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Gliosis is a histopathological characteristic of epilepsy that comprises activated microglia and astrocytes. It is unclear whether or how crosstalk occurs between microglia and astrocytes in the evolution of epilepsy. Here, we report in a mouse model of status epilepticus, induced by intracerebroventricular injection of kainic acid (KA), sequential activation of microglia and astrocytes and their close spatial interaction in the hippocampal CA3 region. Microglial ablation reduced astrocyte activation and their upregulation of complement C3. When compared to wild-type mice, both C3 and C3aR mice had significantly less microglia-astrocyte interaction in response to KA-induced status epilepticus. Additionally, KA-injected C3 mice had significantly less histochemical evidence of neurodegeneration. The results suggest that the C3-C3aR pathway contributes to KA-induced neurodegeneration by mediating microglia-astrocyte communication. The C3-C3aR pathway may prove to be a potential therapeutic target for epilepsy treatment.
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http://dx.doi.org/10.1002/glia.23955 | DOI Listing |
Neurochem Res
August 2025
Department of Gastrointestinal Surgery, Hengyang Medical School, The Affiliated Nanhua Hospital, University of South China, Hengyang, 421002, Hunan, China.
Epilepsy is a chronic neurological disorder featured by abnormal neural discharges that can lead to cognitive impairment. Salidroside (Sal), a biologically active component, protects neurons against various insults. The current study aims to explore the therapeutic potential of Sal in epilepsy and elucidate the mechanisms underlying its effects.
View Article and Find Full Text PDFAdv Healthc Mater
July 2025
Department of Pharmaceutics, School of Pharmacy, Ningxia Medical University, Yinchuan, Ningxia, China.
Multiple sclerosis (MS) is a demyelinating autoimmune disease (AD) accompanied by immune disorders and complement over activation. Although re-instatement of immune balance does alleviate MS symptoms, exploration of concomitant complement inhibition for neuron protection has not been evaluated. Herein, we developed myelin oligodendrocyte glycoprotein 35-55 (MOG) peptide and artemisinin (ART) co-loaded liposomes (MOG-ART-Lip) to simultaneously restore immune balance and inhibit complement activation.
View Article and Find Full Text PDFMol Psychiatry
July 2025
Department of Anesthesiology, Fujian Medical University Union Hospital, 29 Xin-Quan Road, Fuzhou, Fujian, 350001, China.
Perioperative neurocognitive disorders (PND), including postoperative delirium (POD), delayed neurocognitive recovery (dNCR) and postoperative neurocognitive disorder (PNCD), affect up to 10% of surgical patients older than 60 years, and currently there are no effective therapies to prevent PND. The gut microbiota is linked to PND through the gut-brain axis, promoting neuroinflammation via activation and proliferation of microglia and astrocytes in the central nervous system (CNS). In this study, we show that perioperative use of ceftriaxone, a long-acting β-lactam antibiotic, can prevent the development of PND in elderly surgical patients.
View Article and Find Full Text PDFMol Neurobiol
July 2025
Institute of Neuroscience, Hengyang Medical School, University of South China, Hengyang, 421001, Hunan, China.
The comorbidity of anxiety and depression frequently occurs in patients with inflammatory pain, which requires further investigation. Previous evidence supports a close link between Complement Component 3 (C3) and affective disorders; however, whether C3 is involved in inflammatory pain-induced anxiodepression remains unclear. Using a mouse inflammatory pain model with Complete Freund's Adjuvant (CFA), we observed that the animals exhibited significant anxiodepression-like behaviors and that the expression of hippocampal C3 was obviously increased three weeks after CFA injection.
View Article and Find Full Text PDFNat Neurosci
July 2025
State Key Laboratory of Pharmaceutical Biotechnology, School of Life Sciences, Nanjing University, Nanjing, China.
Neuronal hyperexcitability is a common pathophysiological feature of many neurological diseases. Neuron-glia interactions underlie this process but the detailed mechanisms remain unclear. Here, we reveal a critical role of microglia-mediated selective elimination of inhibitory synapses in driving neuronal hyperexcitability.
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