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Estrogen Attenuates Chronic Stress-Induced Cardiomyopathy by Adaptively Regulating Macrophage Polarizations via β(2)-Adrenergic Receptor Modulation

Clinical demographics have demonstrated that postmenopausal women are predisposed to chronic stress-induced cardiomyopathy (CSC) and this has been associated with the decrease of estrogen. Meanwhile, recent studies have implicated unsolved myocardial proinflammatory responses, which are characterize...

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Autores principales: Hou, Hongjian, Adzika, Gabriel Komla, Wu, Qi, Ma, Tongtong, Ma, Yanhong, Geng, Juan, Shi, Mingjin, Fu, Lu, Rizvi, Ruqayya, Gong, Zheng, Sun, Hong
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8506112/
https://www.ncbi.nlm.nih.gov/pubmed/34650984
http://dx.doi.org/10.3389/fcell.2021.737003
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author Hou, Hongjian
Adzika, Gabriel Komla
Wu, Qi
Ma, Tongtong
Ma, Yanhong
Geng, Juan
Shi, Mingjin
Fu, Lu
Rizvi, Ruqayya
Gong, Zheng
Sun, Hong
author_facet Hou, Hongjian
Adzika, Gabriel Komla
Wu, Qi
Ma, Tongtong
Ma, Yanhong
Geng, Juan
Shi, Mingjin
Fu, Lu
Rizvi, Ruqayya
Gong, Zheng
Sun, Hong
author_sort Hou, Hongjian
collection PubMed
description Clinical demographics have demonstrated that postmenopausal women are predisposed to chronic stress-induced cardiomyopathy (CSC) and this has been associated with the decrease of estrogen. Meanwhile, recent studies have implicated unsolved myocardial proinflammatory responses, which are characterized by enormous CD86+ macrophage infiltrations as an underlying disease mechanism expediting the pathological remodeling of the heart during chronic stress. However, we had previously demonstrated that estrogen confers cardioprotection via the modulation of cardiomyocytes β(2)-adrenoceptors (β(2)AR)-Gs/Gi pathways during stress to lessen the incidence of stress-induced cardiovascular diseases in premenopausal women. Intriguingly, macrophages express β(2)AR profoundly as well; as such, we sought to elucidate the possibilities of estrogen modulating β(2)AR-Gs/Gi pathway to confer cardioprotection during stress via immunomodulation. To do this, ovariectomy (OVX) and sham operations (Sham) were performed on female Sprague-Dawley (SD) rats. Two weeks after OVX, the rats were injected with 40 μg/kg/day of estradiol (E(2)). Next, on day 36 after OVX, chronic stress was induced by a daily subcutaneous injection of 5 mg/kg/day of isoproterenol (ISO). The effect of E(2) on relevant clinical cardiac function indexes (LVSP, LVEDP, + dp/dt and −dp/dt), myocardial architecture (cardiomyocyte diameter and fibrosis), β(2)AR alterations, and macrophage (CD86+ and CD206+) infiltrations were assessed. In vitro, peritoneal macrophages (PM(Φ)) were isolated from wild-type and β(2)AR-knockout female mice. The PM(Φ) were treated with ISO, E(2), and β(2)AR blocker ICI 118,551 for 24 h, and flow cytometric evaluations were done to assess their phenotypic expression. E(2) deficiency permitted the induction of CSC, which was characterized by cardiac dysfunctions, maladaptive myocardial hypertrophy, unresolved proinflammatory responses, and fibrosis. Nonetheless, E(2) presence/supplementation during stress averted all the aforementioned adverse effects of chronic stress while preventing excessive depletion of β(2)AR. Also, we demonstrated that E(2) facilitates timely resolution of myocardial proinflammation to permit reparative functions by enhancing the polarization of CD86+ to CD206+ macrophages. However, this adaptive immunomodulation is hampered when β(2)AR is inhibited. Taken together, the outcomes of this study show that E(2) confers cardioprotection to prevent CSC via adaptive immunomodulation of macrophage phenotypes, and β(2)AR-mediated signaling is crucial for the polarizations of CD86+ to CD206+ macrophages.
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spelling pubmed-85061122021-10-13 Estrogen Attenuates Chronic Stress-Induced Cardiomyopathy by Adaptively Regulating Macrophage Polarizations via β(2)-Adrenergic Receptor Modulation Hou, Hongjian Adzika, Gabriel Komla Wu, Qi Ma, Tongtong Ma, Yanhong Geng, Juan Shi, Mingjin Fu, Lu Rizvi, Ruqayya Gong, Zheng Sun, Hong Front Cell Dev Biol Cell and Developmental Biology Clinical demographics have demonstrated that postmenopausal women are predisposed to chronic stress-induced cardiomyopathy (CSC) and this has been associated with the decrease of estrogen. Meanwhile, recent studies have implicated unsolved myocardial proinflammatory responses, which are characterized by enormous CD86+ macrophage infiltrations as an underlying disease mechanism expediting the pathological remodeling of the heart during chronic stress. However, we had previously demonstrated that estrogen confers cardioprotection via the modulation of cardiomyocytes β(2)-adrenoceptors (β(2)AR)-Gs/Gi pathways during stress to lessen the incidence of stress-induced cardiovascular diseases in premenopausal women. Intriguingly, macrophages express β(2)AR profoundly as well; as such, we sought to elucidate the possibilities of estrogen modulating β(2)AR-Gs/Gi pathway to confer cardioprotection during stress via immunomodulation. To do this, ovariectomy (OVX) and sham operations (Sham) were performed on female Sprague-Dawley (SD) rats. Two weeks after OVX, the rats were injected with 40 μg/kg/day of estradiol (E(2)). Next, on day 36 after OVX, chronic stress was induced by a daily subcutaneous injection of 5 mg/kg/day of isoproterenol (ISO). The effect of E(2) on relevant clinical cardiac function indexes (LVSP, LVEDP, + dp/dt and −dp/dt), myocardial architecture (cardiomyocyte diameter and fibrosis), β(2)AR alterations, and macrophage (CD86+ and CD206+) infiltrations were assessed. In vitro, peritoneal macrophages (PM(Φ)) were isolated from wild-type and β(2)AR-knockout female mice. The PM(Φ) were treated with ISO, E(2), and β(2)AR blocker ICI 118,551 for 24 h, and flow cytometric evaluations were done to assess their phenotypic expression. E(2) deficiency permitted the induction of CSC, which was characterized by cardiac dysfunctions, maladaptive myocardial hypertrophy, unresolved proinflammatory responses, and fibrosis. Nonetheless, E(2) presence/supplementation during stress averted all the aforementioned adverse effects of chronic stress while preventing excessive depletion of β(2)AR. Also, we demonstrated that E(2) facilitates timely resolution of myocardial proinflammation to permit reparative functions by enhancing the polarization of CD86+ to CD206+ macrophages. However, this adaptive immunomodulation is hampered when β(2)AR is inhibited. Taken together, the outcomes of this study show that E(2) confers cardioprotection to prevent CSC via adaptive immunomodulation of macrophage phenotypes, and β(2)AR-mediated signaling is crucial for the polarizations of CD86+ to CD206+ macrophages. Frontiers Media S.A. 2021-09-28 /pmc/articles/PMC8506112/ /pubmed/34650984 http://dx.doi.org/10.3389/fcell.2021.737003 Text en Copyright © 2021 Hou, Adzika, Wu, Ma, Ma, Geng, Shi, Fu, Rizvi, Gong and Sun. 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
Hou, Hongjian
Adzika, Gabriel Komla
Wu, Qi
Ma, Tongtong
Ma, Yanhong
Geng, Juan
Shi, Mingjin
Fu, Lu
Rizvi, Ruqayya
Gong, Zheng
Sun, Hong
Estrogen Attenuates Chronic Stress-Induced Cardiomyopathy by Adaptively Regulating Macrophage Polarizations via β(2)-Adrenergic Receptor Modulation
title Estrogen Attenuates Chronic Stress-Induced Cardiomyopathy by Adaptively Regulating Macrophage Polarizations via β(2)-Adrenergic Receptor Modulation
title_full Estrogen Attenuates Chronic Stress-Induced Cardiomyopathy by Adaptively Regulating Macrophage Polarizations via β(2)-Adrenergic Receptor Modulation
title_fullStr Estrogen Attenuates Chronic Stress-Induced Cardiomyopathy by Adaptively Regulating Macrophage Polarizations via β(2)-Adrenergic Receptor Modulation
title_full_unstemmed Estrogen Attenuates Chronic Stress-Induced Cardiomyopathy by Adaptively Regulating Macrophage Polarizations via β(2)-Adrenergic Receptor Modulation
title_short Estrogen Attenuates Chronic Stress-Induced Cardiomyopathy by Adaptively Regulating Macrophage Polarizations via β(2)-Adrenergic Receptor Modulation
title_sort estrogen attenuates chronic stress-induced cardiomyopathy by adaptively regulating macrophage polarizations via β(2)-adrenergic receptor modulation
topic Cell and Developmental Biology
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8506112/
https://www.ncbi.nlm.nih.gov/pubmed/34650984
http://dx.doi.org/10.3389/fcell.2021.737003
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