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Inhibition of BACE1 attenuates microglia-induced neuroinflammation after intracerebral hemorrhage by suppressing STAT3 activation

Hematoma-induced neuroinflammation is the cause of poor prognosis in intracerebral hemorrhage (ICH); therefore, promoting blood clearance and blocking overactivated inflammation are rational approaches for ICH treatment. β-site amyloid precursor protein (APP) lyase-1 (BACE1) is a key molecule regula...

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Autores principales: Zhuang, Jianfeng, Cao, Yang, Guo, Gengyin, Li, Maogui, Zhang, Tongfu, He, Dong, Chen, Jinyan, Zhang, Keke, Zhang, Zhen
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Impact Journals 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10457076/
https://www.ncbi.nlm.nih.gov/pubmed/37552127
http://dx.doi.org/10.18632/aging.204935
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author Zhuang, Jianfeng
Cao, Yang
Guo, Gengyin
Li, Maogui
Zhang, Tongfu
He, Dong
Chen, Jinyan
Zhang, Keke
Zhang, Zhen
author_facet Zhuang, Jianfeng
Cao, Yang
Guo, Gengyin
Li, Maogui
Zhang, Tongfu
He, Dong
Chen, Jinyan
Zhang, Keke
Zhang, Zhen
author_sort Zhuang, Jianfeng
collection PubMed
description Hematoma-induced neuroinflammation is the cause of poor prognosis in intracerebral hemorrhage (ICH); therefore, promoting blood clearance and blocking overactivated inflammation are rational approaches for ICH treatment. β-site amyloid precursor protein (APP) lyase-1 (BACE1) is a key molecule regulating the microglial phenotype transition in neurodegenerative diseases. Therefore, the aim of this study was to investigate the role of BACE1 in microglial phagocytosis and inflammatory features in ICH. Here, we demonstrated the unique advantages of targeting BACE1 in microglia using an autologous blood model and primary microglia hemoglobin stimulation. When BACE1 was inhibited early in ICH, fewer residual hematomas remained, consistent with an increase in genetic features that favor phagocytosis and anti-inflammation. In addition, inhibition of BACE1 enhanced the secretion of anti-inflammatory cytokines and substantially reduced the expression of proinflammatory genes, which was regulated by signal transduction and phosphorylation of activator of transcription 3 (STAT3). Further pharmacological inhibition of STAT3 phosphorylation effectively blocked the proinflammatory and weak phagocytic phenotype of microglia due to BACE1 induction. In summary, BACE1 is the critical molecule regulating the inflammatory and phagocytic phenotypes of microglia after ICH, and targeted inhibition of the BACE1/STAT3 pathway is an important strategy for the future treatment of ICH-induced neurological injury.
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spelling pubmed-104570762023-08-26 Inhibition of BACE1 attenuates microglia-induced neuroinflammation after intracerebral hemorrhage by suppressing STAT3 activation Zhuang, Jianfeng Cao, Yang Guo, Gengyin Li, Maogui Zhang, Tongfu He, Dong Chen, Jinyan Zhang, Keke Zhang, Zhen Aging (Albany NY) Research Paper Hematoma-induced neuroinflammation is the cause of poor prognosis in intracerebral hemorrhage (ICH); therefore, promoting blood clearance and blocking overactivated inflammation are rational approaches for ICH treatment. β-site amyloid precursor protein (APP) lyase-1 (BACE1) is a key molecule regulating the microglial phenotype transition in neurodegenerative diseases. Therefore, the aim of this study was to investigate the role of BACE1 in microglial phagocytosis and inflammatory features in ICH. Here, we demonstrated the unique advantages of targeting BACE1 in microglia using an autologous blood model and primary microglia hemoglobin stimulation. When BACE1 was inhibited early in ICH, fewer residual hematomas remained, consistent with an increase in genetic features that favor phagocytosis and anti-inflammation. In addition, inhibition of BACE1 enhanced the secretion of anti-inflammatory cytokines and substantially reduced the expression of proinflammatory genes, which was regulated by signal transduction and phosphorylation of activator of transcription 3 (STAT3). Further pharmacological inhibition of STAT3 phosphorylation effectively blocked the proinflammatory and weak phagocytic phenotype of microglia due to BACE1 induction. In summary, BACE1 is the critical molecule regulating the inflammatory and phagocytic phenotypes of microglia after ICH, and targeted inhibition of the BACE1/STAT3 pathway is an important strategy for the future treatment of ICH-induced neurological injury. Impact Journals 2023-08-07 /pmc/articles/PMC10457076/ /pubmed/37552127 http://dx.doi.org/10.18632/aging.204935 Text en Copyright: © 2023 Zhuang et al. https://creativecommons.org/licenses/by/3.0/This is an open access article distributed under the terms of the Creative Commons Attribution License (https://creativecommons.org/licenses/by/3.0/) (CC BY 3.0), which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.
spellingShingle Research Paper
Zhuang, Jianfeng
Cao, Yang
Guo, Gengyin
Li, Maogui
Zhang, Tongfu
He, Dong
Chen, Jinyan
Zhang, Keke
Zhang, Zhen
Inhibition of BACE1 attenuates microglia-induced neuroinflammation after intracerebral hemorrhage by suppressing STAT3 activation
title Inhibition of BACE1 attenuates microglia-induced neuroinflammation after intracerebral hemorrhage by suppressing STAT3 activation
title_full Inhibition of BACE1 attenuates microglia-induced neuroinflammation after intracerebral hemorrhage by suppressing STAT3 activation
title_fullStr Inhibition of BACE1 attenuates microglia-induced neuroinflammation after intracerebral hemorrhage by suppressing STAT3 activation
title_full_unstemmed Inhibition of BACE1 attenuates microglia-induced neuroinflammation after intracerebral hemorrhage by suppressing STAT3 activation
title_short Inhibition of BACE1 attenuates microglia-induced neuroinflammation after intracerebral hemorrhage by suppressing STAT3 activation
title_sort inhibition of bace1 attenuates microglia-induced neuroinflammation after intracerebral hemorrhage by suppressing stat3 activation
topic Research Paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10457076/
https://www.ncbi.nlm.nih.gov/pubmed/37552127
http://dx.doi.org/10.18632/aging.204935
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