Authors
Shiji Deng, Qi Li, Pinyi Liu, Xiang Cao, Siyuan Zhang, Shengnan Xia, Xinyu Bao, Tingting Wang, Huiya Li, Yun Xu
Published in
Neurochemistry international. Pages 106233. Aug 01, 2026. Epub Aug 01, 2026.
Abstract
Microglia play a pivotal role in the pathophysiology of ischemic stroke, with substantial microglial demise occurring following cerebral ischemia. This study examined whether colony-stimulating factor 1 (CSF-1) and interleukin-34 (IL-34), ligands of the colony-stimulating factor 1 receptor (CSF1R) critical for microglial survival, promote microglial proliferation and ameliorate outcomes after ischemic stroke. In a mouse model of middle cerebral artery occlusion (MCAO), endogenous CSF-1 levels showed dynamic changes within the first 24 hours post-ischemia. Administration of CSF-1, but not IL-34, significantly improved neurological outcomes and reduced infarct volume. CSF-1 treatment was associated with a less reactive microglial morphology and an anti-inflammatory, homeostatic microglial phenotype. In vitro, CSF-1 enhanced Ki67 expression in oxygen-glucose deprivation (OGD)-exposed microglia, while decreasing pro-inflammatory cytokine production and excessive phagocytosis of neuronal debris. Conditioned medium from CSF-1-treated microglia and co-culture experiments further indicated that increased microglial numbers contribute to reduced OGD-induced neuronal apoptosis. Collectively, these findings suggest that CSF-1 fosters a neuroprotective microglial phenotype during acute ischemia, highlighting its potential as a therapeutic agent to mitigate ischemic brain injury through modulation of microglial proliferation and inflammatory responses.
PMID:
42542249
Bibliographic data and abstract were imported from PubMed on 02 Aug 2026.
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