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Microglia: A Double-Edged Sword in Intracerebral Hemorrhage From Basic Mechanisms to Clinical Research
by
Wang, Xiaoyu
, Bai, Qinqin
, Wang, Gaiqing
, Liu, Lirong
, Jiang, Rundong
, Liu, Jiachen
in
Blood-brain barrier
/ Brain damage
/ Brain research
/ Central nervous system
/ Cytokines
/ Disease
/ Edema
/ Genotype & phenotype
/ Growth factors
/ Hematoma
/ Hemoglobin
/ Hemorrhage
/ Homeostasis
/ Immunology
/ Inflammation
/ intracerebral hemorrhage
/ Kinases
/ Microglia
/ neuroimmunology
/ neuroinflammation
/ Neuroprotection
/ Pathology
/ phenotype switch
/ Phenotypes
/ Stroke
/ Traumatic brain injury
/ Tumor necrosis factor-TNF
2021
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Microglia: A Double-Edged Sword in Intracerebral Hemorrhage From Basic Mechanisms to Clinical Research
by
Wang, Xiaoyu
, Bai, Qinqin
, Wang, Gaiqing
, Liu, Lirong
, Jiang, Rundong
, Liu, Jiachen
in
Blood-brain barrier
/ Brain damage
/ Brain research
/ Central nervous system
/ Cytokines
/ Disease
/ Edema
/ Genotype & phenotype
/ Growth factors
/ Hematoma
/ Hemoglobin
/ Hemorrhage
/ Homeostasis
/ Immunology
/ Inflammation
/ intracerebral hemorrhage
/ Kinases
/ Microglia
/ neuroimmunology
/ neuroinflammation
/ Neuroprotection
/ Pathology
/ phenotype switch
/ Phenotypes
/ Stroke
/ Traumatic brain injury
/ Tumor necrosis factor-TNF
2021
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Do you wish to request the book?
Microglia: A Double-Edged Sword in Intracerebral Hemorrhage From Basic Mechanisms to Clinical Research
by
Wang, Xiaoyu
, Bai, Qinqin
, Wang, Gaiqing
, Liu, Lirong
, Jiang, Rundong
, Liu, Jiachen
in
Blood-brain barrier
/ Brain damage
/ Brain research
/ Central nervous system
/ Cytokines
/ Disease
/ Edema
/ Genotype & phenotype
/ Growth factors
/ Hematoma
/ Hemoglobin
/ Hemorrhage
/ Homeostasis
/ Immunology
/ Inflammation
/ intracerebral hemorrhage
/ Kinases
/ Microglia
/ neuroimmunology
/ neuroinflammation
/ Neuroprotection
/ Pathology
/ phenotype switch
/ Phenotypes
/ Stroke
/ Traumatic brain injury
/ Tumor necrosis factor-TNF
2021
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Microglia: A Double-Edged Sword in Intracerebral Hemorrhage From Basic Mechanisms to Clinical Research
Journal Article
Microglia: A Double-Edged Sword in Intracerebral Hemorrhage From Basic Mechanisms to Clinical Research
2021
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Overview
Microglia are the resident immune cells of the central nervous system (CNS). It is well established that microglia are activated and polarized to acquire different inflammatory phenotypes, either pro-inflammatory or anti-inflammatory phenotypes, which act as a critical component in the neuroinflammation following intracerebral hemorrhage (ICH). Microglia produce pro-inflammatory mediators at the early stages after ICH onset, anti-inflammatory microglia with neuroprotective effects appear to be suppressed. Previous research found that driving microglia towards an anti-inflammatory phenotype could restrict inflammation and engulf cellular debris. The principal objective of this review is to analyze the phenotypes and dynamic profiles of microglia as well as their shift in functional response following ICH. The results may further the understanding of the body’s self-regulatory functions involving microglia following ICH. On this basis, suggestions for future clinical development and research are provided.
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