Cargando…

Punicalagin Attenuates Disturbed Flow-Induced Vascular Dysfunction by Inhibiting Force-Specific Activation of Smad1/5

BACKGROUND: Pathophysiological vascular remodeling in response to disturbed flow with low and oscillatory shear stress (OSS) plays important roles in atherosclerosis progression. Pomegranate extraction (PE) was reported having anti-atherogenic effects. However, whether it can exert a beneficial effe...

Descripción completa

Detalles Bibliográficos
Autores principales: Anwaier, Gulinigaer, Lian, Guan, Ma, Gui-Zhi, Shen, Wan-Li, Lee, Chih-I, Lee, Pei-Ling, Chang, Zhan-Ying, Wang, Yun-Xia, Tian, Xiao-Yu, Gao, Xiao-Li, Chiu, Jeng-Jiann, Qi, Rong
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8273543/
https://www.ncbi.nlm.nih.gov/pubmed/34262908
http://dx.doi.org/10.3389/fcell.2021.697539
_version_ 1783721391581822976
author Anwaier, Gulinigaer
Lian, Guan
Ma, Gui-Zhi
Shen, Wan-Li
Lee, Chih-I
Lee, Pei-Ling
Chang, Zhan-Ying
Wang, Yun-Xia
Tian, Xiao-Yu
Gao, Xiao-Li
Chiu, Jeng-Jiann
Qi, Rong
author_facet Anwaier, Gulinigaer
Lian, Guan
Ma, Gui-Zhi
Shen, Wan-Li
Lee, Chih-I
Lee, Pei-Ling
Chang, Zhan-Ying
Wang, Yun-Xia
Tian, Xiao-Yu
Gao, Xiao-Li
Chiu, Jeng-Jiann
Qi, Rong
author_sort Anwaier, Gulinigaer
collection PubMed
description BACKGROUND: Pathophysiological vascular remodeling in response to disturbed flow with low and oscillatory shear stress (OSS) plays important roles in atherosclerosis progression. Pomegranate extraction (PE) was reported having anti-atherogenic effects. However, whether it can exert a beneficial effect against disturbed flow-induced pathophysiological vascular remodeling to inhibit atherosclerosis remains unclear. The present study aims at investigating the anti-atherogenic effects of pomegranate peel polyphenols (PPP) extraction and its purified compound punicalagin (PU), as well as their protective effects on disturbed flow-induced vascular dysfunction and their underlying molecular mechanisms. METHODS: The anti-atherogenic effects of PPP/PU were examined on low-density lipoprotein receptor knockout mice fed with a high fat diet. The vaso-protective effects of PPP/PU were examined in rat aortas using myograph assay. A combination of in vivo experiments on rats and in vitro flow system with human endothelial cells (ECs) was used to investigate the pharmacological actions of PPP/PU on EC dysfunction induced by disturbed flow. In addition, the effects of PPP/PU on vascular smooth muscle cell (VSMC) dysfunction were also examined. RESULTS: PU is the effective component in PPP against atherosclerosis. PPP/PU evoked endothelium-dependent relaxation in rat aortas. PPP/PU inhibited the activation of Smad1/5 in the EC layers at post-stenotic regions of rat aortas exposed to disturbed flow with OSS. PPP/PU suppressed OSS-induced expression of cell cycle regulatory and pro-inflammatory genes in ECs. Moreover, PPP/PU inhibited inflammation-induced VSMC dysfunction. CONCLUSION: PPP/PU protect against OSS-induced vascular remodeling through inhibiting force-specific activation of Smad1/5 in ECs and this mechanism contributes to their anti-atherogenic effects.
format Online
Article
Text
id pubmed-8273543
institution National Center for Biotechnology Information
language English
publishDate 2021
publisher Frontiers Media S.A.
record_format MEDLINE/PubMed
spelling pubmed-82735432021-07-13 Punicalagin Attenuates Disturbed Flow-Induced Vascular Dysfunction by Inhibiting Force-Specific Activation of Smad1/5 Anwaier, Gulinigaer Lian, Guan Ma, Gui-Zhi Shen, Wan-Li Lee, Chih-I Lee, Pei-Ling Chang, Zhan-Ying Wang, Yun-Xia Tian, Xiao-Yu Gao, Xiao-Li Chiu, Jeng-Jiann Qi, Rong Front Cell Dev Biol Cell and Developmental Biology BACKGROUND: Pathophysiological vascular remodeling in response to disturbed flow with low and oscillatory shear stress (OSS) plays important roles in atherosclerosis progression. Pomegranate extraction (PE) was reported having anti-atherogenic effects. However, whether it can exert a beneficial effect against disturbed flow-induced pathophysiological vascular remodeling to inhibit atherosclerosis remains unclear. The present study aims at investigating the anti-atherogenic effects of pomegranate peel polyphenols (PPP) extraction and its purified compound punicalagin (PU), as well as their protective effects on disturbed flow-induced vascular dysfunction and their underlying molecular mechanisms. METHODS: The anti-atherogenic effects of PPP/PU were examined on low-density lipoprotein receptor knockout mice fed with a high fat diet. The vaso-protective effects of PPP/PU were examined in rat aortas using myograph assay. A combination of in vivo experiments on rats and in vitro flow system with human endothelial cells (ECs) was used to investigate the pharmacological actions of PPP/PU on EC dysfunction induced by disturbed flow. In addition, the effects of PPP/PU on vascular smooth muscle cell (VSMC) dysfunction were also examined. RESULTS: PU is the effective component in PPP against atherosclerosis. PPP/PU evoked endothelium-dependent relaxation in rat aortas. PPP/PU inhibited the activation of Smad1/5 in the EC layers at post-stenotic regions of rat aortas exposed to disturbed flow with OSS. PPP/PU suppressed OSS-induced expression of cell cycle regulatory and pro-inflammatory genes in ECs. Moreover, PPP/PU inhibited inflammation-induced VSMC dysfunction. CONCLUSION: PPP/PU protect against OSS-induced vascular remodeling through inhibiting force-specific activation of Smad1/5 in ECs and this mechanism contributes to their anti-atherogenic effects. Frontiers Media S.A. 2021-06-28 /pmc/articles/PMC8273543/ /pubmed/34262908 http://dx.doi.org/10.3389/fcell.2021.697539 Text en Copyright © 2021 Anwaier, Lian, Ma, Shen, Lee, Lee, Chang, Wang, Tian, Gao, Chiu and Qi. https://creativecommons.org/licenses/by/4.0/This is an open-access article distributed under the terms of the Creative Commons Attribution License (CC BY). The use, distribution or reproduction in other forums is permitted, provided the original author(s) and the copyright owner(s) are credited and that the original publication in this journal is cited, in accordance with accepted academic practice. No use, distribution or reproduction is permitted which does not comply with these terms.
spellingShingle Cell and Developmental Biology
Anwaier, Gulinigaer
Lian, Guan
Ma, Gui-Zhi
Shen, Wan-Li
Lee, Chih-I
Lee, Pei-Ling
Chang, Zhan-Ying
Wang, Yun-Xia
Tian, Xiao-Yu
Gao, Xiao-Li
Chiu, Jeng-Jiann
Qi, Rong
Punicalagin Attenuates Disturbed Flow-Induced Vascular Dysfunction by Inhibiting Force-Specific Activation of Smad1/5
title Punicalagin Attenuates Disturbed Flow-Induced Vascular Dysfunction by Inhibiting Force-Specific Activation of Smad1/5
title_full Punicalagin Attenuates Disturbed Flow-Induced Vascular Dysfunction by Inhibiting Force-Specific Activation of Smad1/5
title_fullStr Punicalagin Attenuates Disturbed Flow-Induced Vascular Dysfunction by Inhibiting Force-Specific Activation of Smad1/5
title_full_unstemmed Punicalagin Attenuates Disturbed Flow-Induced Vascular Dysfunction by Inhibiting Force-Specific Activation of Smad1/5
title_short Punicalagin Attenuates Disturbed Flow-Induced Vascular Dysfunction by Inhibiting Force-Specific Activation of Smad1/5
title_sort punicalagin attenuates disturbed flow-induced vascular dysfunction by inhibiting force-specific activation of smad1/5
topic Cell and Developmental Biology
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8273543/
https://www.ncbi.nlm.nih.gov/pubmed/34262908
http://dx.doi.org/10.3389/fcell.2021.697539
work_keys_str_mv AT anwaiergulinigaer punicalaginattenuatesdisturbedflowinducedvasculardysfunctionbyinhibitingforcespecificactivationofsmad15
AT lianguan punicalaginattenuatesdisturbedflowinducedvasculardysfunctionbyinhibitingforcespecificactivationofsmad15
AT maguizhi punicalaginattenuatesdisturbedflowinducedvasculardysfunctionbyinhibitingforcespecificactivationofsmad15
AT shenwanli punicalaginattenuatesdisturbedflowinducedvasculardysfunctionbyinhibitingforcespecificactivationofsmad15
AT leechihi punicalaginattenuatesdisturbedflowinducedvasculardysfunctionbyinhibitingforcespecificactivationofsmad15
AT leepeiling punicalaginattenuatesdisturbedflowinducedvasculardysfunctionbyinhibitingforcespecificactivationofsmad15
AT changzhanying punicalaginattenuatesdisturbedflowinducedvasculardysfunctionbyinhibitingforcespecificactivationofsmad15
AT wangyunxia punicalaginattenuatesdisturbedflowinducedvasculardysfunctionbyinhibitingforcespecificactivationofsmad15
AT tianxiaoyu punicalaginattenuatesdisturbedflowinducedvasculardysfunctionbyinhibitingforcespecificactivationofsmad15
AT gaoxiaoli punicalaginattenuatesdisturbedflowinducedvasculardysfunctionbyinhibitingforcespecificactivationofsmad15
AT chiujengjiann punicalaginattenuatesdisturbedflowinducedvasculardysfunctionbyinhibitingforcespecificactivationofsmad15
AT qirong punicalaginattenuatesdisturbedflowinducedvasculardysfunctionbyinhibitingforcespecificactivationofsmad15