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Modified Renshen Yangrong decoction enhances angiogenesis in ischemic stroke through promotion of MicroRNA‐210 expression by regulating the HIF/VEGF/Notch signaling pathway

OBJECTIVE: This study aims to investigate the efficacy of modified Ginseng Yangrong decoction (GSYRD) promoting angiogenesis after ischemic stroke. METHODS: In an in vivo study, rats that survived surgery were allocated into four groups: the control group and model group were treated with normal sal...

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Autores principales: Liang, Ce, Zhang, Teng, Shi, Xu‐Liang, Jia, Lin, Wang, Ya‐Li, Yan, Cui‐Huan
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley and Sons Inc. 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8413772/
https://www.ncbi.nlm.nih.gov/pubmed/34337881
http://dx.doi.org/10.1002/brb3.2295
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author Liang, Ce
Zhang, Teng
Shi, Xu‐Liang
Jia, Lin
Wang, Ya‐Li
Yan, Cui‐Huan
author_facet Liang, Ce
Zhang, Teng
Shi, Xu‐Liang
Jia, Lin
Wang, Ya‐Li
Yan, Cui‐Huan
author_sort Liang, Ce
collection PubMed
description OBJECTIVE: This study aims to investigate the efficacy of modified Ginseng Yangrong decoction (GSYRD) promoting angiogenesis after ischemic stroke. METHODS: In an in vivo study, rats that survived surgery were allocated into four groups: the control group and model group were treated with normal saline, the GSYRD group was treated with 18.9 mg/kg of GSYRD daily, and the positive control group was treated with Tongxinluo (TXL) (1 g/kg/d). At the end of the seven‐day treatment, the area of cerebral infarction, the expression changes of miRNA‐210 and ephrin A3 were determined. In an in vitro study, HUVECs were divided into a normal control serum group (NC group), normal control serum OGD group (Oxygen Glucose Deprivation group) (OGD group), OGD + drug‐containing serum group (OGD+GSYRD group), and OGD + drug‐containing serum + ES group (Endostatin group) (OGD+GSYRD+ES group). The cells in all groups except the NC group were cultured in a sugar‐free DMEM medium under hypoxia for 48 h. Cell proliferation, angiogenic structure formation ability, the expression changes of miRNA‐210, ephrin A3, and the HIF/VEGF/Notch signaling pathway‐related molecules were determined. RESULTS: In vivo, GSYRD significantly reduced infarct size (p < .01), the expression of miRNA‐210 and ephrin A3 were decreased in the GSYRD group (p < .05). In vitro, the cell proliferation and tube formation ability were significantly increased in the GSYRD group (p < .05), and the expression of miRNA‐210 and ephrin A3 was decreased (p < .05). In addition, in the GSYRD group, the expression of the HIF/VEGF/Notch signaling pathway‐related molecules was significantly increased (p < .01 or p < .05). CONCLUSION: GSYRD promotes cerebral protection following angiogenesis and ischemic brain injury. The specific mechanism was activating the HIF/VEGF/Notch signaling pathway via miRNA‐210.
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spelling pubmed-84137722021-09-07 Modified Renshen Yangrong decoction enhances angiogenesis in ischemic stroke through promotion of MicroRNA‐210 expression by regulating the HIF/VEGF/Notch signaling pathway Liang, Ce Zhang, Teng Shi, Xu‐Liang Jia, Lin Wang, Ya‐Li Yan, Cui‐Huan Brain Behav Original Research OBJECTIVE: This study aims to investigate the efficacy of modified Ginseng Yangrong decoction (GSYRD) promoting angiogenesis after ischemic stroke. METHODS: In an in vivo study, rats that survived surgery were allocated into four groups: the control group and model group were treated with normal saline, the GSYRD group was treated with 18.9 mg/kg of GSYRD daily, and the positive control group was treated with Tongxinluo (TXL) (1 g/kg/d). At the end of the seven‐day treatment, the area of cerebral infarction, the expression changes of miRNA‐210 and ephrin A3 were determined. In an in vitro study, HUVECs were divided into a normal control serum group (NC group), normal control serum OGD group (Oxygen Glucose Deprivation group) (OGD group), OGD + drug‐containing serum group (OGD+GSYRD group), and OGD + drug‐containing serum + ES group (Endostatin group) (OGD+GSYRD+ES group). The cells in all groups except the NC group were cultured in a sugar‐free DMEM medium under hypoxia for 48 h. Cell proliferation, angiogenic structure formation ability, the expression changes of miRNA‐210, ephrin A3, and the HIF/VEGF/Notch signaling pathway‐related molecules were determined. RESULTS: In vivo, GSYRD significantly reduced infarct size (p < .01), the expression of miRNA‐210 and ephrin A3 were decreased in the GSYRD group (p < .05). In vitro, the cell proliferation and tube formation ability were significantly increased in the GSYRD group (p < .05), and the expression of miRNA‐210 and ephrin A3 was decreased (p < .05). In addition, in the GSYRD group, the expression of the HIF/VEGF/Notch signaling pathway‐related molecules was significantly increased (p < .01 or p < .05). CONCLUSION: GSYRD promotes cerebral protection following angiogenesis and ischemic brain injury. The specific mechanism was activating the HIF/VEGF/Notch signaling pathway via miRNA‐210. John Wiley and Sons Inc. 2021-08-01 /pmc/articles/PMC8413772/ /pubmed/34337881 http://dx.doi.org/10.1002/brb3.2295 Text en © 2021 The Authors. Brain and Behavior published by Wiley Periodicals LLC 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 Research
Liang, Ce
Zhang, Teng
Shi, Xu‐Liang
Jia, Lin
Wang, Ya‐Li
Yan, Cui‐Huan
Modified Renshen Yangrong decoction enhances angiogenesis in ischemic stroke through promotion of MicroRNA‐210 expression by regulating the HIF/VEGF/Notch signaling pathway
title Modified Renshen Yangrong decoction enhances angiogenesis in ischemic stroke through promotion of MicroRNA‐210 expression by regulating the HIF/VEGF/Notch signaling pathway
title_full Modified Renshen Yangrong decoction enhances angiogenesis in ischemic stroke through promotion of MicroRNA‐210 expression by regulating the HIF/VEGF/Notch signaling pathway
title_fullStr Modified Renshen Yangrong decoction enhances angiogenesis in ischemic stroke through promotion of MicroRNA‐210 expression by regulating the HIF/VEGF/Notch signaling pathway
title_full_unstemmed Modified Renshen Yangrong decoction enhances angiogenesis in ischemic stroke through promotion of MicroRNA‐210 expression by regulating the HIF/VEGF/Notch signaling pathway
title_short Modified Renshen Yangrong decoction enhances angiogenesis in ischemic stroke through promotion of MicroRNA‐210 expression by regulating the HIF/VEGF/Notch signaling pathway
title_sort modified renshen yangrong decoction enhances angiogenesis in ischemic stroke through promotion of microrna‐210 expression by regulating the hif/vegf/notch signaling pathway
topic Original Research
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8413772/
https://www.ncbi.nlm.nih.gov/pubmed/34337881
http://dx.doi.org/10.1002/brb3.2295
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