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Updated: Oct 25, 2025

Induction and Diverse Assessment Indicators of Experimental Autoimmune Encephalomyelitis
Published on: September 9, 2022
Arctigenin Exerts Neuroprotective Effect by Ameliorating Cortical Activities in Experimental Autoimmune
Liangpeng Wei1, Zhenyi Xue2, Baihui Lan1
1School of Biomedical Engineering and Technology, Tianjin Medical University, Tianjin, China.
Abstract:
Multiple sclerosis (MS) is a chronic disease in the central nervous system (CNS), characterized by inflammatory cells that invade into the brain and the spinal cord. Among a bulk of different MS models, the most widely used and best understood rodent model is experimental autoimmune encephalomyelitis (EAE). Arctigenin, a botanical extract from Arctium lappa, is reported to exhibit pharmacological properties, including anti-inflammation and neuroprotection. However, the effects of arctigenin on neural activity attacked by inflammation in MS are still unclear. Here, we use two-photon calcium imaging to observe the activity of somatosensory cortex neurons in awake EAE mice in vivo and found added hyperactive cells, calcium influx, network connectivity, and synchronization, mainly at preclinical stage of EAE model. Besides, more silent cells and decreased calcium influx and reduced network synchronization accompanied by a compensatory rise in functional connectivity are found at the remission stage. Arctigenin treatment not only restricts inordinate individually neural spiking, calcium influx, and network activity at preclinical stage but also restores neuronal activity and communication at remission stage. In addition, we confirm that the frequency of AMPA receptor-mediated spontaneous excitatory postsynaptic current (sEPSC) is also increased at preclinical stage and can be blunted by arctigenin. These findings suggest that excitotoxicity characterized by calcium influx is involved in EAE at preclinical stage. What is more, arctigenin exerts neuroprotective effect by limiting hyperactivity at preclinical stage and ameliorates EAE symptoms, indicating that arctigenin could be a potential therapeutic drug for neuroprotection in MS-related neuropsychological disorders.
Insights
Arctigenin, a natural compound, reduces harmful neural hyperactivity in a mouse model of multiple sclerosis (MS). It also restores normal brain cell communication during disease remission, offering potential neuroprotection for MS patients.
Area of Science:
- Neuroscience
- Immunology
- Pharmacology
Background:
- Multiple sclerosis (MS) is a chronic central nervous system (CNS) disease involving inflammation.
- Experimental autoimmune encephalomyelitis (EAE) is a common mouse model for MS research.
- Arctigenin, from Arctium lappa, has known anti-inflammatory and neuroprotective properties, but its effect on MS-related neural activity is unknown.
Purpose of the Study:
- To investigate the effects of arctigenin on neural activity in an EAE mouse model of MS.
- To explore arctigenin's potential as a therapeutic agent for MS.
Main Methods:
- Two-photon calcium imaging was used to monitor neuronal activity in the somatosensory cortex of awake EAE mice.
- Electrophysiological recordings assessed AMPA receptor-mediated spontaneous excitatory postsynaptic currents (sEPSCs).
Main Results:
- EAE mice showed increased neuronal hyperactivity, calcium influx, and network synchronization at the preclinical stage.
- During remission, EAE mice exhibited more silent cells, reduced calcium influx, and altered network synchronization.
- Arctigenin treatment normalized neural hyperactivity and calcium influx at the preclinical stage.
- Arctigenin also restored neuronal activity and communication during the remission stage.
- Increased sEPSC frequency in the preclinical stage was blunted by arctigenin.
Conclusions:
- Excitotoxicity, indicated by calcium influx, plays a role in the preclinical stage of EAE.
- Arctigenin demonstrates neuroprotective effects by mitigating hyperactivity and improving symptoms in EAE.
- Arctigenin shows promise as a potential therapeutic for MS-related neuropsychological disorders.
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