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Isolation of Cortical Microglia with Preserved Immunophenotype and Functionality From Murine Neonates
Published on: January 30, 2014
Deficiency of Microglial Hv1 Protects Against Lipopolysaccharide-Induced Neuroinflammation via the NF-κB Signaling
Lingbin Sun1, Xihua Wang1, Shuyuan Guan1
1Department of Anesthesiology, Peking University Shenzhen Hospital, Shenzhen, China.
Abstract:
Neuroinflammation plays a pivotal role in the initiation and progression of cognitive impairments. Hv1 channels have been implicated in proton extrusion, microglial activation, and neuroinflammation onset. Despite this, the specific mechanisms by which Hv1 deficiency mitigates neuroinflammation and its impact on pathophysiological processes are not fully understood. In this study, we investigated the role of Hv1 in LPS-induced hippocampal inflammation and cognitive deficits. Utilizing both knockout/knockdown and overexpression methodologies, we uncovered Hv1's contribution to neuroinflammatory processes. Our findings reveal that Hv1 loss exerts dual protective effects against LPS-induced neuroinflammation through NF-κB-mediated cytokine production and PI3K/Akt/HIF1α-mediated aerobic glycolysis, as evidenced by RNA sequencing and metabolomics analysis. Given the pivotal function of NF-κB in these responses, we observed a decrease in NF-κB activation and a reduction in the production of pro-inflammatory mediators in microglia with Hv1 deficiency. Conversely, the luciferase reporter assay and EMSA revealed that Hv1 overexpression augments NF-κB signaling. Furthermore, Hv1 deficiency resulted in reduced HIF1α expression and downregulation of its target genes, including HK2 and PFKFB3, thereby inhibiting aerobic glycolysis. In vivo results reveal a distinct microglial Hv1 role in regulating microglial metabolic reprogramming and neuroinflammation in cognitive deficits, suggesting Hv1 as a potential therapeutic target for neuroinflammation mediated by microglia, especially in the context of NF-κB dysregulation. Our findings highlight the significance of targeting aerobic glycolysis in the regulation of cognitive impairments. Additionally, our research provides novel insights into Hv1's regulatory influence on neuroinflammation via NF-κB signaling and metabolic reprogramming pathways.
Insights
Hv1 channel deficiency protects against neuroinflammation and cognitive deficits by reducing pro-inflammatory cytokines and aerobic glycolysis. This highlights Hv1 as a therapeutic target for neuroinflammatory conditions.
Area of Science:
- Neuroscience
- Immunology
- Metabolism
Background:
- Neuroinflammation is a key driver of cognitive impairment.
- Hv1 channels are involved in microglial activation and neuroinflammation.
- The precise role of Hv1 in neuroinflammation and cognitive decline requires further elucidation.
Purpose of the Study:
- To investigate the role of Hv1 in lipopolysaccharide (LPS)-induced hippocampal inflammation and cognitive deficits.
- To elucidate the mechanisms by which Hv1 deficiency mitigates neuroinflammation.
- To explore Hv1 as a potential therapeutic target for neuroinflammation.
Main Methods:
- Utilized knockout/knockdown and overexpression models of Hv1.
- Employed RNA sequencing and metabolomics analysis.
- Conducted luciferase reporter assays and electrophoretic mobility shift assays (EMSA).
Main Results:
- Hv1 deficiency reduced NF-κB activation and pro-inflammatory cytokine production in microglia.
- Hv1 loss inhibited PI3K/Akt/HIF1α-mediated aerobic glycolysis by downregulating HIF1α target genes (HK2, PFKFB3).
- Hv1 overexpression augmented NF-κB signaling.
Conclusions:
- Hv1 plays a critical role in microglial metabolic reprogramming and neuroinflammation in cognitive deficits.
- Targeting Hv1 offers a potential therapeutic strategy for neuroinflammation, particularly in conditions involving NF-κB dysregulation.
- Inhibiting aerobic glycolysis is significant in regulating cognitive impairments.

