Signaling pathways involved in ischemic stroke: molecular mechanisms and therapeutic interventions
C Qin, S Yang, YH Chu, H Zhang, XW Pang… - Signal transduction and …, 2022 - nature.com
Ischemic stroke is caused primarily by an interruption in cerebral blood flow, which induces
severe neural injuries, and is one of the leading causes of death and disability worldwide …
severe neural injuries, and is one of the leading causes of death and disability worldwide …
A blood–brain barrier overview on structure, function, impairment, and biomarkers of integrity
The blood–brain barrier is playing a critical role in controlling the influx and efflux of
biological substances essential for the brain's metabolic activity as well as neuronal function …
biological substances essential for the brain's metabolic activity as well as neuronal function …
Microglia morphophysiological diversity and its implications for the CNS
A Vidal-Itriago, RAW Radford, JA Aramideh… - Frontiers in …, 2022 - frontiersin.org
Microglia are mononuclear phagocytes of mesodermal origin that migrate to the central
nervous system (CNS) during the early stages of embryonic development. After colonizing …
nervous system (CNS) during the early stages of embryonic development. After colonizing …
Microglia and astrocytes in Alzheimer's disease: implications for therapy
M Fakhoury - Current neuropharmacology, 2018 - ingentaconnect.com
Background: Alzheimer's disease (AD) is a complex neurodegenerative disorder
characterized by the progressive loss of neurons, which typically leads to severe …
characterized by the progressive loss of neurons, which typically leads to severe …
Differential roles of M1 and M2 microglia in neurodegenerative diseases
Y Tang, W Le - Molecular neurobiology, 2016 - Springer
One of the most striking hallmarks shared by various neurodegenerative diseases, including
Parkinson's disease, Alzheimer's disease (AD), and amyotrophic lateral sclerosis, is …
Parkinson's disease, Alzheimer's disease (AD), and amyotrophic lateral sclerosis, is …
Targeting microglial autophagic degradation in NLRP3 inflammasome-mediated neurodegenerative diseases
AG Wu, XG Zhou, G Qiao, LU Yu, Y Tang, LU Yan… - Ageing research …, 2021 - Elsevier
Neuroinflammation is considered as a detrimental factor in neurodegenerative diseases,
including Alzheimer's disease (AD), Parkinson's disease (PD), Huntington's disease (HD) …
including Alzheimer's disease (AD), Parkinson's disease (PD), Huntington's disease (HD) …
Systemic inflammation and microglial activation: systematic review of animal experiments
ICM Hoogland, C Houbolt, DJ van Westerloo… - Journal of …, 2015 - Springer
Background Animal studies show that peripheral inflammatory stimuli may activate
microglial cells in the brain implicating an important role for microglia in sepsis-associated …
microglial cells in the brain implicating an important role for microglia in sepsis-associated …
The role of microglia in retinal neurodegeneration: Alzheimer's disease, Parkinson, and glaucoma
Microglia, the immunocompetent cells of the central nervous system (CNS), act as
neuropathology sensors and are neuroprotective under physiological conditions. Microglia …
neuropathology sensors and are neuroprotective under physiological conditions. Microglia …
The role of microglia in diabetic retinopathy: inflammation, microvasculature defects and neurodegeneration
C Altmann, MHH Schmidt - International journal of molecular sciences, 2018 - mdpi.com
Diabetic retinopathy is a common complication of diabetes mellitus, which appears in one
third of all diabetic patients and is a prominent cause of vision loss. First discovered as a …
third of all diabetic patients and is a prominent cause of vision loss. First discovered as a …
Physiology of microglia
H Kettenmann, UK Hanisch, M Noda… - Physiological …, 2011 - journals.physiology.org
Microglial cells are the resident macrophages in the central nervous system. These cells of
mesodermal/mesenchymal origin migrate into all regions of the central nervous system …
mesodermal/mesenchymal origin migrate into all regions of the central nervous system …