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Updated: May 14, 2026

Isolation and Flow Cytometric Assessment of Neuroimmune Interactions in a Mini-Stroke Murine Model
Published on: June 20, 2025
Microglial CD14 activated by iNOS contributes to neuroinflammation in cerebral ischemia
Mian Zhou1, Christie M Wang, Weng-Lang Yang
1Department of Surgery, Hofstra North Shore-LIJ School of Medicine, The Feinstein Institute for Medical Research, Manhasset, NY 11030, USA.
Abstract:
Stroke is one of the most frequent causes of death and disability worldwide. Cerebral ischemia is the major insult of stroke and induces acute inflammation by triggering excessive production of proinflammatory cytokines, leading to the exacerbation of primary brain damage. Toll-like receptor (TLR)- and nitric oxide-mediated signaling pathways have been identified under ischemic stress. However, the interaction between these two pathways in controlling proinflammatory cytokines has not been well addressed during cerebral ischemia. Adult male C57BL/6 mice were subjected to middle cerebral artery occlusion (MCAO) for stroke induction. The MCAO procedure resulted in a significant infarct in the brain after 24h. The infarcted side of the brain had marked elevation of TNF-α gene and protein expression, compared to the sham brain. The expression of CD14, a co-receptor of TLR4, was induced by MCAO, while the expression of TLR4 remained unchanged. The levels of inducible nitric oxide synthase (iNOS) and nitrotyrosine were also upregulated in the infracted side of the brain. Correspondingly, exposing murine microglial BV2 cells to hypoxia (1% O2) for 20h resulted in an increased expression of TNF-α, CD14, iNOS, and nitrotyrosine. When BV2 cells were treated with l-canavanine, an iNOS selective inhibitor, the elevation of TNF-α and CD14 induced by hypoxia was inhibited. This inhibition was associated with an increase of IκB. These results suggest that the upregulation of TNF-α production in ischemic stroke is partially through increasing iNOS, and then CD14 expression leading to the activation of the NF-κB pathway in microglia.
Insights
Stroke-induced inflammation involves nitric oxide synthase (iNOS) and CD14, activating the NF-κB pathway in microglia. Inhibiting iNOS reduces TNF-α and CD14, mitigating brain damage after ischemic stroke.
Area of Science:
- Neuroscience
- Immunology
- Pathology
Background:
- Stroke is a leading cause of death and disability globally.
- Cerebral ischemia during stroke triggers inflammation via proinflammatory cytokines.
- Toll-like receptor (TLR) and nitric oxide pathways are implicated in ischemic stress, but their interaction is unclear.
Purpose of the Study:
- Investigate the interaction between TLR and nitric oxide pathways in cerebral ischemia.
- Elucidate the role of inducible nitric oxide synthase (iNOS) in regulating TNF-α and CD14 expression in microglia during stroke.
Main Methods:
- Middle cerebral artery occlusion (MCAO) model in adult male C57BL/6 mice.
- In vitro study using murine microglial BV2 cells exposed to hypoxia.
- Treatment with l-canavanine, a selective iNOS inhibitor.
Main Results:
- MCAO induced significant brain infarcts, elevated TNF-α, CD14, iNOS, and nitrotyrosine.
- Hypoxia in BV2 cells increased TNF-α, CD14, iNOS, and nitrotyrosine.
- L-canavanine treatment inhibited hypoxia-induced TNF-α and CD14 elevation, increasing IκB.
Conclusions:
- Upregulation of TNF-α in ischemic stroke is partly mediated by increased iNOS and CD14 expression.
- This pathway leads to the activation of the NF-κB pathway in microglia.
- Targeting iNOS may offer a therapeutic strategy for ischemic stroke.

