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Angiogenic and Antiangiogenic mechanisms of high density lipoprotein from healthy subjects and coronary artery diseases patients

Normal high-density lipoprotein (nHDL) in normal, healthy subjects is able to promote angiogenesis, but the mechanism remains incompletely understood. HDL from patients with coronary artery disease may undergo a variety of oxidative modifications, rendering it dysfunctional; whether the angiogenic e...

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Autores principales: Li, Hua-Ming, Mo, Zhi-Wei, Peng, Yue-Ming, Li, Yan, Dai, Wei-Ping, Yuan, Hai-Yun, Chang, Feng-Jun, Wang, Tian-Tian, Wang, Mian, Hu, Kun-Hua, Li, Xiao-Di, Ning, Da-Sheng, Chen, Ya-Ting, Song, Yuan-Kai, Lu, Xi-Lin, Pei, Zhong, Dong, Yu-Gang, Wang, Zhi-Ping, Zhang, Xi, Xu, Ying-Qi, Wang, Shen-Ming, Ou, Zhi-Jun, Ou, Jing-Song
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Elsevier 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7364160/
https://www.ncbi.nlm.nih.gov/pubmed/32863238
http://dx.doi.org/10.1016/j.redox.2020.101642
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author Li, Hua-Ming
Mo, Zhi-Wei
Peng, Yue-Ming
Li, Yan
Dai, Wei-Ping
Yuan, Hai-Yun
Chang, Feng-Jun
Wang, Tian-Tian
Wang, Mian
Hu, Kun-Hua
Li, Xiao-Di
Ning, Da-Sheng
Chen, Ya-Ting
Song, Yuan-Kai
Lu, Xi-Lin
Pei, Zhong
Dong, Yu-Gang
Wang, Zhi-Ping
Zhang, Xi
Xu, Ying-Qi
Wang, Shen-Ming
Ou, Zhi-Jun
Ou, Jing-Song
author_facet Li, Hua-Ming
Mo, Zhi-Wei
Peng, Yue-Ming
Li, Yan
Dai, Wei-Ping
Yuan, Hai-Yun
Chang, Feng-Jun
Wang, Tian-Tian
Wang, Mian
Hu, Kun-Hua
Li, Xiao-Di
Ning, Da-Sheng
Chen, Ya-Ting
Song, Yuan-Kai
Lu, Xi-Lin
Pei, Zhong
Dong, Yu-Gang
Wang, Zhi-Ping
Zhang, Xi
Xu, Ying-Qi
Wang, Shen-Ming
Ou, Zhi-Jun
Ou, Jing-Song
author_sort Li, Hua-Ming
collection PubMed
description Normal high-density lipoprotein (nHDL) in normal, healthy subjects is able to promote angiogenesis, but the mechanism remains incompletely understood. HDL from patients with coronary artery disease may undergo a variety of oxidative modifications, rendering it dysfunctional; whether the angiogenic effect is mitigated by such dysfunctional HDL (dHDL) is unknown. We hypothesized that dHDL compromises angiogenesis. The angiogenic effects of nHDL and dHDL were assessed using endothelial cell culture, endothelial sprouts from cardiac tissue from C57BL/6 mice, zebrafish model for vascular growth and a model of impaired vascular growth in hypercholesterolemic low-density lipoprotein receptor null(LDLr(-/-))mice. MiRNA microarray and proteomic analyses were used to determine the mechanisms. Lipid hydroperoxides were greater in dHDL than in nHDL. While nHDL stimulated angiogenesis, dHDL attenuated these responses. Protein and miRNA profiles in endothelial cells differed between nHDL and dHDL treatments. Moreover, nHDL suppressed miR-24-3p expression to increase vinculin expression resulting in nitric oxide (NO) production, whereas dHDL delivered miR-24-3p to inhibit vinculin expression leading to superoxide anion (O(2)(•-)) generation via scavenger receptor class B type 1. Vinculin was required for endothelial nitric oxide synthase (eNOS) expression and activation and modulated the PI3K/AKT/eNOS and ERK1/2 signaling pathways to regulate nHDL- and VEGF-induced angiogenesis. Vinculin overexpression or miR-24-3p inhibition reversed dHDL-impaired angiogenesis. The expressions of vinculin and eNOS and angiogenesis were decreased, but the expression of miR-24-3p and lipid hydroperoxides in HDL were increased in the ischemic lower limbs of hypercholesterolemic LDLr(-/-) mice. Overexpression of vinculin or miR-24-3p antagomir restored the impaired-angiogenesis in ischemic hypercholesterolemic LDLr(-/-) mice. Collectively, nHDL stimulated vinculin and eNOS expression to increase NO production by suppressing miR-24-3p to induce angiogenesis, whereas dHDL inhibited vinculin and eNOS expression to enhance O(2)(•-) generation by delivering miR-24-3p to impair angiogenesis, and that vinculin and miR-24-3p may be therapeutic targets for dHDL-impaired angiogenesis.
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spelling pubmed-73641602020-07-20 Angiogenic and Antiangiogenic mechanisms of high density lipoprotein from healthy subjects and coronary artery diseases patients Li, Hua-Ming Mo, Zhi-Wei Peng, Yue-Ming Li, Yan Dai, Wei-Ping Yuan, Hai-Yun Chang, Feng-Jun Wang, Tian-Tian Wang, Mian Hu, Kun-Hua Li, Xiao-Di Ning, Da-Sheng Chen, Ya-Ting Song, Yuan-Kai Lu, Xi-Lin Pei, Zhong Dong, Yu-Gang Wang, Zhi-Ping Zhang, Xi Xu, Ying-Qi Wang, Shen-Ming Ou, Zhi-Jun Ou, Jing-Song Redox Biol Research Paper Normal high-density lipoprotein (nHDL) in normal, healthy subjects is able to promote angiogenesis, but the mechanism remains incompletely understood. HDL from patients with coronary artery disease may undergo a variety of oxidative modifications, rendering it dysfunctional; whether the angiogenic effect is mitigated by such dysfunctional HDL (dHDL) is unknown. We hypothesized that dHDL compromises angiogenesis. The angiogenic effects of nHDL and dHDL were assessed using endothelial cell culture, endothelial sprouts from cardiac tissue from C57BL/6 mice, zebrafish model for vascular growth and a model of impaired vascular growth in hypercholesterolemic low-density lipoprotein receptor null(LDLr(-/-))mice. MiRNA microarray and proteomic analyses were used to determine the mechanisms. Lipid hydroperoxides were greater in dHDL than in nHDL. While nHDL stimulated angiogenesis, dHDL attenuated these responses. Protein and miRNA profiles in endothelial cells differed between nHDL and dHDL treatments. Moreover, nHDL suppressed miR-24-3p expression to increase vinculin expression resulting in nitric oxide (NO) production, whereas dHDL delivered miR-24-3p to inhibit vinculin expression leading to superoxide anion (O(2)(•-)) generation via scavenger receptor class B type 1. Vinculin was required for endothelial nitric oxide synthase (eNOS) expression and activation and modulated the PI3K/AKT/eNOS and ERK1/2 signaling pathways to regulate nHDL- and VEGF-induced angiogenesis. Vinculin overexpression or miR-24-3p inhibition reversed dHDL-impaired angiogenesis. The expressions of vinculin and eNOS and angiogenesis were decreased, but the expression of miR-24-3p and lipid hydroperoxides in HDL were increased in the ischemic lower limbs of hypercholesterolemic LDLr(-/-) mice. Overexpression of vinculin or miR-24-3p antagomir restored the impaired-angiogenesis in ischemic hypercholesterolemic LDLr(-/-) mice. Collectively, nHDL stimulated vinculin and eNOS expression to increase NO production by suppressing miR-24-3p to induce angiogenesis, whereas dHDL inhibited vinculin and eNOS expression to enhance O(2)(•-) generation by delivering miR-24-3p to impair angiogenesis, and that vinculin and miR-24-3p may be therapeutic targets for dHDL-impaired angiogenesis. Elsevier 2020-07-09 /pmc/articles/PMC7364160/ /pubmed/32863238 http://dx.doi.org/10.1016/j.redox.2020.101642 Text en © 2020 The Author(s) http://creativecommons.org/licenses/by-nc-nd/4.0/ This is an open access article under the CC BY-NC-ND license (http://creativecommons.org/licenses/by-nc-nd/4.0/).
spellingShingle Research Paper
Li, Hua-Ming
Mo, Zhi-Wei
Peng, Yue-Ming
Li, Yan
Dai, Wei-Ping
Yuan, Hai-Yun
Chang, Feng-Jun
Wang, Tian-Tian
Wang, Mian
Hu, Kun-Hua
Li, Xiao-Di
Ning, Da-Sheng
Chen, Ya-Ting
Song, Yuan-Kai
Lu, Xi-Lin
Pei, Zhong
Dong, Yu-Gang
Wang, Zhi-Ping
Zhang, Xi
Xu, Ying-Qi
Wang, Shen-Ming
Ou, Zhi-Jun
Ou, Jing-Song
Angiogenic and Antiangiogenic mechanisms of high density lipoprotein from healthy subjects and coronary artery diseases patients
title Angiogenic and Antiangiogenic mechanisms of high density lipoprotein from healthy subjects and coronary artery diseases patients
title_full Angiogenic and Antiangiogenic mechanisms of high density lipoprotein from healthy subjects and coronary artery diseases patients
title_fullStr Angiogenic and Antiangiogenic mechanisms of high density lipoprotein from healthy subjects and coronary artery diseases patients
title_full_unstemmed Angiogenic and Antiangiogenic mechanisms of high density lipoprotein from healthy subjects and coronary artery diseases patients
title_short Angiogenic and Antiangiogenic mechanisms of high density lipoprotein from healthy subjects and coronary artery diseases patients
title_sort angiogenic and antiangiogenic mechanisms of high density lipoprotein from healthy subjects and coronary artery diseases patients
topic Research Paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7364160/
https://www.ncbi.nlm.nih.gov/pubmed/32863238
http://dx.doi.org/10.1016/j.redox.2020.101642
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