about
Lyn tyrosine kinase is required for P2X(4) receptor upregulation and neuropathic pain after peripheral nerve injuryIRF8 is a transcriptional determinant for microglial motility.IRF8 is a critical transcription factor for transforming microglia into a reactive phenotypeNeuronal CCL21 up-regulates microglia P2X4 expression and initiates neuropathic pain development.IFN-gamma receptor signaling mediates spinal microglia activation driving neuropathic painDorsal horn neurons release extracellular ATP in a VNUT-dependent manner that underlies neuropathic pain.A novel P2X4 receptor-selective antagonist produces anti-allodynic effect in a mouse model of herpetic painGlucocorticoid regulation of ATP release from spinal astrocytes underlies diurnal exacerbation of neuropathic mechanical allodyniaMicroglial regulation of neuropathic pain.P2X4 receptors and neuropathic pain.Microglia: A Unique Versatile Cell in the Central Nervous System.Transcription factor IRF5 drives P2X4R+-reactive microglia gating neuropathic painIntrathecal infusion of microglia cells.Fibronectin/integrin system is involved in P2X(4) receptor upregulation in the spinal cord and neuropathic pain after nerve injury.Transcription factor IRF1 is responsible for IRF8-mediated IL-1β expression in reactive microglia.Silencing of TGFβ signalling in microglia results in impaired homeostasisInterferon Regulatory Factor 8 Expressed in Microglia Contributes to Tactile Allodynia Induced by Repeated Cold Stress in RodentsMacrophage centripetal migration drives spontaneous healing process after spinal cord injuryTranscriptional regulation in microglia and neuropathic painChemokine (C-C motif) receptor 5 is an important pathological regulator in the development and maintenance of neuropathic painMicroglia Heterogeneity in the Single-Cell EraMapping microglia states in the human brain through the integration of high-dimensional techniquesSpatial and temporal heterogeneity of mouse and human microglia at single-cell resolutionProfiling peripheral nerve macrophages reveals two macrophage subsets with distinct localization, transcriptome and response to injuryMacrophages at CNS interfaces: ontogeny and function in health and diseaseAuthor Correction: Spatial and temporal heterogeneity of mouse and human microglia at single-cell resolutionA Subset of Skin Macrophages Contributes to the Surveillance and Regeneration of Local Nerves[Role of IRF transcription factor family in regulating reactive phenotype of microglia]Novel Hexb-based tools for studying microglia in the CNS
P50
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P50
description
researcher (ORCID 0000-0003-3687-452X)
@en
wetenschapper
@nl
name
Takahiro Masuda
@en
Takahiro Masuda
@nl
type
label
Takahiro Masuda
@en
Takahiro Masuda
@nl
prefLabel
Takahiro Masuda
@en
Takahiro Masuda
@nl
P31
P496
0000-0003-3687-452X