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Published on: November 18, 2022
Weisheng-tang protects against ischemic brain injury by modulating microglia activation through the P2Y12 receptor
Min Jae Kim1,2, Dohee Lee1,2, Ji Hye Ryu1,2
1Department of Korean Medical Science, School of Korean Medicine, Pusan National University, Yangsan, Gyeongnam, Republic of Korea.
Abstract:
Background: Stroke, a leading cause of death and disability, lacks effective treatments. Post-stroke secondary damage worsens the brain microenvironment, further exacerbating brain injury. Microglia's role in responding to stroke-induced damage in peri-infarct regions is crucial. In this study, we explored Weisheng-tang's potential to enhance ischemic outcomes by targeting microglia. Methods: We induced middle cerebral artery occlusion and reperfusion in mice, followed by behavioral assessments and infarct volume analyses after 48 h, and examined the changes in microglial morphology through skeleton analysis. Results: Weisheng-tang (300 mg/kg) significantly reduced infarction volume and alleviated neurological and motor deficits. The number of activated microglia was markedly increased within the peri-infarct territory, which was significantly reversed by Weisheng-tang. Microglial morphology analysis revealed that microglial processes were retracted owing to ischemic damage but were restored in Weisheng-tang-treated mice. This restoration was accompanied by the expression of the purinergic P2Y12 receptor (P2Y12R), a key regulator of microglial process extension. Weisheng-tang increased neuronal Kv2.1 clusters while suppressing juxtaneuronal microglial activation. The P2Y12R inhibitor-ticagrelor-eliminated the tissue and functional recovery that had been observed with Weisheng-tang after ischemic damage. Discussion: Weisheng-tang improved experimental stroke outcomes by modulating microglial morphology through P2Y12R, shedding light on its neuroprotective potential in ischemic stroke.
Insights
Weisheng-tang treatment improved stroke outcomes by restoring microglial morphology via the P2Y12 receptor, offering neuroprotection. This traditional Chinese medicine enhanced recovery after ischemic stroke in mice.
Area of Science:
- Neuroscience
- Pharmacology
- Cell Biology
Background:
- Stroke is a major cause of death and disability with limited treatment options.
- Secondary damage post-stroke impairs the brain microenvironment and worsens injury.
- Microglia play a critical role in responding to stroke-induced damage in peri-infarct areas.
Purpose of the Study:
- To investigate the potential of Weisheng-tang in improving ischemic stroke outcomes.
- To explore Weisheng-tang's mechanism of action by targeting microglial function.
- To assess the effect of Weisheng-tang on microglial morphology and neuroprotection.
Main Methods:
- Middle cerebral artery occlusion and reperfusion model in mice.
- Behavioral and motor deficit assessments.
- Infarct volume analysis and microglial morphology via skeleton analysis.
- Analysis of purinergic P2Y12 receptor (P2Y12R) expression and Kv2.1 clusters.
- Assessment of ticagrelor (P2Y12R inhibitor) effects on recovery.
Main Results:
- Weisheng-tang (300 mg/kg) significantly reduced infarct volume and neurological deficits.
- Weisheng-tang treatment restored retracted microglial processes, associated with increased P2Y12R expression.
- The treatment suppressed juxtaneuronal microglial activation and increased neuronal Kv2.1 clusters.
- Inhibition of P2Y12R with ticagrelor abolished the observed recovery effects of Weisheng-tang.
Conclusions:
- Weisheng-tang demonstrates neuroprotective potential in experimental ischemic stroke.
- The therapeutic effects are mediated by modulating microglial morphology through the P2Y12R pathway.
- Weisheng-tang represents a promising therapeutic strategy for enhancing recovery after stroke.

