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Hawthorn leaves flavonoids attenuate cardiac remodeling induced by simulated microgravity

CONTEXT: Hawthorn leaves are a kind of widely used medicinal plant in China. The major ingredient, hawthorn leaves flavonoids (HLF), have cardiotonic, cardioprotective, and vascular protective effects. OBJECTIVE: The study evaluated the protective role of HLF in cardiac remodelling and the underlyin...

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Autores principales: Liu, Tian, Ma, Yuqi, Zhao, Hui, Wang, Pengli, Niu, Yan, Hu, Yuehuan, Shen, Xi, Zhang, Mingxia, Yan, Bing, Yu, Jun
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Taylor & Francis 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10132252/
https://www.ncbi.nlm.nih.gov/pubmed/37096968
http://dx.doi.org/10.1080/13880209.2023.2203194
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author Liu, Tian
Ma, Yuqi
Zhao, Hui
Wang, Pengli
Niu, Yan
Hu, Yuehuan
Shen, Xi
Zhang, Mingxia
Yan, Bing
Yu, Jun
author_facet Liu, Tian
Ma, Yuqi
Zhao, Hui
Wang, Pengli
Niu, Yan
Hu, Yuehuan
Shen, Xi
Zhang, Mingxia
Yan, Bing
Yu, Jun
author_sort Liu, Tian
collection PubMed
description CONTEXT: Hawthorn leaves are a kind of widely used medicinal plant in China. The major ingredient, hawthorn leaves flavonoids (HLF), have cardiotonic, cardioprotective, and vascular protective effects. OBJECTIVE: The study evaluated the protective role of HLF in cardiac remodelling and the underlying mechanisms under simulated microgravity by hindlimb unloading rats. MATERIALS AND METHODS: Adult male Sprague-Dawley rats were divided into control, HLF, HU (hindlimb unloading) and HU + HLF groups (n = 8). After HU and daily intragastric administration at the dose of 100 mg/kg/d for 8 weeks, cardiac function and structure were evaluated by biochemical indices and histopathology. We identified the main active compounds and mechanisms involved in the cardioprotective effects of HLF via bioinformatics and molecular docking analysis, and relative signalling pathway activity was verified by Western blot. RESULTS: HLF treatment could reverse the HU-induced decline in LV-EF (HU, 55.13% ± 0.98% vs. HU + HLF, 71.16% ± 5.08%), LV-FS (HU, 29.44% ± 0.67% vs. HU + HLF, 41.62% ± 4.34%) and LV mass (HU, 667.99 ± 65.69 mg vs. HU + HLF, 840.02 ± 73.00 mg). Furthermore, HLF treatment significantly increased NPRA expression by 135.39%, PKG by 51.27%, decreased PDE5A by 20.03%, NFATc1 by 41.68% and Rcan1.4 by 54.22%. CONCLUSIONS: HLF plays a protective effect on HU-induced cardiac remodelling by enhancing NPRA-cGMP-PKG pathway and suppressing the calcineurin-NFAT pathway, which provides a theoretical basis for use in clinical therapies.
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spelling pubmed-101322522023-04-27 Hawthorn leaves flavonoids attenuate cardiac remodeling induced by simulated microgravity Liu, Tian Ma, Yuqi Zhao, Hui Wang, Pengli Niu, Yan Hu, Yuehuan Shen, Xi Zhang, Mingxia Yan, Bing Yu, Jun Pharm Biol Research Article CONTEXT: Hawthorn leaves are a kind of widely used medicinal plant in China. The major ingredient, hawthorn leaves flavonoids (HLF), have cardiotonic, cardioprotective, and vascular protective effects. OBJECTIVE: The study evaluated the protective role of HLF in cardiac remodelling and the underlying mechanisms under simulated microgravity by hindlimb unloading rats. MATERIALS AND METHODS: Adult male Sprague-Dawley rats were divided into control, HLF, HU (hindlimb unloading) and HU + HLF groups (n = 8). After HU and daily intragastric administration at the dose of 100 mg/kg/d for 8 weeks, cardiac function and structure were evaluated by biochemical indices and histopathology. We identified the main active compounds and mechanisms involved in the cardioprotective effects of HLF via bioinformatics and molecular docking analysis, and relative signalling pathway activity was verified by Western blot. RESULTS: HLF treatment could reverse the HU-induced decline in LV-EF (HU, 55.13% ± 0.98% vs. HU + HLF, 71.16% ± 5.08%), LV-FS (HU, 29.44% ± 0.67% vs. HU + HLF, 41.62% ± 4.34%) and LV mass (HU, 667.99 ± 65.69 mg vs. HU + HLF, 840.02 ± 73.00 mg). Furthermore, HLF treatment significantly increased NPRA expression by 135.39%, PKG by 51.27%, decreased PDE5A by 20.03%, NFATc1 by 41.68% and Rcan1.4 by 54.22%. CONCLUSIONS: HLF plays a protective effect on HU-induced cardiac remodelling by enhancing NPRA-cGMP-PKG pathway and suppressing the calcineurin-NFAT pathway, which provides a theoretical basis for use in clinical therapies. Taylor & Francis 2023-04-25 /pmc/articles/PMC10132252/ /pubmed/37096968 http://dx.doi.org/10.1080/13880209.2023.2203194 Text en © 2023 The Author(s). Published by Informa UK Limited, trading as Taylor & Francis Group. https://creativecommons.org/licenses/by-nc/4.0/This is an Open Access article distributed under the terms of the Creative Commons Attribution-NonCommercial License (http://creativecommons.org/licenses/by-nc/4.0/ (https://creativecommons.org/licenses/by-nc/4.0/) ), which permits unrestricted non-commercial use, distribution, and reproduction in any medium, provided the original work is properly cited. The terms on which this article has been published allow the posting of the Accepted Manuscript in a repository by the author(s) or with their consent.
spellingShingle Research Article
Liu, Tian
Ma, Yuqi
Zhao, Hui
Wang, Pengli
Niu, Yan
Hu, Yuehuan
Shen, Xi
Zhang, Mingxia
Yan, Bing
Yu, Jun
Hawthorn leaves flavonoids attenuate cardiac remodeling induced by simulated microgravity
title Hawthorn leaves flavonoids attenuate cardiac remodeling induced by simulated microgravity
title_full Hawthorn leaves flavonoids attenuate cardiac remodeling induced by simulated microgravity
title_fullStr Hawthorn leaves flavonoids attenuate cardiac remodeling induced by simulated microgravity
title_full_unstemmed Hawthorn leaves flavonoids attenuate cardiac remodeling induced by simulated microgravity
title_short Hawthorn leaves flavonoids attenuate cardiac remodeling induced by simulated microgravity
title_sort hawthorn leaves flavonoids attenuate cardiac remodeling induced by simulated microgravity
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10132252/
https://www.ncbi.nlm.nih.gov/pubmed/37096968
http://dx.doi.org/10.1080/13880209.2023.2203194
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