Cargando…

Neuroprotection by Nrf2 via modulating microglial phenotype and phagocytosis after intracerebral hemorrhage

Activated microglia are divided into pro-inflammatory and anti-inflammatory functional states. In anti-inflammatory state, activated microglia contribute to phagocytosis, neural repair and anti-inflammation. Nrf2 as a major endogenous regulator in hematoma clearance after intracerebral hemorrhage (I...

Descripción completa

Detalles Bibliográficos
Autores principales: Liang, Chuntian, Liu, Lirong, Bao, Shuangjin, Yao, Zhenjia, Bai, Qinqin, Fu, Pengcheng, Liu, Xiangyu, Zhang, John H., Wang, Gaiqing
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Elsevier 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9957781/
https://www.ncbi.nlm.nih.gov/pubmed/36852060
http://dx.doi.org/10.1016/j.heliyon.2023.e13777
_version_ 1784894905648152576
author Liang, Chuntian
Liu, Lirong
Bao, Shuangjin
Yao, Zhenjia
Bai, Qinqin
Fu, Pengcheng
Liu, Xiangyu
Zhang, John H.
Wang, Gaiqing
author_facet Liang, Chuntian
Liu, Lirong
Bao, Shuangjin
Yao, Zhenjia
Bai, Qinqin
Fu, Pengcheng
Liu, Xiangyu
Zhang, John H.
Wang, Gaiqing
author_sort Liang, Chuntian
collection PubMed
description Activated microglia are divided into pro-inflammatory and anti-inflammatory functional states. In anti-inflammatory state, activated microglia contribute to phagocytosis, neural repair and anti-inflammation. Nrf2 as a major endogenous regulator in hematoma clearance after intracerebral hemorrhage (ICH) has received much attention. This study aims to investigate the mechanism underlying Nrf2-mediated regulation of microglial phenotype and phagocytosis in hematoma clearance after ICH. In vitro experiments, BV-2 cells were assigned to normal group and administration group (Nrf2-siRNA, Nrf2 agonists Monascin and Xuezhikang). In vivo experiments, mice were divided into 5 groups: sham, ICH + vehicle, ICH + Nrf2−/−, ICH + Monascin and ICH + Xuezhikang. In vitro and in vivo, 72 h after administration of Monascin and Xuezhikang, the expression of Nrf2, inflammatory-associated factors such as Trem1, TNF-α and CD80, anti-inflammatory, neural repair and phagocytic associated factors such as Trem2, CD206 and BDNF were analyzed by the Western blot method. In vitro, fluorescent latex beads or erythrocytes were uptaken by BV-2 cells in order to study microglial phagocytic ability. In vivo, hemoglobin levels reflect the hematoma volume. In this study, Nrf2 agonists (Monascin and Xuezhikang) upregulated the expression of Trem2, CD206 and BDNF while decreased the expression of Trem1, TNF-α and CD80 both in vivo and in vitro. At the same time, after Monascin and Xuezhikang treatment, the phagocytic capacity of microglia increased in vitro, neurological deficits improved and hematoma volume lessened in vivo. These results were reversed in the Nrf2-siRNA or the Nrf2−/− mice. All these results indicated that Nrf2 enhanced hematoma clearance and neural repair, improved neurological outcomes through enhancing microglial phagocytosis and alleviating neuroinflammation.
format Online
Article
Text
id pubmed-9957781
institution National Center for Biotechnology Information
language English
publishDate 2023
publisher Elsevier
record_format MEDLINE/PubMed
spelling pubmed-99577812023-02-26 Neuroprotection by Nrf2 via modulating microglial phenotype and phagocytosis after intracerebral hemorrhage Liang, Chuntian Liu, Lirong Bao, Shuangjin Yao, Zhenjia Bai, Qinqin Fu, Pengcheng Liu, Xiangyu Zhang, John H. Wang, Gaiqing Heliyon Research Article Activated microglia are divided into pro-inflammatory and anti-inflammatory functional states. In anti-inflammatory state, activated microglia contribute to phagocytosis, neural repair and anti-inflammation. Nrf2 as a major endogenous regulator in hematoma clearance after intracerebral hemorrhage (ICH) has received much attention. This study aims to investigate the mechanism underlying Nrf2-mediated regulation of microglial phenotype and phagocytosis in hematoma clearance after ICH. In vitro experiments, BV-2 cells were assigned to normal group and administration group (Nrf2-siRNA, Nrf2 agonists Monascin and Xuezhikang). In vivo experiments, mice were divided into 5 groups: sham, ICH + vehicle, ICH + Nrf2−/−, ICH + Monascin and ICH + Xuezhikang. In vitro and in vivo, 72 h after administration of Monascin and Xuezhikang, the expression of Nrf2, inflammatory-associated factors such as Trem1, TNF-α and CD80, anti-inflammatory, neural repair and phagocytic associated factors such as Trem2, CD206 and BDNF were analyzed by the Western blot method. In vitro, fluorescent latex beads or erythrocytes were uptaken by BV-2 cells in order to study microglial phagocytic ability. In vivo, hemoglobin levels reflect the hematoma volume. In this study, Nrf2 agonists (Monascin and Xuezhikang) upregulated the expression of Trem2, CD206 and BDNF while decreased the expression of Trem1, TNF-α and CD80 both in vivo and in vitro. At the same time, after Monascin and Xuezhikang treatment, the phagocytic capacity of microglia increased in vitro, neurological deficits improved and hematoma volume lessened in vivo. These results were reversed in the Nrf2-siRNA or the Nrf2−/− mice. All these results indicated that Nrf2 enhanced hematoma clearance and neural repair, improved neurological outcomes through enhancing microglial phagocytosis and alleviating neuroinflammation. Elsevier 2023-02-16 /pmc/articles/PMC9957781/ /pubmed/36852060 http://dx.doi.org/10.1016/j.heliyon.2023.e13777 Text en © 2023 The Author(s) https://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 Article
Liang, Chuntian
Liu, Lirong
Bao, Shuangjin
Yao, Zhenjia
Bai, Qinqin
Fu, Pengcheng
Liu, Xiangyu
Zhang, John H.
Wang, Gaiqing
Neuroprotection by Nrf2 via modulating microglial phenotype and phagocytosis after intracerebral hemorrhage
title Neuroprotection by Nrf2 via modulating microglial phenotype and phagocytosis after intracerebral hemorrhage
title_full Neuroprotection by Nrf2 via modulating microglial phenotype and phagocytosis after intracerebral hemorrhage
title_fullStr Neuroprotection by Nrf2 via modulating microglial phenotype and phagocytosis after intracerebral hemorrhage
title_full_unstemmed Neuroprotection by Nrf2 via modulating microglial phenotype and phagocytosis after intracerebral hemorrhage
title_short Neuroprotection by Nrf2 via modulating microglial phenotype and phagocytosis after intracerebral hemorrhage
title_sort neuroprotection by nrf2 via modulating microglial phenotype and phagocytosis after intracerebral hemorrhage
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9957781/
https://www.ncbi.nlm.nih.gov/pubmed/36852060
http://dx.doi.org/10.1016/j.heliyon.2023.e13777
work_keys_str_mv AT liangchuntian neuroprotectionbynrf2viamodulatingmicroglialphenotypeandphagocytosisafterintracerebralhemorrhage
AT liulirong neuroprotectionbynrf2viamodulatingmicroglialphenotypeandphagocytosisafterintracerebralhemorrhage
AT baoshuangjin neuroprotectionbynrf2viamodulatingmicroglialphenotypeandphagocytosisafterintracerebralhemorrhage
AT yaozhenjia neuroprotectionbynrf2viamodulatingmicroglialphenotypeandphagocytosisafterintracerebralhemorrhage
AT baiqinqin neuroprotectionbynrf2viamodulatingmicroglialphenotypeandphagocytosisafterintracerebralhemorrhage
AT fupengcheng neuroprotectionbynrf2viamodulatingmicroglialphenotypeandphagocytosisafterintracerebralhemorrhage
AT liuxiangyu neuroprotectionbynrf2viamodulatingmicroglialphenotypeandphagocytosisafterintracerebralhemorrhage
AT zhangjohnh neuroprotectionbynrf2viamodulatingmicroglialphenotypeandphagocytosisafterintracerebralhemorrhage
AT wanggaiqing neuroprotectionbynrf2viamodulatingmicroglialphenotypeandphagocytosisafterintracerebralhemorrhage