
Qiu, Ya
Chen, Jiangwei
Zhang, Ming
Tao, Bo
Cao, Feng
Wang, Yabin
author_sort Luo, Zhenli
collection PubMed
description In order to investigate the effects of autophagy induced by rapamycin in the development of atherosclerosis plaque we established murine atherosclerosis model which was induced in ApoE(−/−) mice by high fat and cholesterol diet (HFD) for 16 weeks. Rapamycin and 3-Methyladenine (MA) were used as autophagy inducer and inhibitor respectively. The plaque areas in aortic artery were detected with HE and Oil Red O staining. Immunohistochemical staining were applied to investigate content of plaque respectively. In contrast to control and 3-MA groups, rapamycin could inhibit atherosclerosis progression. Rapamycin was able to increase collagen content and a-SMA distribution relatively, as well as decrease necrotic core area. Then we used MOVAS and culture with ox-LDL for 72 h to induce smooth muscle-derived foam cell model in vitro. Rapamycin and 3-MA were cultured together respectively. Flow cytometry assay and SA-β-Gal staining experiments were performed to detect survival and senescence of VSMCs. Western blot analysis were utilized to analyze the levels of protein expression. We found that rapamycin could promote ox-LDL-induced VSMCs autophagy survival and alleviate cellular senescence, in comparison to control and 3-MA groups. Western blot analysis showed that rapamycin could upregulate ULK1, ATG13 and downregulate mTORC1 and p53 protein expression.
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spelling pubmed-54976162017-07-16 Moderate Autophagy Inhibits Vascular Smooth Muscle Cell Senescence to Stabilize Progressed Atherosclerotic Plaque via the mTORC1/ULK1/ATG13 Signal Pathway Luo, Zhenli Xu, Wenhuan Ma, Sai Qiao, Hongyu Gao, Lei Zhang, Ran Yang, Bo Qiu, Ya Chen, Jiangwei Zhang, Ming Tao, Bo Cao, Feng Wang, Yabin Oxid Med Cell Longev Research Article In order to investigate the effects of autophagy induced by rapamycin in the development of atherosclerosis plaque we established murine atherosclerosis model which was induced in ApoE(−/−) mice by high fat and cholesterol diet (HFD) for 16 weeks. Rapamycin and 3-Methyladenine (MA) were used as autophagy inducer and inhibitor respectively. The plaque areas in aortic artery were detected with HE and Oil Red O staining. Immunohistochemical staining were applied to investigate content of plaque respectively. In contrast to control and 3-MA groups, rapamycin could inhibit atherosclerosis progression. Rapamycin was able to increase collagen content and a-SMA distribution relatively, as well as decrease necrotic core area. Then we used MOVAS and culture with ox-LDL for 72 h to induce smooth muscle-derived foam cell model in vitro. Rapamycin and 3-MA were cultured together respectively. Flow cytometry assay and SA-β-Gal staining experiments were performed to detect survival and senescence of VSMCs. Western blot analysis were utilized to analyze the levels of protein expression. We found that rapamycin could promote ox-LDL-induced VSMCs autophagy survival and alleviate cellular senescence, in comparison to control and 3-MA groups. Western blot analysis showed that rapamycin could upregulate ULK1, ATG13 and downregulate mTORC1 and p53 protein expression. Hindawi 2017 2017-06-21 /pmc/articles/PMC5497616/ /pubmed/28713484 http://dx.doi.org/10.1155/2017/3018190 Text en Copyright © 2017 Zhenli Luo et al. https://creativecommons.org/licenses/by/4.0/ This is an open access article distributed under the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research Article
Luo, Zhenli
Xu, Wenhuan
Ma, Sai
Qiao, Hongyu
Gao, Lei
Zhang, Ran
Yang, Bo
Qiu, Ya
Chen, Jiangwei
Zhang, Ming
Tao, Bo
Cao, Feng
Wang, Yabin
Moderate Autophagy Inhibits Vascular Smooth Muscle Cell Senescence to Stabilize Progressed Atherosclerotic Plaque via the mTORC1/ULK1/ATG13 Signal Pathway
title Moderate Autophagy Inhibits Vascular Smooth Muscle Cell Senescence to Stabilize Progressed Atherosclerotic Plaque via the mTORC1/ULK1/ATG13 Signal Pathway
title_full Moderate Autophagy Inhibits Vascular Smooth Muscle Cell Senescence to Stabilize Progressed Atherosclerotic Plaque via the mTORC1/ULK1/ATG13 Signal Pathway
title_fullStr Moderate Autophagy Inhibits Vascular Smooth Muscle Cell Senescence to Stabilize Progressed Atherosclerotic Plaque via the mTORC1/ULK1/ATG13 Signal Pathway
title_full_unstemmed Moderate Autophagy Inhibits Vascular Smooth Muscle Cell Senescence to Stabilize Progressed Atherosclerotic Plaque via the mTORC1/ULK1/ATG13 Signal Pathway
title_short Moderate Autophagy Inhibits Vascular Smooth Muscle Cell Senescence to Stabilize Progressed Atherosclerotic Plaque via the mTORC1/ULK1/ATG13 Signal Pathway
title_sort moderate autophagy inhibits vascular smooth muscle cell senescence to stabilize progressed atherosclerotic plaque via the mtorc1/ulk1/atg13 signal pathway
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5497616/
https://www.ncbi.nlm.nih.gov/pubmed/28713484
http://dx.doi.org/10.1155/2017/3018190
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